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Biomedical subjects

D K Bishop

Publications and source records attributed to D K Bishop.

At least 19 recordsLinked to original sources

IL-12 antagonism induces T helper 2 responses, yet exacerbates cardiac allograft rejection. Evidence against a dominant protective role for T helper 2 cytokines in alloimmunity.

IL-12 promotes Th1 development and inhibits the generation of Th2 by inducing IFN-gamma production. In several experimental models, Th2 are preferentially induced in the absence of IL-12. It was proposed that the preferential induction of Th2 by IL-12 antagonism would inhibit Th1-driven rejection responses, thereby promoting allograft acceptance. To test this possibility, mouse cardiac allograft recipients were treated with either anti-IL-12 Abs, or with the IL-12 receptor antagonist p40 homodimer. Unmodified rejection is characterized by a Th1-dominated response, with Th2 cytokines being absent or only weakly expressed within the allograft. Though both forms of IL-12 antagonism induced Th2 cytokine expression within the allograft, these treatments surprisingly exacerbated graft rejection relative to control animals. Interestingly, IL-12 antagonism did not inhibit IFN-gamma gene expression or in vivo sensitization of IFN-gamma-producing cells. Similar observations were made when IL-12 p40 knockout mice were used as allograft donors and recipients, verifying that IL-12 was not required for Th1 development. Further, IL-12 antagonism was associated with strong expression of p40 and weak expression of p35 within the graft. Neither p35 nor p40 mRNAs were detectable in control allografts. These data indicate that while IL-12 antagonism does induce Th2 cytokine expression within cardiac allografts, Th2 cytokines do not play a dominant protective role in the rejection process. Further, the Th2-inducing activity of IL-12 antagonism is not related to decreased IFN-gamma production, but may reflect altered regulation of IL-12 itself.

Animals

Allogeneic class I MHC requirement for alloantigen-reactive helper T-lymphocyte responses in vivo. Evidence for indirect presentation of alloantigen.

The mechanisms by which host T cells recognize transplant-associated alloantigens in vivo have not been established. Two alloantigen presentation pathways may be used: (1) allogeneic class I and class II MHC molecules may be recognized directly by host CD8+ and CD4+ cells, respectively, or (2) allogeneic MHC molecules may be processed as foreign peptide and presented by host antigen-presenting cells to CD4+ cells in the context of self class II proteins. In this study, the sponge matrix allograft model was used to examine the relative contributions of these alloantigen presentation pathways to CD4+ T-cell activation in vivo. Limiting dilution analysis was used to quantify the localization of interleukin-2-producing helper T lymphocytes (HTL) following implantation of sponge allografts. Allografts either were disparate at both class I and class 11, or were derived from beta2-microglobulin knockout (beta2M-/-) mice, which express class II but are deficient in class I. Two measures of in vivo HTL function were monitored: (1) the accumulation of HTL within the allograft (a process that is dependent upon antigen-driven cytokine production), and (2) the development of cytolytic alloantibodies. After implantation of sponge allografts expressing both class I and class II, HTL were readily detectable in the allograft, and cytolytic alloantibodies were present in the serum. When mice were implanted with beta2M-/- sponge allografts, HTL failed to infiltrate these class I-deficient allografts, and alloantibodies were not detectable in the sera of recipients of beta2M-/- sponge allografts. This in vivo requirement for class I expression was not reflected by traditional in vitro measures of HTL function; cells obtained from lymphoid tissues mounted a mixed lymphocyte response and produced interleukin-2 when stimulated with beta2M-/- splenocytes in vitro. One possible interpretation of these data is that in vivo HTL functions are dependent upon the presence of class I-reactive CD8+ T cells. However, HTL readily infiltrated grafts expressing both class I and class II when recipients depleted of CD8+ T cells, and alloantibodies were produced. These observations support the idea that indirect presentation of allogeneic class I molecules plays a critical role in regulating CD4+ HTL functions associated with allograft rejection in vivo.

Animals

Restricted V beta usage by T cells infiltrating rejecting human lung allografts.

