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J Silver

Publications and source records attributed to J Silver.

At least 289 records · Page 16Linked to original sources

Microheterogeneity of HLA-DR4 haplotypes: DNA sequence analysis of LD"KT2" and LD"TAS" haplotypes.

We have isolated and sequenced cDNA clones corresponding to the polymorphic alpha and beta chains encoded by the DR and DQ subregions of two HLA-DR4 haplotypes, LD"KT2" and LD"TAS". These two haplotypes are distinguished on the basis of mixed lymphocyte culture typing. The data indicate that the designation of LD"TAS" as a distinct subtype from Dw13 is very likely due to amino acid differences in the DQ beta chain. In contrast, LD"KT2" differs from TAS and Dw13 by a single amino acid substitution at position 37 of the DR beta 1 chain. The functional and evolutionary significance of these polymorphisms is discussed.

Amino Acid Sequence↗

Preliminary evaluation of cocarboxylase on myocardial protection of the rat heart.

The presence of cocarboxylase (CC) is essential for the oxidation of pyruvate to acetylcoenzyme A (acetyl-CoA) and its subsequent degradation by means of the Krebs cycle. We compared the effects of various concentrations of CC in a cardioplegic solution on the survival and hemodynamic and metabolic recovery of 23 isolated, working rat hearts subjected to 60 minutes of hypothermic (23 degrees C) ischemic arrest. Group 1 (N = 6) consisted of hearts infused with the basic cardioplegic solution (Tyers' solution with glucose), to which no CC was added. In group 2 (N = 6) CC was added at 0.1 ml/L to the cardioplegic solution. In group 3 (N = 5) CC was added at 1 ml/L, and in group 4 (N = 6) CC was added at 10 ml/L. The cardioplegic infusions were performed at a pressure of 40 mm Hg for 2 minutes just before arrest; 30 minutes later they were performed again for 1 minute. Only two hearts (33.3%) recovered in group 1 whereas five recovered in group 2, five (100%) in group 3, and five (83.3%) in group 4. The recovery of hemodynamic performance as a percentage of preischemic control values showed marked improvement in the CC groups, especially group 3, when compared with group 1. The metabolic variables in the CC groups were also markedly improved, with significantly (p less than .05) decreased levels of tissue lactate and increased levels of creatine phosphate compared with those in group 1.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Human retroviral sequences on the Y chromosome.

Novel endogenous human retroviral sequences were cloned by low-stringency hybridization, using the pol gene of endogenous human retrovirus 51-1. One clone, lambda NP-2, contained gag, pol, env, and long terminal repeat sequences related to the corresponding portions of clone 51-1 and the closely related full-length endogenous human retrovirus 4-1. The sequence of the env gene of NP-2 was 73% homologous to that of 4-1. Genomic Southern blots of male and female DNAs showed that NP-2 is located on the Y chromosome and that the Y chromosome also contains one other sequence closely related to the env and 3' flanking regions of NP-2. Conservation of flanking DNA suggests that the second Y chromosome copy of the NP-2 env sequence arose by gene duplication rather than provirus insertion.

Base Sequence↗

Renal biopsy in Fabry's disease eight years after successful renal transplantation.

Late graft histology after renal transplantation for Fabry's disease has only once been previously reported. Clinical data and kidney biopsy findings in a case of Fabry's disease before and eight years after successful kidney transplantation are presented. The graft maintains normal function. Graft histology in light microscopy showed no abnormalities reminiscent of the diseased native kidney. Electron microscopy revealed occasional small myelin figures which were present only in the vascular endothelium. Their significance and a review of conflicting reports and opinions from the literature are discussed.

Adult↗

Plasma volume and endocrine responses to water immersion with intermittent positive-pressure breathing in men.

The effect of intermittent positive-pressure breathing (PB), induced by expiring against a resistance of 12.5 mm Hg, on plasma volume and endocrine responses to standing water immersion, was studied in seven male subjects, 28-49 years of age. The men were immersed to the neck (35 +/- 0.5 degrees C) for 90 min with PB from 30 to 60 min. Compared to control values, the hematocrit and hemoglobin concentration decreased (p less than 0.001) during immersion while plasma osmolality was unchanged, indicating an isotonic increase in plasma volume (hemodilution) which peaked after 75 min at +15.5% of the preimmersion plasma volume. This hemodilution was not significantly affected by PB. Plasma renin activity and vasopressin and aldosterone concentrations decreased progressively throughout immersion (p less than 0.001) and were unaffected by PB. The magnitude of these hormonal decreases was accentuated by preexisting, presyncopal symptoms in four subjects. It is concluded that intermittent PB as 12.5 mm Hg failed to compensate for the negative-pressure breathing of standing subjects immersed in water to the neck.

