Biomedical subjects
J T Stout
Publications and source records attributed to J T Stout.
Individual variability in tail tendon fiber break time in three age cohorts of different strains of mice.
Individual variability in mouse tail tendon fiber denaturation in urea was investigated. Differences in break time between fibers within tendons and between tendon groups were examined. Mean break times for each strain increased with age with the shorter-lived DBA/2 mice exhibiting higher break times within age cohorts than the C57BL/6 animals. Fibers from the two ventral tendon groups had consistently higher break times than those from the two dorsal groups, implying differential rates of collagen maturation between these two areas within the tail. Histological examination revealed conspicuous morphological dorsal/ventral differences in tendon number, proximity to a major blood vessel, and the amount of surrounding muscle tissue. These findings have methodological and experimental design implications for the use of tail tendon break time (TTBT) as a biomarker of aging. Furthermore, they suggest possible physiological mechanisms for differential rates of collagen aging.
Antisense RNA inhibition of HPRT synthesis.
The abundant production of antisense hypoxanthine phosphoribosyltransferase (HPRT) RNA in NIH-3T3, COS, or HeLa cells leads to an inhibition of HPRT synthesis. HPRT enzyme levels in cells transfected with mouse HPRT antisense RNA expression vectors are reduced to less than 1% of parental cell activity, resulting in resistance to 6-thioguanine (6TG). The expression of antisense HPRT RNA leads to a marked reduction in the steady-state levels of endogenous HPRT mRNA. Furthermore, we demonstrate that intron-specific antisense RNA, complementary to sequences adjacent to splice donor or acceptor sites of the first intron of the mouse HPRT gene, are effective in depressing endogenous HPRT levels. These studies suggest that antisense RNA can inhibit gene expression in the nucleus, possibly by perturbing nuclear RNA processing.
Molecular analysis of a female Lesch-Nyhan patient.
We report the identification of a female patient with the X-linked recessive Lesch-Nyhan syndrome (hypoxanthine phosphoribosyltransferase [HPRT] deficiency). Cytogenetic and carrier studies revealed structurally normal chromosomes for this patient and her parents and demonstrated that this mutation arose through a de novo gametic event. Comparison of this patient's DNA with the DNA of her parents revealed that a microdeletion, which occurred within a maternal gamete and involved the entire HPRT gene, was partially responsible for the disease in this patient. Somatic cell hybrids, generated to separate maternal and paternal X chromosomes, showed that expression of two additional X-linked enzymes, phosphoglycerate kinase and glucose-6-phosphate dehydrogenase, were expressed only in cells that contained the maternal X chromosome, suggesting the presence of a functionally inactive paternal X chromosome. Furthermore, comparison of methylation patterns within a region of the HPRT gene known to be important in gene regulation revealed differences between DNA from the father and the patient, in keeping with an active HPRT locus in the father and an inactive HPRT locus in the patient. Together these data indicate that nonrandom inactivation of the cytogenetically normal paternal X chromosome and a microdeletion of the HPRT gene on an active maternal X chromosome were responsible for the absence of HPRT in this patient.
Molecular genetics of HPRT deficiency.
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Lesch-Nyhan syndrome: a study of motor behavior and cerebrospinal fluid neurotransmitters.
We studied 5 boys, 2 to 10 years old, with marked or complete deficiency of hypoxanthine-guanine phosphoribosyltransferase and Lesch-Nyhan syndrome with varying degrees of mental retardation, dysarthria, chorea, dystonia, spasticity, and ataxia. Four patients had marked reduction of homovanillic acid in the cerebrospinal fluid (CSF) and all showed low CSF 3-methoxy-4-hydroxy phenylethylene glycol, indicating reduced dopamine and norepinephrine turnover. Three patients showed high CSF 5-hydroxyindoleacetic acid, suggesting increased serotonin turnover. Some patients improved with carbidopa-levodopa, but others benefited from tetrabenazine, a monoamine-depleting agent. This study provides support for the theory of abnormal central monoamine metabolism in Lesch-Nyhan syndrome.
Spontaneous reversion of novel Lesch-Nyhan mutation by HPRT gene rearrangement.
