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J L Vallet

Publications and source records attributed to J L Vallet.

18 recordsLinked to original sources

Trophoblast interferons in early pregnancy of domestic ruminants.

A type I interferon (IFN) secreted by the trophoblast of early sheep and cow embryos is thought to be responsible for the maternal recognition of pregnancy. The expression of trophoblast IFN is tissue specific and temporally controlled. However, the isolated bovine trophoblast IFN promoter did not confer tissue specificity on the expression of a bacterial chloramphenicol acetyl transferase (CAT) reporter gene, and could not be induced by virus, unlike other type I IFNs. Trophoblast IFN acts locally within the uterus to prevent luteolysis and prolong progesterone secretion. Endometrial IFN receptors are present, and trophoblast IFN decreases expression of endometrial oxytocin receptor and increases expression of endometrial beta 2-microglobulin, MHC class I antigens and Mx (a mediator of IFN antiviral activity) only in the pregnant horn of pregnant ewes with a transected uterus. The primary effect of trophoblast IFN during early pregnancy appears to be an inhibition of oxytocin receptor expression, although studies in ovariectomized ewes suggest that luteal oxytocin may be required to facilitate the inhibition of prostaglandin F secretion by trophoblast IFN. An investigation of the isolated oxytocin receptor promoter should confirm its critical role in the maternal recognition of pregnancy.

Animals

Stimulation of 2',5'-oligoadenylate synthetase activity in sheep endometrium during pregnancy, by intrauterine infusion of ovine trophoblast protein-1, and by intramuscular administration of recombinant bovine interferon-alpha I1.

In Expt 1, activity of 2',5'-oligoadenylate (2',5'-A) synthetase in endometrium collected on Day 16 (oestrus is Day 0) from the uterine horn ipsilateral to the corpus luteum was greater (P less than 0.001) for pregnant (135.5 +/- 1.72 nmol/mg protein/h) than for cyclic ewes (58.5 +/- 0.99 nmol/mg protein/h). In pregnant ewes, activity of 2',5'-A synthetase in endometrium collected from the contralateral uterine horn (119.5 +/- 1.72 nmol/mg protein/h) did not differ from that of the ipsilateral horn. In Expt 2, three ovariectomized ewes were treated with progesterone for 10 days and then with oestrogen for 2 days. Activity of 2',5'-A synthetase on Day 13 was 18% greater (P less than 0.10) in endometrium collected from the uterine horn receiving infusions of 30 micrograms ovine trophoblast protein-1 (oTP-1) twice a day on Days 10, 11 and 12(57.7 +/- 0.22 nmol/mg protein/h) than from the uterine horn receiving control infusions of serum protein (SP; 48.8 +/- 0.22 nmol/mg protein/h). In Expt 3, activity of 2',5'-A synthetase on Day 15 was not significantly greater in endometrium collected from the uterine horn of cyclic ewes receiving infusions of 30 micrograms oTP-1 twice a day on Days 12, 13 and 14 (46.5 +/- 0.37 nmol/mg protein/h) than in endometrium from the uterine horn receiving infusions of SP (38.2 +/- 0.37 nmol/mg protein/h). When results of Expt 2 and Expt 3 were combined, intrauterine infusion of oTP-1 increased (P less than 0.05) activity of 2',5'-A synthetase in endometrium by 20%.(ABSTRACT TRUNCATED AT 250 WORDS)

2',5'-Oligoadenylate Synthetase

A low molecular weight endometrial secretory protein which is increased by ovine trophoblast protein-1 is a beta 2-microglobulin-like protein.

Ovine trophoblast protein-1 (oTP-1), stimulates the secretion of several proteins in explant culture of day-12 cyclic ovine endometrium. We partially purified and identified one of these proteins, an 11,000 Mr, pI approx. 6 protein by N-terminal amino acid sequencing and immunoprecipitation using antibody to human beta 2-microglobulin. The protein was purified from cultures of endometrium collected from day-16 pregnant ewes. The N-terminal amino acid sequence was 40-55% homologous to beta 2-microglobulin from a variety of species. Antibody to human beta 2-microglobulin immunoprecipitated the protein and another protein of similar molecular weight but more acidic pI. Using immunoprecipitation of radiolabelled proteins from culture, we demonstrated that oTP-1 increased production of this protein by 40% (P less than 0.05). We conclude that oTP-1 increases the secretion of a beta 2-microglobulin-like protein from day-12 non-pregnant endometrium in culture.

