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Biomedical subjects

T Rowe

Publications and source records attributed to T Rowe.

At least 55 records · Page 3Linked to original sources

Idiopathic CD4+ T-lymphocytopenia--an analysis of five patients with unexplained opportunistic infections.

BACKGROUND: Although patients with idiopathic CD4+ T-lymphocytopenia and serious opportunistic infections have been described previously, the clinical and immunologic features of this condition have not been well defined. METHODS: We studied in detail five patients with idiopathic CD4+ T-lymphocytopenia. The studies included serologic testing, culture, and polymerase chain reaction for the human immunodeficiency virus (HIV) types 1 and 2, serologic testing for the human T-cell lymphotropic virus (HTLV) types I and II, lymphocyte phenotyping, immunoglobulin quantitation, and lymphocyte-transformation assays, as well as attempts to isolate a retroviral agent. The results were compared with those in HIV-infected persons matched for CD4+ T-cell counts and with those in normal controls. We also studied the spouses of patients and the blood donors for one patient. RESULTS: In these five patients, there was no evidence of either HIV or HTLV infection. All the patients had both low percentages and low counts of CD4+ T cells, with relative increases in percentages, but not counts, of CD8+ cells. Numbers of B cells and natural killer cells were generally normal. As compared with HIV-infected persons, our patients had lower percentages and counts of CD8+ cells and more lymphopenia. CD4+ counts were relatively stable over time. Instead of the high immunoglobulin levels seen in HIV infection, these patients had normal or slightly low levels of immunoglobulins. The lymphocyte-transformation response to mitogens and antigens was depressed. Results in spouses and blood donors were normal. CONCLUSIONS: Idiopathic CD4+ T-lymphocytopenia differs from HIV infection in its immunologic characteristics and in its apparent lack of progression over time. Nothing about the immunologic or viral-culture studies performed in these patients or about their family members or blood donors suggests that a transmissible agent causes this condition.

Adult↗

The C-terminal helix in subdomain 4 of the regulatory light chain is essential for myosin regulation.

In vertebrate smooth/non-muscle myosins, phosphorylation of the regulatory light chains by a specific calmodulin-activated kinase controls both myosin head interaction with actin and assembly of the myosin into filaments. Previous studies have shown that the C-terminal domain of the regulatory light chain is crucial for the regulation of these myosin functions. To further dissect the role of this region of the light chain in myosin regulation, a series of chicken smooth muscle myosin regulatory light chain mutants has been constructed with successive C-terminal deletions. These mutants were synthesized in Escherichia coli and analysed by their ability to restore Ca2+ regulation to scallop myosin that had been stripped of its native regulatory light chains ('desensitized'). The results show that regulatory light chain mutants with deletions in the C-terminal helix in subdomain 4 were able to reform the regulatory Ca2+ binding site on the scallop myosin head, but had lost the ability to suppress scallop myosin filament assembly and interaction with actin in the absence of Ca2+. Further deletions in the C-terminal domain led to a gradual loss of ability to restore the regulatory Ca2+ binding site. Thus, the regions in the C-terminal half of the regulatory light chain responsible for myosin regulation can be identified.

Actins↗

High-dose, short-term glucocorticoids for the treatment of infertility resulting from premature ovarian failure.

OBJECTIVE: To evaluate prospectively the effects of high-dose, short-term treatment with a glucocorticoid in an attempt to normalize ovarian failure and induce pregnancy in women presenting with infertility. DESIGN: Uncontrolled, nonrandomized prospective study. SETTING: Two university-based reproductive endocrinology clinics. PATIENTS: Eleven consecutive women with premature ovarian failure (POF) who were desirous of pregnancy. INTERVENTIONS: Prednisone 25 mg four times per day for 2 weeks. MAIN OUTCOME MEASURES: Two women demonstrated normalization of their serum gonadotropins, an increase of serum E2, and ultrasonographic visualization of follicular growth, with both conceiving. The other nine demonstrated no biochemical or clinical response. CONCLUSIONS: Premature ovarian failure may not be an irreversible process and may either spontaneously resolve or may respond to therapeutic modalities such as high-dose glucocorticoids in selected patients. In this uncontrolled study, the results were best with women with concomitant autoimmune thyroid disease and POF of < 2 years' duration.

Adult↗

Simian immunodeficiency virus needlestick accident in a laboratory worker.