Molecular analysis of an unusual patient with the Lesch-Nyhan syndrome has suggested that the mutation is due to a partial HPRT gene duplication. We now report the cloning and sequencing of the mutant HPRT cDNA which shows the precise duplication of exons 2 and 3. This mutation is the result of an internal duplication of 16-20 kilobases of the gene. The structure of the mutant gene suggests that the duplication was not generated by a single unequal crossing-over event between two normal HPRT alleles. Growth of Epstein-Barr virus-transformed lymphoblasts from this patient in selective medium has permitted isolation of spontaneous HPRT+ revertants of this mutation. The reversion event involves a second major HPRT gene rearrangement where most or all of the duplicated portion of the mutant gene is deleted. The original mutation therefore has the potential for spontaneous somatic reversion. This may explain the relatively mild symptoms of the Lesch-Nyhan syndrome exhibited by this patient.
The Lesch-Nyhan syndrome: clinical, molecular and genetic aspects.
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Antisense RNA inhibition of endogenous genes.
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Molecular studies of hypoxanthine-guanine phosphoribosyltransferase mutations in six Australian families.
Genomic deoxyribonucleic acid (DNA) was isolated from six hemizygotes and five heterozygotes from unrelated families exhibiting the full clinical spectrum of hypoxanthine-guanine phosphoribosyltransferase (HPRT) deficiency. The DNA was digested with the restriction endonucleases, Bam H1, Pst 1 and Taq 1, previously found to be useful in demonstrating restriction fragment length polymorphism (RFLP) at the HPRT locus of the X-chromosome. DNA blotting experiments using a full length HPRT-cDNA probe, have revealed RFLPs in three families which may prove useful for the diagnosis of HPRT deficiency and the determination of heterozygosity. Total ribonucleic acid (RNA) was also extracted from our 11 subjects and analysed by Northern blotting for the presence of HPRT-messenger (mRNA). Apparently normal HPRT-mRNA was demonstrated in all the hemizygotes and heterozygotes for partial HPRT deficiency. In the families with complete HPRT deficiency (Lesch-Nyhan syndrome), the heterozygotes had normal HPRT-mRNA. However, one hemizygote had a complete absence of message for HPRT, while the other hemizygote had considerably reduced amounts of this message.
Rapid changes in the regulatory potential of autologous anti-idiotopic T cells during an antigen-driven primary response.
The antibody response of C57BL/6 strain mice to Streptococcus pneumoniae R36a (Pn) is dominated by the T15 idiotype, but the responding cells appear to be idiotypically heterogeneous, in that individual antibody plaque-forming cells (PFC) may express some but not all idiotopes (Id) of the T15 complex. The presence of these distinct Id on the PFC was detected by a plaque-inhibition assay with three different monoclonal anti-Id antibodies, designated AB1-2, MaId5-4, and B36-82. A periodic change in the expression of AB1-2 and MaId5-4 Id was observed during primary (IgM) antibody response to Pn in the spleen. Those two Id were poorly expressed in the log phase of the response between day 2 and day 4 after immunization (few PFC in the spleen bore the Id), but they became detectable on the majority of PFC at the peak of the response, day 5 to day 7. The proportion of the Id-(AB1-2 or MaId5-4) positive PFC declined, again at day 10 after immunization. In contrast, the B36-82 Id was expressed on greater than or equal to 80% PFC throughout the entire primary response. The possibility that the apparent changes in the Pn-reactive cell populations are regulated by autologous anti-Id T cells was tested in vitro. Normal, unimmunized B cells were cultured with Pn, either alone or in the presence of syngeneic T cells isolated from the spleen of mice at the appropriate intervals after immunization: day 2 (T2), day 5 (T5), and days 10 to 14 (T10 to T14); T cells from unimmunized donors (T0) served as a control. The specific response after 4 days in culture was determined in regard to the total PFC as well as the proportion of PFC expressing the Id. Pn-stimulated B cells, alone or with the control T0 cells, produced moderate, variable levels of AB1-2+ and MaId5-4+ PFC. The expression of these two Id in the assay cultures was suppressed by addition of either T2 cells or T10-14 cells, but it was enhanced if T5 cells were added. However, these various T cell populations did not differ in their effect on the total PFC response. Also, the proportion of PFC bearing the third Id, B36-82 was high, and it was not consistently influenced by the added T cells.(ABSTRACT TRUNCATED AT 400 WORDS)
Cloning of mitogen- and antigen-reactive B lymphocytes on filter paper discs. II. Paratope frequencies within the mitogen-selected repertoire.