TCR expression was evaluated in lung transplant patients to determine whether T cells infiltrating rejecting lung allografts employed restricted V beta elements. Serial bronchoalveolar lavage (BAL) specimens were obtained from six lung transplant recipients at approximately 3 wk, 6 wk, and 3 mo post-transplant. T cell lines were established by culturing lavage cells with irradiated donor splenocytes in the presence of low dose IL-2 for 3 wk, and TCR V beta usage was determined by quantitative reverse transcriptase-PCR. Patients were grouped into three categories based on TCR V beta profiles and the clinical status of the allograft. 1) In one patient, BAL-derived T cells expressed heterogeneous V beta repertoires at all time points evaluated. This patient did not experience graft rejection during the 16-mo period of observation, though respiratory infections were diagnosed. 2) In three patients, V beta usage by BAL-derived T cells was restricted during allograft rejection episodes, but was heterogeneous in the absence of rejection and during respiratory infections. In one of these patients, similar V beta repertoires were employed by BAL cells during multiple rejection episodes. 3) In two patients, restricted V beta usage by BAL-derived T cells was observed before and during rejection episodes. Collectively, these data illustrate that human lung allograft rejection, but not pulmonary infection, is associated with T cells expressing a limited number of V beta families. Restricted V beta usage by graft-reactive T cells may allow for the selective elimination of these cells using TCR-specific reagents, thereby promoting allograft-specific tolerance.

Bronchoalveolar Lavage Fluid

Lysis of adult ventricular myocytes by cells infiltrating rejecting murine cardiac allografts.

BACKGROUND: Immunologic mechanisms that mediate myocardial cell injury during rejection are not fully understood. We therefore investigated whether cells that infiltrate rejecting cardiac allografts are capable of directly injuring myocytes and whether this injury resembles that produced by cytotoxic T lymphocytes (CTLs) that are generated in a mixed lymphocyte reaction (MLR). METHODS AND RESULTS: Heart-infiltrating cells (HICs) were isolated from murine heterotopic BALB/c cardiac allografts undergoing rejection 6 to 8 days after transplantation into C57BL/6 mice. An in vitro model system of cultured adult murine ventricular myocytes was developed to facilitate investigation of cell-mediated myocyte injury. Isolated adult myocytes were incubated with either HICs or MLR effector cells, and myocyte death was quantified by counting the number of rod-shaped myocytes excluding trypan blue. The frequency of donor-reactive CTLs was similar in the HIC and MLR populations, as assessed by limiting dilution analysis. However, HICs were less efficient at killing donor-strain myocytes than were MLR cells. CTL-mediated cell lysis occurred by 6 hours, whereas myocyte injury produced by HICs was more gradual, with considerable cytotoxicity occurring between 12 and 24 hours. Furthermore, whereas MLR cells lysed only donor-strain myocytes, HIC lysed donor, third-party, and syngeneic myocytes. Treatment of MLR cells and HICs with anti-CD8 antibody plus complement produced a much greater inhibition of MLR cytotoxicity than of HIC cytotoxicity. CONCLUSIONS: These data demonstrate that only a small component of myocyte injury mediated by allograft-infiltrating cells can be ascribed to CTLs within the infiltrating cell population. These findings suggest that cell types associated with a delayed-type hypersensitivity response, as well as CTLs, cause myocyte injury during cardiac rejection.

Animals

Ovarian response after gonadotropin treatment of heifers immunized against gonadotropin-releasing hormone.

Angus x Hereford heifers were used to determine whether the ovaries of heifers immunized against GnRH would respond to exogenous gonadotropins. Heifers (n = 23; 24 mo; 491 +/- 23 kg) were assigned to a 2 x 2 factorial experiment: immunization against GnRH conjugated to human serum albumin (GnRH-IMM) or human serum albumin alone (HSA-IMM), and treatment with gonadotropins (GTH) or saline. The GTH treatment was 2,000 IU PMSG + 1,000 iu hCG, and control heifers were given saline (s.c.). Immunization against GnRH (GnRH-IMM) caused cessation of ovulation (progesterone < 1 ng/mL plasma for 3 wk) and GTH treatment began within 3 to 5 wk after heifers became anovulatory. Heifers immunized against HSA (HSA-IMM) were treated between d 9 and 11 of the estrous cycle. All heifers were given PGF (i.m.) on d 2 (d 0 = start of GTH treatment) and 2,000 IU of hCG (i.m.) on d 4. Ovaries of heifers were evaluated by ultrasound. Blood was sampled daily from d 0 to d 8 and every second day through d 24 to quantify progesterone and estradiol. Concentrations of estradiol increased with time after GTH but the response was reduced by GnRH-IMM (IMM x GTH x day, P < .01). Number of follicles > or = 6 mm (d 0 to 14) was increased after GTH (GTH x day, P < .001) but was decreased (P < .03) by GnRH-IMM. Immunization against GnRH reduced total follicles > or = 6 mm on d 4 in heifers on both saline and GTH treatments. Treatment with gonadotropins increased the number of follicles > or = 16 mm on d 14 compared with control heifers. The number of CL was increased by GTH (GTH x day, P < .001) but the response was reduced (P < .03) in GnRH-IMM heifers compared with HSA-IMM heifers. We conclude that treatment with gonadotropins will induce follicular growth and ovulation in heifers that are anovulatory due to immunization against GnRH.