The macaque monkey infected with simian immunodeficiency virus (SIV) is an animal model of the acquired immunodeficiency syndrome. We investigated a laboratory worker who was exposed by needlestick accident to blood from an SIV-infected macaque. Seroreactivity to SIV developed within 3 months of exposure, with antibody titres peaking from the third to the fifth month and declining thereafter. Polymerase chain reaction for SIV sequences and cultures of peripheral-blood mononuclear cells failed to show infection. Inoculation of an SIV-negative monkey with blood from the worker did not cause infection. Animal-care and laboratory workers should adhere strictly to recommended procedures to avoid accidental exposures when working with SIV-infected animals or specimens.

Animals↗

Chimeric myosin regulatory light chains identify the subdomain responsible for regulatory function.

Regulatory light chains, located on the 'motor' head domains of myosin, belong to the family of Ca2+ binding proteins that consist of four 'EF-hand' subdomains. Vertebrate regulatory light chains can be divided into two functional classes: (i) in smooth/non-muscle myosins, phosphorylation of the light chains by a calcium/calmodulin-dependent kinase regulates both interaction of the myosin head with actin and assembly of the myosin into filaments, (ii) the light chains of skeletal muscle myosins are similarly phosphorylated, but they play no apparent role in regulation. To discover the basis for the difference in regulatory properties of these two classes of light chains, we have synthesized in Escherichia coli, chimeric mutants composed of subdomains derived from the regulatory light chains of chicken skeletal and smooth muscle myosins. The regulatory capability of these mutants was analysed by their ability to regulate molluscan myosin. Using this test system, we identified the third subdomain of the regulatory light chain as being responsible for controlling not only the actin-myosin interaction, but also myosin filament assembly.

Amino Acid Sequence↗

Phenotypic expression of integrin membrane receptors on spontaneously proliferating CD8 cells in human T-lymphotropic virus type II (HTLV-II)-infected individuals.

Spontaneous lymphocyte proliferation in the absence of exogenous stimulators was examined in asymptomatic HTLV-II-seropositive (n = 12) and seronegative individuals (n = 16). Mean spontaneous lymphocytic proliferation significantly increased on day 8 postculture in HTLV-II-infected individuals (5762 +/- 899 cpm) compared with normal controls (2034 +/- 925 cpm, P less than 0.01). The proliferating cells in infected individuals were predominantly T cells; neither B cells nor monocytes demonstrated any proliferation. Phenotypic analysis of cultured cells from individuals with HTLV-II infection demonstrated differential expression of integrin molecules as defined by anti-CD29 and anti-S6F1 (42.8 +/- 4.2 and 39.6 +/- 5.9%, respectively) on CD8 cells, as compared with day 0 peripheral blood mononuclear cells (PBMC) from infected individuals (19.7 +/- 3.5 and 19.9 +/- 1.9%, respectively) or normal controls (12.9 +/- 3.1 and 11.5 +/- 2.5%, respectively; P less than 0.001 for both comparisons). These CD8+ cells did not express CD16 or CD11b. The culture supernatants derived from the spontaneously proliferating cells had significantly increased levels of sCD8 and sCD25 (765 +/- 180 and 1805 +/- 320 U/ml, respectively) compared with those from normal controls (222 +/- 120 and 305 +/- 90 U/ml, respectively; P less than 0.01). Furthermore, culture supernatants derived from spontaneously proliferating PBMC from HTLV-II-infected individuals had no detectable levels of HTLV antigen and did not stimulate proliferation of PBMC from normal donors. These results suggest that the spontaneous proliferation in HTLV-II asymptomatic carriers is due to expansion of CD8 cells expressing integrin receptors which may serve as costimulatory molecules for their activation.

Adult↗

UV-C sensitivity of unstimulated and stimulated human lymphocytes from normal and xeroderma pigmentosum donors in the comet assay: a potential diagnostic technique.

We have studied incision-break formation in unstimulated and stimulated populations of human T-lymphocytes using the comet (single-cell microgel electrophoresis) assay. The frequency of strand breaks 1 h after UV-irradiation appears to be far greater in unstimulated than in stimulated lymphocytes from normal donors and the excess of strand breaks was observed for a far longer time after irradiation. This result corroborates the greater sensitivity of UV-C irradiation observed in a colony-forming assay but suggests that the defect may relate to a defect in strand rejoining rather than a defect in incision. Few strand breaks were seen in either unstimulated or stimulated lymphocytes of four xeroderma pigmentosum donors, suggesting that the method may offer a rapid diagnostic assay for XP.