Paratopic frequencies of C57BL/6 (Igh-Vb) and BALB/c (Igh-Va) mice were compared by determining the frequency of lipopolysaccharide-reactive, splenic B lymphocytes secreting antibody specific for (4-hydroxy-5-iodo-3-nitrophenyl) acetyl (NIP), trinitrophenyl (TNP), phosphorylcholine (PC), NIP/TNP, NIP/PC, and sheep erythrocytes. Despite the known genotypic and phenotypic differences between the two Igh-V loci, no significant differences in paratope frequencies were demonstrated. Similar determinations in C.B-20 mice, Ighb congenics of the BALB/c strain, and in C57BL/10 nude mice indicated that the mitogen-generated paratope frequencies directly reflected the capacity of immunoglobulin variable region elements rather than complex interactive or regulatory controls to generate diversity. We conclude that at least for the paratopic repertoire, the role of the somatic processes for the generation of antibody diversity exceeds the influence of germ-line differences between the Ighb and Igha haplotypes.
A molecular survey of hypoxanthine-guanine phosphoribosyltransferase deficiency in man.
We characterized 24 unrelated patients with a deficiency of the enzyme hypoxanthine-guanine phosphoribosyltransferase (HPRT) in an attempt to better understand the nature and spectrum of mutations that underlie this prototype-inherited disease. Lymphoblast cell lines derived from each patient were analyzed at multiple molecular levels including the structure and function of the residual HPRT enzyme, messenger RNA (mRNA), and gene. Our studies demonstrate the following: (a) at least 16 of the 24 patients represent unique and independent mutations at the HPRT structural gene; (b) the majority of cell lines have normal quantities of mRNA but undetectable quantities of enzyme; (c) 33% of patients retain significant quantities of structurally altered, functionally abnormal, HPRT enzyme variants; and (d) a minority of patients are void of both enzyme and mRNA, possibly representing examples of aberrations in gene expression. Our studies provide direct evidence for marked genetic heterogeneity in this disorder and illustrate the kinds of mutations and mutational consequences that underlie inherited disease in humans.
Mutational diversity at the human HPRT locus.
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HPRT: gene structure, expression, and mutation.
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Regulation of idiotope expression. I. The effect of antigen dose on expression of certain T15 idiotopes during primary IgM response to S. pneumoniae R36a.
Clonal heterogeneity among B cells reactive to the same epitope may be determined through differences in idiotypy. It appears that clones bearing distinct idiotopes may constitute functionally distinct subpopulations. Data suggest that idiotopically distinct clones of PC-reactive B cells may be regulated independently of one another. We have looked to see whether individual T15+ clones may also differ in their requirements for activation. Here we examine the effect of immunizing doses of antigen on expression of two T15 idiotopes, B36-82 and B39-38, during both in vivo and in vitro primary responses to Streptococcus pneumoniae R36a (Pn) in CB-20 mouse strain. The idiotopes were detected on the specific antibody plaque-forming cells (PFC) by using monoclonal anti-idiotopic antibodies. We find that distinct patterns of idiotope expression are generated by stimulation with different doses of antigen. Immunization with suboptimal and super-optimal doses of Pn produced responses dominated by PFC expressing both idiotopes, whereas PFC induced by optimal antigen concentrations were primarily B36-82+ and B39-38-. These data indicate that the varying of antigen concentration may induce the response of different B cells bearing distinct idiotypes.
Inhibition of bleomycin-induced DNA breakage by superoxide dismutase.
Inhibition of bleomycin (BLM)-induced DNA breakage by superoxide dismutase (SOD) has been reported and presumed to be due to its removal of the superoxide free radicals generated by BLM in the presence of iron(II). We have studied the possibility that the inhibitory effect might result from DNA-binding of SOD. The effect of copper-zinc SOD on BLM-induced DNA degradation was investigated using the PM-2 DNA fluorescence technique. PM-2 DNA was incubated with BLM in the presence or absence of native and heat-inactivated copper-zinc SOD as determined by the epinephrine autoxidation method. The concentrations of SOD required to inhibit 50% PM-2 DNA degradation for the native and the inactivated SOD were 100 and 120 microgram/ml, respectively. Analysis of the reaction mixture by agarose gel electrophoresis confirmed the absence of DNA degradation by BLM in the presence of either form of SOD. PM-2 DNA was shown to bind native or inactivated SOD by Sephadex G-100 column chromatography, fluorescence-quenching studies, and agarose gel electrophoresis. Thus, these results indicate that SOD is able to bind to PM-2 DNA and inhibit BLM-induced degradation independently of its free radical-scavenging activity. The inhibitor was more effective against BLM than other compounds which degrade PM-2 DNA. This suggests that SOD may bind to BLM-binding and/or BLM degradation sites in PM-2 DNA, and the observed inhibition is unrelated to its effects on free radicals.
Isolation of nuclei and preparation of chromatin from plant tissues.
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