Animals

T cell receptor (TCR) repertoire in alloimmune responses.

A large number of alloantigenic determinants could be generated by both the direct and indirect alloantigen presentation pathways. Hence, a heterogeneous population of T cells expressing a wide variety of receptors would be expected to respond to this diverse array of alloantigenic determinants. However, T cells expressing highly restricted T cell receptor (TCR) variable genes have been reported in a variety of alloimmune responses. A similar phenomenon has been observed in a wide variety of other immune responses, from those induced by superantigens, to very specific responses induced by a single peptide presented by a single MHC molecule. Given this scenario, the limited number of T cell clones which dominate an allograft rejection response, or for that matter an autoimmune response or a tumor specific response, could be therapeutically targeted by virtue of the selected TCR expression.

Antigen Presentation

In vivo depletion of CD8+ T cells results in Th2 cytokine production and alternate mechanisms of allograft rejection.

A current hypothesis states that Th1 cytokines promote allograft rejection and that Th2 cytokines promote graft acceptance. We present data that question the tolerogenic activity of Th2 cytokines, and we suggest that Th2 cytokines may evoke allograft rejection by recruitment of alternate effector mechanisms. Unmodified rejection of mouse heterotopic cardiac allografts is associated with the accumulation of large numbers of donor-reactive CD8+ CTL within the allograft, which is indicative of a Th1-driven cellular response. However, when recipients are depleted of CD8+ CTL, rejection still occurs and is associated with an aggressive cellular infiltrate rich in eosinophils, large mononuclear cells, and fibroblast-like cells. Eosinophils, which are responsive to the Th2 cytokines IL-4 and IL-5, are not present in unmodified rejecting allografts. Differential production of Th1 versus Th2 cytokines was further suggested by altered levels of IgG2a (promoted by IFN gamma) and IgG1 (promoted by IL-4) alloantibody in the sera of these mice; IgG2a dominated the alloantibody response in unmodified allograft recipients, whereas IgG1 levels increased in recipients depleted of CD8+ CTL. Altered intragraft cytokine gene expression was verified by RT-PCR; Th1 (IL-2, IFN gamma), but not Th2 (IL-4, IL-5, IL-10), cytokine mRNAs were readily detectable in the allografts of unmodified recipients. In contrast, both Th1 and Th2 cytokine genes were expressed in the allografts of mice depleted of CD8+ CTL. These data suggest that donor-reactive CD8+ CTL inhibit intragraft production of Th2 cytokines, thereby promoting a Th1 dominated-rejection response. Elimination of CD8+ cells allows Th2 cytokine production, which may have deleterious, rather than protective, effects.

Animals

Evidence that human cardiac allograft acceptance is associated with a decrease in donor-reactive helper T lymphocytes.