Cells, Cultured↗

An HIV-1-infected T cell clone defective in IL-2 production and Ca2+ mobilization after CD3 stimulation.

A chronically HIV-1-infected T cell clone (J1.1) derived from Jurkat cells was developed that possesses defects in CD3 signaling. This clone was phenotypically determined to be CD4- and express a reduced surface density of CD3 as compared with a pool of uninfected Jurkat clones. Although J1.1 could be induced with TNF-alpha to produce HIV-1 particles, stimulation via the CD3 (T3-Ti) complex, using mAb cross-linking, had no effect on viral production. Further investigation revealed that J1.1 secreted approximately 20-fold less IL-2 than did uninfected Jurkat cells after anti-CD3 treatment. In addition, a separate defect in Ca2+ mobilization was noted in the HIV-1-infected J1.1 line when compared with uninfected Jurkat cells after anti-CD3 cross-linking. The cell line described offers a new model in which to study the mechanisms of several defects directly imposed by HIV-1 on CD3+ cells.

Antigens, Differentiation, T-Lymphocyte↗

Recombinant DNA approaches to study the role of the regulatory light chains (RLC) using scallop myosin as a test system.

The ability to exchange reversibly the regulatory light chains (RLCs) from scallop myosin has provided us with a test system to probe the mechanisms of regulation mediated by the RLCs from vertebrate skeletal, vertebrate smooth and molluscan myosins. The cloning and expression of these RLCs, together with domain-swapping and site-directed mutagenesis approaches, has allowed us to explore further the mechanisms involved and identify the functional importance of specific regions of the RLC molecule; for example, the presence of a high affinity metal binding site in the N-terminal domain and its interaction with the intact C-terminal domains are required for regulation.

Amino Acid Sequence↗

Evidence for at least four different inositol bisphosphatases in bovine brain.

Bovine brain supernatant contains at least four enzymes capable of hydrolysing inositol bisphosphates. These activities may be distinguished on the basis of their metal, salt and pH dependence, sensitivity to Li+ ions and thiol-modification reagents, and on their molecular sizes. In addition to Li+-sensitive Ins(1,4)P2/Ins(1,3,4)P3 1-phosphatase [Gee et al. (1988) Biochem. J. 253, 777-782] which has an absolute requirement for Mg2+, two (Li+-insensitive and Mg2+-independent) phosphatases, capable of hydrolysing Ins(3,4)P2 and Ins(1,3)P2, respectively, have been identified. Both enzymes were inhibited by only moderate concentrations of salt, although for the former there was no obvious correlation between inhibitory potency and either the nature of the anion/cation or the ionic strength of the buffer. Ins(3,4)P2 phosphatase had a pH optimum of 7.6 and this activity could be resolved on gel-filtration columns into a two overlapping peaks of molecular mass 170 kDa and 450 kDa. Mg2+-independent Ins(1,3)P2 phosphatase had a pH optimum of 7.1 and displayed a single broad activity peak on gel-filtration columns. However, if assays were performed in the presence of Mg2+, a second Ins(1,3)P2 phosphatase was revealed (35 kDa), which had a pH optimum of 8.8 Ins(1,4)P2/Ins(1,3,4)P3 1-phosphatase, Ins(3,4)P2 phosphatase, Mg2+-independent Ins(1,3)P2 phosphatase and inositol monophosphatase were all inhibited by 5,5'-dithiobis(2-nitrobenzoic acid) with IC50 values of 34 microM, 65 microM and 560 microM and 1100 microM, respectively. The metabolism of Ins(1,3,4)P3 by brain supernatant was also examined. Product specificity was shown to be entirely dependent on the buffer conditions employed. In Mg2+-containing buffers, Ins(1,3,4)P3 was hydrolysed predominantly to Ins(3,4)P2, consistent with hydrolysis by Ins(1,4)P2/Ins(1,3,4)P3 1-phosphatase. In the presence of EDTA, Ins(1,3,4)P3 was degraded exclusively by a 4-phosphatase enzyme generating Ins(1,3)P2. Under these conditions, high concentrations of Ins(3,4)P2 blocked the hydrolysis of Ins(1,3,4)P3.

Animals↗

Specific interactions of histone H1 and a 45 kilodalton nuclear protein with a putative matrix attachment site in the distal promoter region of a cell cycle-regulated human histone gene.