Amino Acid Sequence

Ovine conceptus secretory proteins and bovine recombinant interferon alpha (1)-1 decrease endometrial oxytocin receptor concentrations in cyclic and progesterone-treated ovariectomized ewes.

A series of experiements was performed to determine whether proteins produced by the sheep conceptus (oCSP) during the time of maternal recognition of pregnancy or bovine recombinant interferon alpha 1-1 (brIFN) decrease oxytocin receptor concentrations in the endometrium of cyclic or ovariectomized progesterone-treated ewes. In experiment 1, cyclic ewes received intrauterine infusions of serum proteins (oSP), oCSP or brIFN on days 12, 13 and 14 of the oestrous cycle. Ewes then received an oxytocin challenge (1 microgram in 0.9% NaCl), and blood samples were taken just before and every 10 min for 1 h after the challenge; these were measured for 13,14-dihydro-15-ketoprostaglandin F 2 alpha (PGFM), the stable metabolite of prostaglandin F 2 alpha. Endometrial oxytocin receptor concentrations were then measured. The oCSP and brIFN treatments suppressed both endometrial oxytocin receptor concentrations and oxytocin-induced increases in PGFM concentrations. In experiment 2, ewes were ovariectomized and then pretreated with a fluorogestone acetate-releasing intravaginal device for 10 days followed by oestradiol (25 micrograms i.m. twice daily for 2 days). Ewes were then treated with progesterone (10 mg i.m. twice daily for 12 days). Ewes received intrauterine infusions of oSP, oCSP and brIFN on days 10, 11 and 12 of progesterone treatment. On the day after the last progesterone treatment, ewes were challenged with oxytocin and blood samples collected to measure PGFM. Endometrial oxytocin receptors were also measured. Treatment with oCSP, but not brIFN, suppressed endometrial concentrations of oxytocin receptor, and neither oCSP nor brIFN altered oxytocin-induced increases in PGFM concentrations.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Molecular biology of trophoblast interferons and studies of their effects in vivo.

Southern blotting of bovine genomic DNA indicated the presence of at least 3 bovine tIFN genes. The full DNA sequence of one of these genes, thought to be expressed in trophoblast, has been determined, including 193 bp of 5' non-coding region. The inferred amino acid sequence of bovine tIFN is more similar to ovine tIFN (80%) than to bovine IFN-alpha II (70%). The 5' flanking sequence has some similarity with bovine IFN-alpha II, and may contain a viral response element. A recombinant bovine alpha I interferon (Ciba Geigy; brIFN), resembling tIFN, extended oestrous cycle length in sheep when administered by intrauterine infusion over the period, Days 12-15 after oestrus, when maternal recognition of pregnancy occurs. Intramuscular injection was only effective at the doses used if given over a longer period (i.e. Days 9-15). Our experiments indicate that both tIFN and brIFN inhibit luteolysis by preventing a rise in endometrial oxytocin receptor concentrations, and suggest that tIFN achieves this by extending the time for which progesterone suppresses oxytocin receptor development. Further studies are required to confirm this hypothesis and to elucidate the interaction of the effects of progesterone and tIFN in endometrial cells.

Amino Acid Sequence

Oxytocin-stimulated inositol phosphate turnover in endometrium of ewes is influenced by stage of the estrous cycle, pregnancy, and intrauterine infusion of ovine conceptus secretory proteins.