We have reported that acute cardiac allograft rejection is associated with increased numbers of donor-reactive helper T lymphocytes (HTL) in the peripheral blood of patients. Further, increased frequencies of circulating donor-reactive HTL may predict allograft rejection episodes diagnosed by endomyocardial biopsy. The present study evaluates the relationship between donor-reactive HTL and allograft "acceptance" in cardiac transplant recipients bearing long-term allografts (> 1 year). Patients were categorized as either long-term acceptors or persistent rejecters based on the number of rejection episodes and the ability to withdraw steroid therapy. Limiting dilution analysis for IL-2-producing HTL was utilized, with cadaver donor splenocytes as a source of donor alloantigens. Donor-reactive HTL frequencies were determined from peripheral blood samples obtained before transplant, and at 1 month and 1 year after transplant. Individuals who accommodated their allografts and were withdrawn from steroid therapy had reduced numbers of donor-reactive HTL at 1 year after transplant as compared with earlier time points. Further, PBMC obtained from these individuals at 1 year after transplant responded weakly to donor alloantigens in a mixed lymphocyte response (MLR). This relationship between donor-reactive HTL and allograft accommodation was exemplified in a cardiac/liver transplant patient who was diagnosed with progressive multifocal leukoencephalopathy and removed from all immunosuppression. No subsequent rejection episodes were diagnosed. Donor-reactive HTL were not detectable and this individual failed to mount an MLR to donor alloantigens. However, a vigorous donor-reactive response was observed when MLR cultures were supplemented with exogenous IL-2. Therefore, nonresponsiveness to the allograft appeared to be due to a deficit in IL-2 production. In contrast, patients who experienced persistent rejection episodes and required continued steroid therapy maintained large numbers of donor-reactive HTL at 1 year after transplant. PBMC from these individuals responded vigorously to donor alloantigens in an MLR. Hence, monitoring donor-reactive HTL may identify individuals who have accommodated their graft and may tolerate a reduction in immunosuppression.

Graft Rejection

Dissociation of mouse cardiac transplant rejection and donor alloantigen-specific T cell responsiveness.

Mouse hearts transplanted into MHC disparate donors are usually rejected 1 week after placement. It is widely accepted that alloantigen-reactive helper T lymphocytes (HTL) and cytotoxic T lymphocytes (CTL) are the key mediators of acute allograft rejection. This report demonstrates that the presence or absence of 'traditional' graft-reactive HTL and CTL is not necessarily related to allograft survival. In these studies, donor/recipient combinations disparate only at MHC or only at minor histocompatibility (mH) loci were employed. Allograft survival was monitored, donor-reactive IL-2 (interleukin-2) producing HTL and CTL were quantified by modified limiting dilution analysis, and serum levels of cytolytic alloantibody were determined. C57BL/10 hearts (H-2b) transplanted into B10.BR (H-2k) recipients (full MHC disparity) enjoyed prolonged survival despite massive infiltration of the allograft by donor-reactive HTL and CTL. IgM, but not IgG, donor-reactive alloantibody was present in the sera of these mice. Hence, traditional IL-2 producing HTL and CTL were not capable of mediating acute graft rejection, nor of providing help for alloantibody isotype switching in this MHC disparate combination. In contrast, C3H/HeN (H-2k) hearts transplanted into B10.BR (H-2k) recipients (mH disparity only) were acutely rejected. Donor-reactive HTL and CTL were rare or not detectable in these recipients, and cytolytic alloantibody was not detectable. Similar observations were made when B10.BR hearts were transplanted into C3H/HeN recipients. Interestingly, treatment of recipients with anti-CD4 monoclonal antibody prevented rejection of mH disparate allografts. Therefore, CD4+ T cells were required for rejection of mH disparate allografts, but this process was independent of detectable IL-2 production or CTL function. Hence, the significance of monitoring 'traditional' T cell functions should be questioned in certain donor/recipient combinations.

Animals

Effects of growth rate on carcass composition and lipid partitioning at puberty and growth hormone, insulin-like growth factor I, insulin, and metabolites before puberty in beef heifers.