Adult↗

Axon pathway boundaries in the developing brain. I. Cellular and molecular determinants that separate the optic and olfactory projections.

When optic fibers first approach the chiasmatic region of the diencephalon in the chick embryo on days 3 and 4 (E3-4), they rarely grow rostrally into the olfactory region of the telencephalon. Conversely, olfactory tract axons grow as far as, but never cross the diencephalic/telencephalic (D/T) boundary to enter the optic chiasm. In this study, a region of specialized neuroepithelium, originally named the "knot" in mouse by Silver (1984), has been identified at the D/T border of chick embryos. At pre-axonal stages, the presumptive knot region undergoes a cataclysmic cell death, with concomitant phagocytosis of necrotic debris by the remaining cells. When fibers subsequently appear in the chiasm and olfactory tracts, the knot consists of a very dense, interwoven cluster of non-neuronal cells that lack marginal radial processes, and whose cell bodies directly abut the glial limiting membrane. Thus, the morphology of the knot is in sharp contrast to the cell body-free marginal zone and endfoot regions along which axons tend to grow. In addition, we found that the neural cell adhesion molecule (N-CAM), which is expressed on neuroepithelial cell processes within the central optic and olfactory pathways, is not present on cells in the knot region during periods of axon growth. These results suggest that the knot, through its elimination of the marginal zone processes, absence of large extracellular spaces, and relative absence of adhesion molecules, functions as an axon-refractory barrier that effectively separates the optic and olfactory projections.

Animals↗

Beneficial effects of cocarboxylase in the treatment of experimental myocardial infarction in dogs.

Cocarboxylase, or thiamine pyrophosphate, is an essential coenzyme in the catabolism of pyruvate. The authors evaluated the effects of a stable cocarboxylase solution in the treatment of an experimentally created acute myocardial infarction in 14 healthy mongrel dogs. The left anterior descending artery was ligated for 60 minutes and data were collected at the following points: A) prior to ligation, B) 15 minutes after ligation, C) 30 minutes after ligation, and D) 60 minutes after ligation. In one group (Group II), cocarboxylase (150 mgm/kg) was given systematically via a central line 15 minutes and 45 minutes after ligation, while in Group I an equal amount of D5W was given. Hemodynamic data include heart rate, systolic and mean arterial pressure, pulmonary wedge pressure, right arterial pressure, and cardiac output. Myocardial O2 consumption was determined by the method of Rooke and Feigl. Electrocardiographic data were also monitored throughout the experiment. In both groups, preligation (point A) hemodynamic data were similar. In Group II, there were beneficial hemodynamic changes versus Group I (expressed as percentage recovery of hemodynamic performance from preligation) at points C and D, with significant (P less than 0.05) decreases in heart rate, increased stroke volume, decreased systemic vascular resistance, and decreased myocardial O2 consumption. EKG criteria also showed improvement in Group II versus Group I. In conclusion, this experiment suggests that cocarboxylase may be beneficial to ischemic canine myocardium by virtue of its favorable systemic hemodynamic effects.

Animals↗

The ethical options in transplanting fetal tissue.

Fetal tissue transplants have now been successful in primates, raising the possibility of treatment for Parkinson's disease and other chronic illnesses. Whether or not abortion is morally justified, use of human fetal tissue for research or therapy is justified in certain circumstances. The rationale, both for permitting transplantation of fetal tissue and for limitations in exercising the technology, is based on the same set of ethical principles that supported restrictive legislation in the past: respect for autonomy and a balancing of harms and benefits that gives priority to those most affected.

Aborted Fetus↗

Biochemistry and expression of myelomonocytic antigens.