Three experiments (Exp) assessed the influence of stage of the estrous cycle, pregnancy, and intrauterine infusion of ovine conceptus secretory proteins (oCSP) on turnover of inositol trisphosphate (the putative second-messenger for oxytocin-stimulated secretion of prostaglandin F2 alpha) in ovine endometrium during luteolysis and maternal recognition of pregnancy. In Exp 1, endometrium was collected from 5 cyclic (Cy) and 6 pregnant (P) ewes on Day 16 after onset of estrus. In Exp 2, endometrium was collected from Day 12 Cy (n = 5), Day 12 P (n = 3), Day 16 Cy (n = 4), and Day 16 P (n = 3) ewes. In Exp 3, 12 Cy ewes were allotted randomly, in a 2 x 2 factorial arrangement, to receive serum protein (SP), or oCSP and estradiol-17 beta (E2), or vehicle treatments. Ewes were injected i.v. with 0.5 mg E2 or vehicle on Day 12 and received twice-daily infusions of 1.5 mg SP or oCSP (containing 25 micrograms ovine trophoblast protein-1 by radioimmunoassay [RIA]) + SP (1.5 mg total protein) into each uterine horn on Days 12, 13, and 14. Blood samples for RIA of plasma progesterone were collected on Days 10-15 (before treatment on each day) and endometrium was collected on Day 15. For each Exp, 100 mg endometrium was incubated, in duplicate, for 2 h with 10 microCi [3H] inositol and treated with 0 or 100 nM oxytocin (OT) for 20 min, then [3H]inositol mono-, bis-, and trisphosphates (IP1, IP2, and IP3, respectively) were quantified.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Control of endometrial oxytocin receptor and uterine response to oxytocin by progesterone and oestradiol in the ewe.

The effects of administration of progesterone and oestradiol on ovine endometrial oxytocin receptor concentrations and plasma concentrations of 13,14-dihydro-15-keto prostaglandin F-2 alpha (PGFM) after oxytocin treatment were determined in ovariectomized ewes. Ewes received progestagen pre-treatment, progesterone and/or oestradiol in 11 different treatment schedules. Progestagen pre-treatment decreased oxytocin receptor concentrations in endometrium from ewes treated subsequently with either progesterone for 5 days or progesterone for 5 days plus oestradiol on Days 4 and 5 of progesterone treatment. Oestradiol increased endometrial oxytocin receptor concentrations when administered on Days 4 and 5 of 5 days progesterone treatment. Progestagen pre-treatment followed by progesterone treatment for 12 days caused a large increase in oxytocin receptors and no further increase occurred when ewes were given oestradiol on Days 11 and 12, or when progesterone was withdrawn on Days 11 and 12, or these two treatments were combined. Oxytocin administration caused an increase in plasma PGFM concentrations in ewes which did not receive progestagen pre-treatment, and subsequently received progesterone treatment for 5 days and oestradiol treatment on Days 4 and 5 of progesterone treatment. Similarly treated ewes which received progestagen pre-treatment did not respond to oxytocin. Oxytocin administration also increased plasma PGFM concentrations in ewes which received progestagen pre-treatment followed by progesterone treatment for 12 days, progesterone treatment for 12 days plus oestradiol on Day 11 and 12 of progesterone treatment, progesterone withdrawal on Day 11 and 12, or progesterone withdrawal and oestradiol treatment combined. The results indicate that (1) progesterone pre-treatment affects oxytocin receptor concentrations in the endometrium and uterine responsiveness to oxytocin and (2) progesterone treatment alone for 12 days after a treatment which mimics a previous luteal phase and oestrus is sufficient to induce oxytocin receptors and increase oxytocin-induced PGF release. These results emphasize the importance of progesterone and provide information which can be used to form an hypothesis for control of luteolysis and oestrous cycle length in the ewe.

Animals

De novo synthesis and release of polypeptides from cyclic and early pregnant porcine oviductal tissue in explant culture.

The objective of the present study was to identify and characterize in a limited manner the major de novo oviductal secretory proteins (OSP) synthesized and released by the porcine oviduct. Oviductal tissue was collected on various days of the estrous cycle (EC) and early pregnancy (EP) and cultured in a modified minimal essential medium supplemented with 100 muCi L-[3H]-leucine. Oviductal secretory activity, as measured by the rate of incorporation of 3H-leucine (dpm/mg wet tissue weight) into nondialyzable macromolecules, was greatest (P less than .01) between days 0 and 2 and reached its lowest levels on days 10 to 15. There was no difference between left and right side or pregnancy status. This increased rate of incorporation at proestrus and estrus is temporally associated with elevated levels of estrogen. Incorporation rate for ampulla was greater than for the isthmus. Analysis of oviductal culture medium by one-dimensional sodium dodecyl sulphate-polyacrylamide gel electrophoresis and fluorography revealed three protein bands of relative molecular weight (Mr) 335,000, 115,000, and 85,000, which were associated with proestrus, estrus, and metestrus and were not detectable on other days. All three proteins also incorporated 3H-glucosamine. The 115,000 Mr band was the major 3H-glucosamine-labeled protein. Two protein bands (Mr 60,000 and 20,000) were expressed with increasing progesterone during diestrus. Other de novo synthesized protein bands appear to be present throughout the EC and EP with little modulation by estrogen or progesterone. Thus, this study demonstrates that for the porcine oviduct, the increase in the incorporation rate of 3H-leucine into OSP by both whole oviduct and ampulla and de novo synthesis and secretion of three glycoproteins, Mr 335,000, 115,000, and 85,000, were associated with proestrus and estrus when events such as fertilization and early cleavage stages of embryo development occurred.