The effect of three rates of gain on carcass composition, lipid partitioning, age and BW at puberty, and concentrations of growth hormone (GH), IGF-I, insulin, glucose, and NEFA in plasma were evaluated in 38 Angus x Hereford heifers. Heifers were allotted by BW and age to three treatments with a replication in each of 2 yr: full-fed (n = 13; FF) to gain 1.36 kg/d; limit-fed (n = 12; LF) to gain .68 kg/d; maintenance-full-fed (n = 13; MFF) to gain .23 kg/d for 16 wk, then full-fed to gain 1.36 kg/d. Heifers were slaughtered within 10 d after the onset of puberty. At slaughter, kidney, pelvic, and heart fat (KPH) and udder (UDDER) were separated from carcass, as was fat surrounding viscera (OM). After 48 h at 4 degrees C a carcass side was dissected into subcutaneous fat (SC), intermuscular fat (SEAM), soft tissue (SFT = inseparable lean and fat), LEAN, and BONE. In yr 1, LF heifers (431 d) were older (P < .05) than MFF heifers (371 d) at puberty, but age of FF heifers (389 d) did not differ (P > .10) from that of LF and MFF heifers. In yr 2, FF heifers (351 d) were younger (P < .05) than LF and MFF heifers (398 and 434 d, respectively). The FF heifers had greater (P < .05) BW and a greater (P < .01) percentage of lipid in the carcass at puberty than LF and MFF heifers. During the first 16 wk of treatment, concentrations of NEFA were greater in heifers with slower daily gains (MFF > LF > FF; P < .01). Concentrations of NEFA were lesser and concentrations of IGF-I and insulin were greater in plasma of FF than in that of MFF heifers during the 10 wk before puberty. Treatment significantly altered age, BW, carcass composition, and lipid partitioning at puberty in beef heifers. We conclude that the percentage of body fat is not the sole regulator of puberty, and age may be an important modulator in determining the onset of puberty in beef heifers.

Aging

RecA homologs Dmc1 and Rad51 interact to form multiple nuclear complexes prior to meiotic chromosome synapsis.

Dmc1 and Rad51, yeast homologs of the E. coli RecA protein, are shown by immunostaining to localize to as many as 64 sites within spread meiotic nuclei. Genetic requirements for this punctate pattern suggest it represents recombination intermediates. Dmc1 and Rad51 colocalize and are therefore likely to act together during recombination. Despite their similarities, the two proteins have specialized functions: Dmc1 complexes do not form in rad51 mutants, while Rad51 complexes are retained indefinitely in dmc1 mutants. Dmc1 and, by inference, Rad51 form complexes before synapsis as monitored by immunostaining for Zip1 protein. Analysis of zip1 mutants shows that Zip1 promotes dissociation of Dmc1 complexes. Colocalization of Dmc1 and Zip1 raises the possibility that Dmc1 and Rad51 are components of recombination nodules.

Cell Compartmentation

Helper T lymphocyte unresponsiveness to cardiac allografts following transient depletion of CD4-positive cells. Implications for cellular and humoral responses.

Initial treatment of heterotopic cardiac transplant recipients with anti-CD4 mAb promotes long-term (> 60 days) allograft survival. We have used modified limiting dilution analysis to quantitate donor alloantigen-reactive helper T lymphocytes (HTL) and CTL in mice bearing long-term cardiac allografts. Despite repopulation of lymphoid tissues with CD4+ T cells, donor alloantigen-reactive IL-2 producing and IL-4-producing HTL were rare or not detectable in lymphoid tissues or in the graft. While donor-reactive precursor CTL were present in lymphoid tissues, modified limiting dilution analysis revealed that stimulated ("antigen-conditioned") CTL were not detectable, and few CTL were present in the graft. In addition, antibodies reactive with donor alloantigens were not detectable in the sera of mice bearing long-term cardiac allografts. To determine whether additional in vivo stimulation with donor alloantigens would elicit an immune response, sponge allografts were implanted into mice bearing long-term cardiac allografts. Previous reports from this laboratory have demonstrated that T cell infiltration of sponge allografts is dependent upon antigen-driven cytokine production. While third-party sponge allografts were readily infiltrated by third-party-reactive HTL and CTL, sponge allografts of the same strain as the cardiac allograft were not infiltrated by T cells. However, donor strain sponge allografts induced an IgM (but not IgG) alloantibody response. These data indicate that IgM alloantibody could be induced in the absence of a cellular response to the sponge allograft. Kinetic studies revealed that a transient IgM (but not IgG) response was induced by the initial cardiac transplantation in the absence of CD4+ cells. These IgM alloantibodies disappeared by day 21 despite the persistence of the allograft. These observations indicate that transient depletion of CD4+ T cells induces allograft-specific T cell tolerance, but does not eliminate the ability to mount an allograft-specific IgM response. To our knowledge, this is the first report of a transient humoral response to alloantigens that occurs in the absence of CD4+ T cells, and can be reinduced in "tolerant" animals that fail to mount a cellular immune response. Potential mechanisms involved in the development and maintenance of anti-CD4 mAb-induced tolerance are discussed.