Six monoclonal antibodies (MAb) which react with myelomonocytic cells representing various stages of differentiation, and which precipitate six different cell surface molecules, were identified. A 50 to 55 kilodalton (Kd) glycoprotein, restricted in expression to mature cells of the monocyte lineage, was detected by immunoprecipitation with antibody MoS39. By using COS-7 cells transfected with a cDNA clone encoding the MoS39 antigen, various well-described anti-monocyte MAb, including Mo2, My4, Leu-M3 (MoP9), MoP15, MoS1, and 63D3, also bound to MoS39-expressing COS-7 cells, suggesting that this group of antibodies reacted with the same glycoprotein. Immature cells of the myelomonocytic lineage were shown to express two distinct molecules: one with an m.w. of 26 to 28 Kd identified by antibody SG133, and the second, a 130 to 140 Kd glycoprotein identified by MoU26. Mature granulocytes were found to express a 60 Kd molecule identified by antibody SG185 which was absent from other cells of this lineage. Two other molecules were shown to be present on both mature and immature cells of the granulocytic and monocytic lineages: a 130 to 140 Kd glycoprotein identified by antibody SG134, and a 160 to 170 Kd glycoprotein recognized by antibody MoU48.

Animals↗

Analysis of DR beta and DQ beta chain cDNA clones from a DR7 haplotype.

A cDNA library was constructed from a DR7, DRw53, DQw2 homozygous cell line, cDNA clones corresponding to DR beta and DQ beta chains were isolated, and the nucleotide sequences of the polymorphic first domains of these chains were determined. A novel screening strategy allowed rapid and simple identification of cDNA clones corresponding to both DR beta chains (DR7 beta1 and DR7 beta2): DR7 beta2 clones have a recognition site for the enzyme BssHII, whereas DR7 beta1 clones do not. The DR7 beta 1 sequence differs significantly from all previously described DR beta chains. As predicted by the presence of the BssHII site in DR7 beta 2 clones, the DR7 beta 2 sequence differs from the DR7 beta 1 sequence. The sequence of the DRw53-associated DR7 beta 2 chain is identical to the reported sequence of the DRw53-associated DR4 beta 2 chain. In addition, the sequence of the DQ beta chain from the DR7, DQw2 cell line is identical to the reported sequence of a DQ beta chain from a DR3, DQw2 cell. These findings raise interesting questions about the evolution of the DR3, DR4, and DR7 haplotypes.

Amino Acid Sequence↗

Changing role of forebrain astrocytes during development, regenerative failure, and induced regeneration upon transplantation.

When the cerebral midline is lesioned in the embryo or neonate, the would-be callosal axons form neuromas. We have shown that an untreated Millipore implant inserted between the neuromas in young acallosal animals can support the migration of immature astrocytes that, in turn, support the de novo growth of commissural axons between the hemispheres. Since callosal neuromas persist into adulthood, we asked whether a critical period exists after which reactive glia no longer promote axon growth. We found that a critical period does exist and have documented a variety of changes in reactive gliosis that, in part, may lead to the axon growth-refractory state. In acallosal mouse postnates given untreated implants on or prior to day 8, glial fibrillary acidic protein (GFAP)+, stellate-shaped astrocytes migrated and attached to the implant by inserting foot processes into the pores of the filter. This form of gliotic response established an axon growth-promoting substratum within 24-48 hours after implantation. During this critical stage there was no evidence of scar formation or necrosis at or around the implant surface. However, when acallosal mice were implanted on or later than postnatal day 14, extensive tissue degeneration occurred, and a mixed population of astrocytes and fibroblasts invaded the surface of the filter, producing a dense scar. Reactive cells within the scar did not promote axonal outgrowth. To determine whether glia from neonates can influence the host environment and/or induce axonal regeneration in acallosal animals after the critical period, we harvested immature astrocytes on Millipore from critical-period mouse forebrains and transplanted the glia-coated prostheses into the brains of post-critical-period acallosal animals. Such transplants reduced glial scarring in the host, inhibited extensive bleeding and secondary necrosis, and promoted axonal regeneration. Our studies suggest that when controlled with a prosthesis, gliosis during the critical period is a beneficial process that can promote the reconstruction of malformed axon pathways; that in older animals a variety of changes in reactive glia and the extracellular matrix may work together to hinder axon regeneration after the critical period; and that axonal regeneration in the postcritical CNS may be stimulated by reintroducing an immature glial environment at the lesion site.

Animals↗

Structural relationships between the DR beta 1 and DR beta 2 subunits in DR4, 7, and w9 haplotypes and the DRw53 (MT3) specificity.