Protein-DNA interactions within the promoter of a cell cycle-regulated human H4 histone gene were examined by binding of 5'-end-labeled DNA segments to Western blots of nuclear protein fractions. Specific protein interactions were observed with DNA segments located between -500 bp and -1,070 bp upstream of the ATG initiation codon and included a histone H1 binding segment flanked on both sides by binding sites for a 45 kD nuclear protein. This region of the gene contains a DNase I-sensitive site in the center (-720 to -820 bp), and sequence analysis revealed the presence of scaffold attachment sequences in the two flanking segments. Topoisomerase II consensus sequences and in vitro topoisomerase II cleavage sites were also detected in the two flanking segments. Our results suggest that the 45 kd nuclear protein may preferentially interact with these two segments of the H4 histone gene to mediate association with the nuclear matrix. The presence of negative regulatory elements in this putative matrix attachment region provides a basis for the speculation that such nuclear proteins are associated with alterations in gene-matrix interaction that are functionally related to gene expression.

Binding Sites↗

Immunomodulatory properties of recombinant murine and human tumor necrosis factor.

Tumor necrosis factor has traditionally been thought to have direct cytostatic and cytotoxic properties with little or no direct immunomodulatory activity. We report here that tumor necrosis factor is able to activate macrophages both in vitro and in vivo and can increase a mixed lymphocyte response and act as an adjuvant for both T- and B-cells in vivo. Adjuvant activity in T-cells occurred in conjunction with the administration of a suboptimal syngeneic tumor cell vaccine. In addition, tumor necrosis factor demonstrated a potent dose-dependent effect on bone marrow stem cell number, dramatically depressing cellularity and thus total stem cell number. An appreciable interval is required for recovery from such stem cell depletion. Therefore, the study of the therapeutic activity of tumor necrosis factor must include a consideration of its immunomodulatory properties.

Adjuvants, Immunologic↗

Inhibition of epipodophyllotoxin cytotoxicity by interference with topoisomerase-mediated DNA cleavage.

This laboratory and others previously proposed that the antitumor effects of the epipodophyllotoxin compounds are based on their abilities to stimulate DNA cleavage by a DNA topoisomerase. To explore this relationship further, we studied the intercalating agent ethidium bromide and found that it blocked epipodophyllotoxin-induced DNA cleavage by DNA topoisomerase II in vitro as well as in vivo. Using an in vitro assay consisting of purified calf thymus DNA topoisomerase II, end-labeled DNA, and the epipodophyllotoxin teniposide, we found that ethidium bromide markedly interfered with the enzyme-mediated DNA cleavage. Furthermore, ethidium bromide also blocked the formation of DNA single- and double-strand breaks in mouse L1210 cells when exposed to the epipodophyllotoxin etoposide. This effect cannot be explained by alterations in drug accumulation since steady-state drug concentrations were unchanged, and the effect was also observed in isolated nuclei. In addition to its effects on epipodophyllotoxin-mediated DNA breakage, ethidium bromide also potently inhibited the cytotoxic effects of etoposide but only when present during drug treatment. Thus, we believe that ethidium bromide may be a useful tool to investigate drug-induced perturbations of topoisomerase activity and their relationship to antitumor effect. Our data strongly support the hypothesis that the antitumor activity of epipodophyllotoxins is based on the ability to stimulate the formation of a cleavable complex between DNA topoisomerase and DNA.

Animals↗

Role of topoisomerase II in mediating epipodophyllotoxin-induced DNA cleavage.

Epipodophyllotoxins are an important new class of anticancer agents which include the compounds VM-26 (teniposide) and VP-16 (etoposide). The mechanism of action of these drugs appears to involve production of DNA single- and double-strand breaks by virtue of a temperature-sensitive interaction between drug and a heat-labile intranuclear component. We now report evidence indicating that type II topoisomerase is the likely intracellular target for the DNA strand-breaking effects of the epipodophyllotoxins. Both VM-26 and VP-16 stimulate site-specific DNA cleavage by a highly purified calf thymus type II topoisomerase. VM-26 is 5- to 10-fold more potent than VP-16 in this assay, a difference that is also seen when DNA strand breaks are assayed in isolated nuclei of mouse leukemia cells following drug exposure. Furthermore, a similar potency difference exists with respect to cytotoxicity. Equilibrium dialysis experiments using [3H]VP-16 indicate that the drug does not bind to DNA. Thus, we suggest that the epipodophyllotoxins exert their anti-cancer effects by "poisoning" type II topoisomerase without binding to DNA. In this regard, their actions may be analogous to those of nalidixic acid in bacteria.

Animals↗