Animals

Body energy reserves influence the onset of luteal activity after early weaning of beef cows.

The influence of body energy reserves on the onset of luteal activity and concentrations of LH and IGF-I in serum was evaluated in postpartum anestrous beef cows after early weaning. Multiparous Hereford and Hereford x Angus cows (n = 24) were fed during gestation to establish body condition scores between 3 and 6 (BCS, 1 = emaciated; 9 = obese) at parturition. Concentrations of progesterone in plasma were determined weekly for 5 wk postpartum (PP). Anovulatory cows and their calves (n = 19) were confined in stalls on d 40 +/- 3 PP. Jugular cannulas were inserted on d 44 +/- 3 PP, and calves were weaned (d 0) the following day. Blood samples were collected from all cows for 4 h (every 10 min) before weaning and on d 1, 2, 4, 6, 8, and 10 after weaning and LH was quantified. Progesterone was quantified in daily blood samples until d 10, and in samples taken twice weekly until d 46. Within 25 d after weaning, 100% of the cows with BCS < or = 5 at weaning (n = 7) had initiated luteal activity, whereas only 43% (P < .01) of the cows with BCS < 5 (n = 12) had luteal activity. Mean serum IGF-I concentrations were correlated with BCS (r = .50; P < .05). Frequency of LH pulses was influenced (P < .01) by body condition at weaning but was not influenced by day after weaning. The number of LH pulses at weaning, serum IGF-I, and the interval to the onset of ovarian activity after early weaning of anestrous beef cows were influenced by BCS.

Anestrus

Structural relationship of bacterial RecA proteins to recombination proteins from bacteriophage T4 and yeast.

RecA protein is essential in eubacteria for homologous recombination and promotes the homologous pairing and strand exchange of DNA molecules in vitro. Recombination proteins with weak sequence similarity to bacterial RecA proteins have been identified in bacteriophage T4, yeast, and other higher organisms. Analysis of the primary sequence relationships of DMC1 from Saccharomyces cerevisiae and UvsX of T4 relative to the three-dimensional structure of RecA from Escherichia coli suggests that both proteins are structural homologs of bacterial RecA proteins. This analysis argues that proteins in this group are members of a single family that diverged from a common ancestor that existed prior to the divergence of prokaryotes and eukaryotes.

Adenosine Triphosphatases

CD4-positive helper T lymphocytes mediate mouse cardiac allograft rejection independent of donor alloantigen specific cytotoxic T lymphocytes.

Mouse heterotopic cardiac allograft recipients were depleted of CD4+ or CD8+ T lymphocytes in vivo to assess cellular requirements for graft infiltration, tissue damage, and acute allograft rejection. Modified limiting dilution analysis was employed to quantitate IL-2-producing Th lymphocytes (HTL) and CTL infiltrating the graft. Results were correlated with graft function and histologic evidence of tissue damage. In unmodified recipients, large numbers of donor alloantigen-specific CTL infiltrated the graft, overshadowing a modest number of HTL. CTL infiltration coincided with tissue damage and loss of graft function, suggesting a key role for CTL in rejection. In vivo treatment with anti-CD4 mAb inhibited both HTL and CTL infiltration, and no histologic evidence of tissue damage was observed. This observation suggested that HTL, although few in number, regulated the development of effector CTL and/or entry of these CTL into the graft. Reconstitution of HTL-depleted recipients with IL-2 resulted in graft infiltration by stimulated CTL, as assessed by modified limiting dilution analysis. However, these stimulated CTL failed to mediate tissue damage, and graft survival was prolonged. Unlike CTL obtained from unmodified recipients, graft-infiltrating CTL of IL-2-reconstituted mice were incapable of directly lysing donor cells in a 51Cr release assay. Hence, while IL-2 facilitated partial CTL differentiation and mobilization to the graft, additional signals appear necessary for maturation into lytic CTL. Furthermore, in recipients depleted of CTL by treatment with anti-CD8 mAb, HTL infiltrating the allograft, though few in number, were associated with extensive tissue damage and loss of graft function. These data suggest a less important role for CTL in the rejection process, and indicate that graft-infiltrating CTL are insufficient as sole mediators of cardiac allograft rejection. Potential mechanisms by which CD4+ HTL mediate cardiac allograft rejection independent of CTL are discussed.