Animals

Effects of pregnancy, oxytocin, ovine trophoblast protein-1 and their interactions on endometrial production of prostaglandin F2 alpha in vitro in perifusion chambers.

Pregnancy and intrauterine infusion of ovine trophoblast protein one (oTP-1) decrease oxytocin-induced secretion of prostaglandin F2 alpha (PGF) from the uterus. In the present study, effects of oTP-1 and pregnancy on endometrial secretion of PGF were examined in an in vitro perifusion system. In Experiment 1, endometrium from day 14 pregnant and cyclic ewes was perifused sequentially on both the lumenal and myometrial sides with Krebs Ringers Bicorbonate solution (KRB), KRB plus oxytocin (1 IU/ml) and KRB alone. Endometrium from pregnant ewes secreted more PGF from both lumenal and myometrial sides than endometrium from cyclic ewes (P less than 0.05). Oxytocin stimulated secretion of PGF from both sides of endometrium regardless of status. Secretion of PGF was greater from the lumenal surface of endometrium compared to myometrium (P less than 0.05) for pregnant and cyclic ewes. For Experiment 2, endometrium was collected from day 15 cyclic ewes and perifused sequentially with KRB, KRB plus 300 ng/ml of either Bovine Serum Albumin (BSA) or oTP-1, KRB with or without BSA or oTP-1 plus oxytocin (1 IU/ml) and then KRB alone. Oxytocin stimulated greater release of PGF from oTP-1-treated than BSA-treated endometrium. Pretreatment of endometrium with oTP-1 had the same effect on oxytocin-induced PGF secretion as cotreatment with oTP-1 and oxytocin. In Experiment 3, uterine horns of cyclic ewes were catheterized on day 10 of the estrous cycle, and infused with either oTP-1 or day 16 pregnant sheep serum proteins on days 12, 13 and 14. Endometrium was collected on day 15 and perifused sequentially with KRB, KRB plus oxytocin (1 IU/ml) and then KRB alone. Treatment of ewes with oTP-1 attenuated endometrial secretion of PGF in response to oxytocin. Results of this study indicate that: (1) pregnancy stimulates basal secretion of PGF from endometrium and has no effect on oxytocin-induced secretion of PGF in vitro; (2) short-term oTP-1 treatment enhances oxytocin-induced PGF secretion from day 15 cyclic endometrium and (3) long-term oTP-1 treatment in vivo inhibits oxytocin-induced PGF secretion in ewes.

Animals

Inhibition of lymphocyte proliferation by ovine trophoblast protein-1 and a high molecular weight glycoprotein produced by the peri-implantation sheep conceptus.

Sheep conceptuses were flushed from uteri on day 16 of pregnancy and cultured in vitro. Three peaks of immunosuppressive activity (i.e., ability to inhibit [3H]thymidine incorporation into mitogen-stimulated lymphocytes) were localized in conceptus-conditioned culture medium: one corresponding to a high-molecular-weight glycoprotein (HMWG; Mr = 800-900 kDa), one corresponding to ovine trophoblast protein-1 (oTP-1), the antiluteolytic, interferon-like molecule of the sheep conceptus, and a third fraction containing a previously undescribed molecule with a molecular weight between 10 and 14 kDa. Both HMWG and oTP-1 inhibited lymphocyte proliferation in a dose-dependent manner. Delaying the addition of HMWG or oTP-1 until 24 h after the addition of phytohemagglutinin (PHA) reduced the degree of suppression relative to cultures where HMWG and oTP-1 were added at the time of PHA addition. Nonetheless, the molecules were still capable of inhibiting proliferation. Addition of human recombinant IL-2 (0-65 U/ml) to PHA-stimulated lymphocyte cultures could not reverse HMWG- or oTP-1-induced suppression of [3H]thymidine uptake by PHA-stimulated cells. Furthermore, treatment of lymphocytes with HMWG or oTP-1 suppressed IL-2-induced proliferation. Therefore, HMWG and oTP-1 affect both early and later events in the in vitro proliferative response of mitogen-stimulated lymphocytes, including responsiveness to IL-2.