Animals

Pulsatile infusion of gonadotropin-releasing hormone initiates luteal activity in nutritionally anestrous beef cows.

Thirty-five nonlactating Hereford and Hereford x Angus cows weighing 469 +/- 8 kg, with a body condition score (BCS) of 5.5 +/- .6 and exhibiting normal estrous cycles, were fed to lose 1% of BW per week (n = 27) or to maintain BW (n = 8). Blood samples were collected every 7 d to monitor luteal activity and BW and BCS were recorded every 2 wk. When concentrations of progesterone in plasma were < 1 ng/mL for three consecutive weeks, anestrous cows (BCS, 3.1 +/- .7; BW loss, 24 +/- 5%) were assigned to pulses (i.v.) of saline (2 mL every hour), GnRH-4 (2 micrograms of GnRH every 4 h), or GnRH-1 (2 micrograms of GnRH every hour). Cows were confined to stalls for 4 d and two jugular cannulas were inserted 2 d before infusion of GnRH. Infusions began on d 0 and continued through d 14. Progesterone was quantified in daily blood samples and LH was quantified in samples collected every 10 min for 4 h on d-1, 0, 2, 4, 6, 8, 10, 12, 14, and 15. On d 16, cows were returned to pasture and blood samples were collected every 2nd d through d 30. Pulsatile infusion of GnRH increased (P < .05) the amplitude of LH pulses but did not affect pulse frequency. During infusion of GnRH every hour or every 4th h, concentrations of LH in serum were increased compared with those in saline-treated cows (P < .001), and cows receiving GnRH hourly had greater (P < .005) LH than cows given GnRH every 4 h.(ABSTRACT TRUNCATED AT 250 WORDS)

Anestrus

DMC1: a meiosis-specific yeast homolog of E. coli recA required for recombination, synaptonemal complex formation, and cell cycle progression.

DMC1 is a new meiosis-specific yeast gene. Dmc1 protein is structurally similar to bacterial RecA proteins. dmc1 mutants are defective in reciprocal recombination, accumulate double-strand break (DSB) recombination intermediates, fail to form normal synaptonemal complex (SC), and arrest late in meiotic prophase. dmc1 phenotypes are consistent with a functional relationship between Dmc1 and RecA, and thus eukaryotic and prokaryotic mechanisms for homology recognition and strand exchange may be related. dmc1 phenotypes provide further evidence that recombination and SC formation are interrelated processes and are consistent with a requirement for DNA-DNA interactions during SC formation. dmc1 mutations confer prophase arrest. Additional evidence suggests that arrest occurs at a meiosis-specific cell cycle "checkpoint" in response to a primary defect in prophase chromosome metabolism. DMC1 is homologous to yeast's RAD51 gene, supporting the view that mitotic DSB repair has been recruited for use in meiotic chromosome metabolism.

Amino Acid Sequence

Cyclosporin A and FK506 mediate differential effects on T cell activation in vivo.

Modified limiting dilution analysis techniques were used to evaluate the effects of the immunosuppressants cyclosporin A (CsA) and FK506 on alloantigen-induced T cell activation in vivo. Treatment of sponge matrix allograft recipients with either CsA or FK506 inhibited lymphocytic infiltration of the allograft, a process thought to be dependent on local lymphokine production. In addition, both immunosuppressants markedly reduced the absolute number of lymphocytes recovered from the draining lymph nodes (LN) and prevented CTL activation in the LN. However, Ag-primed helper T lymphocytes (HTL) were present in the draining LN of sponge allograft recipients treated with CsA, but not in recipients treated with FK506. T cell depletion experiments were performed to determine the phenotype of primed HTL in the LN of untreated and CsA-treated sponge allograft recipients. In untreated sponge allograft recipients, CD4+ and CD8+ Ag-primed HTL were present in the draining LN in equivalent numbers. In contrast, the majority of primed HTL in the LN of CsA-treated sponge allograft recipients were CD8+, rather than CD4+ T cells. These observations indicate that CsA and FK506 exert distinct in vivo effects at the level of HTL priming, and CD4+ and CD8+ HTL exhibit differential sensitivity to CsA in vivo.

Animals