Animals

Effect of ovine trophoblast protein-1, oestrogen and progesterone on oxytocin-induced phosphatidylinositol turnover in endometrium of sheep.

In Exp. 1, endometrium was collected from Day-15 cyclic ewes and effects of oTP-1, oxytocin and oTP-1 + oxytocin, in various temporal relationships, on phosphatidylinositol (PI) turnover were determined. Co-treatment of endometrium with oTP-1 and oxytocin inhibited stimulatory effects of oxytocin, while treatment with oTP-1 before and during oxytocin administration had no effect. Turnover of PI was unaffected by oTP-1 alone. In Exp. 2, ovariectomized ewes were treated with progesterone (50 mg/day) for 10 days and then oestrogen (100 micrograms/day) for 2 days and endometrium was collected. Oxytocin stimulated PI turnover in endometrium, but oTP-1 had no effect alone or in combination with oxytocin. In Exp. 3, ovariectomized ewes were treated with corn oil (1 ml/day), oestrogen (50 micrograms/day), progesterone (50 mg/day) or progesterone + oestrogen for 10 days and endometrium was collected. Oxytocin stimulated PI turnover only in ewes that received progesterone. oTP-1 alone had no effect on PI turnover, while co-treatment of endometrium with oxytocin and oTP-1 stimulated PI turnover in ewes treated with progesterone, but not progesterone and oestrogen. Pretreatment of endometrium with oTP-1 stimulated PI turnover when ewes were treated with progesterone or progesterone + oestrogen. Pretreatment of endometrium with oxytocin and then treatment with oTP-1 inhibited PI turnover compared to treatment with oxytocin alone. In Exp. 4, ovariectomized ewes were treated as in Exp. 2. Catheters were placed into the uterine horns and ewes received oTP-1 into one horn and serum into the other twice daily on Days 10-12 of steroid treatment. Endometrium collected on Day 13 was used to measure PI turnover and received either no treatment or oxytocin. Oxytocin stimulated PI turnover in endometrium of these ewes and in-vivo treatment of the ewes with oTP-1 had no effect on PI turnover. These results indicate that antiluteolytic effects of oTP-1 are not mediated by inhibiting effects of oxytocin on phosphatidylinositol turnover if oxytocin receptors are present and that uterine responsiveness to oxytocin is progesterone dependent.

Animals

Comparative aspects of maternal recognition of pregnancy between sheep and pigs.

Sheep conceptuses secrete a protein, oTP-1, between Days 10 and 21 of gestation which is responsible for establishment of pregnancy. oTP-1 inhibits uterine production of luteolytic amounts of PGF-2 alpha (PGF) produced in response to oestradiol and oxytocin. oTP-1 does not compete with oxytocin for binding to oxytocin receptors, but may interfere with oxytocin stimulation of the inositol phospholipid system. Pig conceptuses secrete oestrogens between Days 10 and 15 of pregnancy which are essential for establishment of pregnancy. Oestrogens, directly or indirectly, alter secretion of PGF from an endocrine direction (towards uterine vasculature) to an exocrine direction (towards the uterine lumen). PGF sequestered in the uterine lumen is unavailable to exert a luteolytic effect on the CL. Pig conceptus secretory proteins stimulate uterine production of PGF and PGE. Conceptus secretory proteins of sheep and pigs include proteins which have antiviral activity and may be considered interferons. In sheep, oTP-1 has both antiluteolytic and antiviral properties. The specific pig conceptus secretory proteins(s) possessing antiviral activity has not been established. Unlike oTP-1, however, it does not appear to possess antiluteolytic activity.

Animals

Antiviral activity of the pregnancy recognition hormone ovine trophoblast protein-1.

Ovine trophoblast protein-1 (oTP-1) is an antiluteolytic protein which plays an important role in maternal recognition of pregnancy. It exhibits a 45-70% amino acid sequence homology with alpha interferons (IFN-alpha s) from various species. We show here that purified oTP-1 has high specific antiviral activity (2-3 X 10(8) units/mg protein) and is thus as potent as any known IFN. oTP-1 is antigenically distinct but does show antigenic relation to both ovine and bovine IFN-alpha s. The antiviral activity of oTP-1 could be demonstrated in Day 12 - Day 16 conceptus culture medium and in allantoic fluid from Day 60 of pregnancy. Our functional and antigenic characterization suggests that oTP-1 is a type of IFN-alpha which performs classic roles associated with IFN-alpha, as well as being the primary conceptus secretory product responsible for maternal recognition of pregnancy.

Allantois

Effect of ovine conceptus secretory proteins and purified ovine trophoblast protein-1 on interoestrous interval and plasma concentrations of prostaglandins F-2 alpha and E and of 13,14-dihydro-15-keto prostaglandin F-2 alpha in cyclic ewes.

Conceptus secretory proteins (oCSP) were obtained from medium in which sheep conceptuses, collected on Day 16 of pregnancy, were cultured for 30 h. A portion of the culture medium (500 ml) was prepared for intrauterine infusion by concentrating the proteins by Amicon ultrafiltration (Mr 500 cutoff). A second portion (500 ml medium) was used to purify sheep trophoblast protein one (oTP-1). Proteins remaining after oTP-1 purification were concentrated and then passed through an anti-oTP-1 sepharose CL-4B affinity column to remove any remaining oTP-1 (oCSP-oTP-1). Serum proteins (oSP) were collected from a Day-16 pregnant ewe and diluted for infusion. Catheters were placed in the uterus of cyclic (Day 10) ewes. The following combinations of proteins were infused: 0.75 mg oCSP + 0.75 mg oSP (5 ewes), 0.75 mg oCSP - oTP-1 + 0.75 mg oSP (4 ewes), 0.05 mg oTP-1 + 1.45 mg oSP (5 ewes) and 1.5 mg oSP only (5 ewes). Infusions were twice daily on Days 12 and 13 (08:00 and 17:00 h) and once on Day 14 (08:00 h). On Day 14, ewes were injected intravenously at 08:00 h with 0.5 mg oestradiol-17 beta. Blood sampling began 30 min before oestradiol injection and continued every 30 min for 10 h. On Day 15 ewes received 10 i.u. oxytocin intravenously (08:00 h). Blood samples were collected 10 min before oxytocin and every 10 min for 1 h after oxytocin injection. Concentrations of prostaglandin (PG) F, PGE-2/PGE-1 (PGE) and 13,14-dihydro-15-keto-PGF-2 alpha (PGFM) were measured by specific radioimmunoassay. Ewes treated with oTP-1 and oCSP had longer (P less than 0.05) interoestrous intervals (27 and 25 days, respectively) compared to ewes treated with oSP and oCSP--oTP-1 (19 and 19 days, respectively) (s.e.m. = 1.56 days). These results indicate that oTP-1 alone is as potent as total conceptus secretory proteins in extending luteal maintenance. Ewes treated with oTP-1 and oCSP had no increase in PGF after oestradiol injection while production of PGF did increase 6-10 h after oestradiol in ewes treated with oSP and oCSP--oTP-1. PGFM was correlated with PGF concentrations (r = 0.57, P less than 0.01) although presence or absence of increases in production of PGFM for the treatment groups were not the same as those for PGF. No effects of treatment on PGE were detected.(ABSTRACT TRUNCATED AT 400 WORDS)

Alprostadil

Development of a radioimmunoassay for ovine trophoblast protein-1, the antiluteolytic protein from the sheep conceptus.

A radioimmunoassay has been developed for quantitation of ovine trophoblast protein-1 (oTP-1), a sheep conceptus secretory protein which allows for maintenance of the corpus luteum during early pregnancy. The assay was validated for dialysed and undialysed culture medium and pregnant uterine flushings ranging from no dilution (neat) to dilutions of 1:2500 for dialysed media, 1:100-1:1000 for undialysed media and 1:50-1:1000 for pregnant uterine flushings. The assay accurately measured oTP-1 added to undiluted and diluted dialysed and undialysed culture media and pregnant uterine flushings. No cross-reaction was detectable for bovine alpha or gamma interferon, bovine calmodulin, feline conceptus secretory proteins, equine conceptus secretory proteins, porcine conceptus secretory proteins, bovine conceptus secretory proteins and proteins in a uterine flushing collected from a non-pregnant ewe. Immunoreactivity in the assay matched that for oTP-1 throughout oTP-1 purification. This assay is the first validated assay which may be used to quantitate production of oTP-1 in culture or content of oTP-1 in uterine flushings.

Animals

The effect of ovine trophoblast protein-one on endometrial protein secretion and cyclic nucleotides.

The effect of ovine trophoblast protein-one (oTP-1) on endometrial protein secretion was examined by using a dual radioisotope technique in which 3H- and 35S-methionine were employed to measure relative rates of protein release into the medium by endometrial explant cultures (Exp. I). Endometrium (200 mg) from Day (D) 12 of the cycle was cultured with either 5 micrograms/ml oTP-1, 5 micrograms/ml bovine serum albumin (BSA) or 1 mM dibutyryl cyclic adenosine 3',5'-monophosphate (DbcAMP). Culture media from control BSA and treated explant cultures were mixed. Proteins were separated by two-dimensional polyacrylamide gel electrophoresis (2D-PAGE) and detected by fluorography. Individual protein spots were punched from gels, extracted, and their radioactive content measured. Ratios of 3H:35S were used to determine treatment effects. In Experiment II, 3H- and 14C-leucine were used for the dual radiolabel, and the DbcAMP treatment was omitted. In both experiments, a protein having a molecular weight (Mr) of about 70,000 and a pI approximately equal to 4 was increased (p less than 0.01) 200-400% by oTP-1. Secretion of several other endometrial proteins was also amplified in the presence of oTP-1. The polypeptides that increased in response to oTP-1 were inhibited by DbcAMP, and vica versa. In Experiment III, endometrial explants from D12 cyclic ewes were cultured for 4 h with either 5 micrograms/ml oTP-1 or 5 micrograms/ml BSA to determine whether oTP-1 influenced concentrations of 3',5'-cyclic adenosine monophosphate (cAMP) and 3',5'-cyclic guanosine monophosphate (cGMP). Concentrations of cAMP in oTP-1-treated endometrium were lower (p less than 0.1) than in BSA-treated endometrium (0.29 vs. 0.41 pmoles/mg tissue, respectively). Levels of cGMP were unaffected by oTP-1. In Experiment IV, endometrium from D14 of the cycle was incubated in medium alone or in medium containing either 2 micrograms/ml oTP-1, 1 microgram/ml oxytocin (OXY), or oTP-1-plus-OXY. None of the treatments significantly affected cAMP levels. In Experiment V, D16 endometrium was collected from pregnant and nonpregnant ewes that had received either 0 or 10 IU OXY i.v. cAMP was higher (p less than 0.01) in endometrium from pregnant ewes compared to nonpregnant ewes (27.9 vs. 13.0 pmoles/mg tissue, respectively), but OXY had no detectable effect on endometrial content of cAMP in either nonpregnant or pregnant ewes.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Role of conceptus secretory products in establishment of pregnancy.

Conceptuses produce steroids, prostaglandins, proteins and possibly other unidentified agents which may play a role in the establishment and maintenance of pregnancy. A key event in this process is protection of the corpus luteum (CL) from the luteolytic activity of prostaglandin (PG) F-2 alpha of uterine origin. Oestrogens produced by the pig conceptuses between Days 11 and 16 appear to exert an antiluteolytic effect resulting in the sequestering of PGF-2 alpha within the uterine lumen. Failure of the pregnant uterus to release PGF-2 alpha in an endocrine fashion, therefore, allows for maintenance of CL function. Conceptuses of sheep and cattle produce proteins which, when introduced into the uterine lumen of nonpregnant ewes and cows, suppress the ability of oestradiol and oxytocin to stimulate uterine production of PGF-2 alpha. These conceptus secretory proteins appear to exert an antiluteolytic effect by inhibiting uterine production of luteolytic amounts of PGF-2 alpha. The horse conceptus produces both oestrogens and proteins during early pregnancy when uterine production of PGF-2 alpha is suppressed. Co-culture of horse endometrium and conceptus inhibits endometrial production of PGF-2 alpha. Conceptuses of pigs, sheep and cattle undergo elongation to achieve apposition between trophectoderm and endometrium but the horse embryo migrates rapidly and consistently throughout the uterus to achieve endometrial contact.

Animals