The class II molecules of DR4, DR7, and DRw9 haplotypes were analyzed by immunoprecipitation, followed by two-dimensional gel electrophoresis and N-terminal amino acid sequencing. By using HLA-DR chain-specific monoclonal antibodies, two distinct DR beta-chains were identified. One beta-chain, designated DR beta 2, had a characteristic acidic mobility. In all three DR types the DR beta 2-chains were indistinguishable by two-dimensional gel electrophoresis and partial N-terminal sequencing. A second DR beta-chain designated beta 1 had a more basic mobility on two-dimensional gel electrophoresis, and differed from the DR beta 2-chains by the consistent presence of phenylalanine at position 18. In contrast to the DR beta 2-chains, the DR beta 1-chains were clearly polymorphic, with specific amino acid sequence differences characteristic of each DR type. The monoclonal antibodies 109d6 and 17-3-3S, recognizing distinct polymorphic epitopes similarly correlated with the DRw53 allospecificity, were found to react with different DR beta-chains. The epitope recognized by monoclonal antibody 109d6 was identified on the DR beta 2-chain in the prototypic DR4, DR7, and DRw9 cell lines. However, the DR7, Dw11, DQw3 cell line BEI was unreactive with antibody 109d6 by either immunofluorescence or immunoprecipitation despite the presence of the DRw53 allodeterminant on this cell line. The other DRw53-like monoclonal antibody, 17-3-3S, reacted with the DR beta 1-rather than the DR beta 2-chain in all DR4 and DR7 cell lines tested, including the cell line BEI. However, antibody 17-3-3S did not react with the DRw53-positive DRw9 cell line ISK. These studies suggest that the DRw53 allospecificity is more complex than previously thought and may comprise a number of distinct epitopes encoded by two different DR beta loci.

Amino Acid Sequence↗

Regulated expression of the c-myb and c-myc oncogenes during erythroid differentiation.

We have investigated the expression of the genes c-myb, c-myc, and alpha globin in murine erythroid cells at different stages of development, in viral-induced erythroleukemias, as well as in two mouse erythroleukemia cell lines that can be induced to terminally differentiate when exposed to dimethylsulfoxide. We find that there is a reciprocal correlation between the cell's production of messenger RNA for c-myb and globin. c-myc message shows a similar but less dramatic decrease coincident with globin RNA production. Initially with the administration of an inducing agent, dimethylsulfoxide, there is a rapid decrease of myc and myb mRNA, which is followed by signs of differentiation in the induced culture. We conclude that these oncogenes function in early maturational stages of development of these cells. In the erythroleukemic state these genes are down-regulated by forced differentiation and may play a direct role in influencing the state of differentiation of these cells.

Animals↗

Na,K-ATPase activity and 25(OH)vitamin D3 hydroxylation in rat proximal tubules.

The proximal tubule is the target site for parathyroid hormone (PTH), and conversion of 25(OH)vitamin D3 hormones which impinge on calcium (Ca) homeostasis, as well as a major site for sodium (Na) reabsorption. The effect of changes in PTH and vitamin D status on Na,K-ATPase activity, as a measure of Na transport, were studied in the proximal tubules of adult rat kidneys where Na and Ca reabsorption rates are in parallel. Na,K-ATPase activity and 25(OH)D3 metabolism were determined in cortical and juxtamedullary proximal tubule segments from normal, parathyroidectomized (PTX), and vitamin D-deficient (-D) rats. Na,K-ATPase activity was highest in cortical segments. PTX led to a decrease in activity in convoluted segments but increased activity in straight segments. In -D rats, Na,K-ATPase activity decreased in cortical segments but increased in juxtamedullary segments. 25(OH)D3 was metabolized more to 24,25(OH)2D3 than to 1,25(OH)2D3 in all normal segments. Juxtamedullary segments were more sensitive to PTX and -D conditions. These findings suggest that cortical and juxtamedullary nephrons are inherently different in basal Na,K-ATPase activity, in conversion of 25(OH)D3 to active metabolites, and in response to altered PTH and vitamin D3 status.

Animals↗

Progressive vascular calcification with necrosis of extremities in hemodialysis patients: a possible role of iron overload.

Progressive vascular calcification with ischemia and gangrene of the extremities occurs rarely in uremic patients, patients undergoing maintenance dialysis, and following renal transplantation. In this paper we present two additional patients on chronic hemodialysis who developed this syndrome in association with severe secondary hyperparathyroidism. Fulminant gangrene led to the death of the first patient, while in the second, multiple amputations had to be performed after parathyroidectomy. In both patients, evidence of iron overload due to multiple blood transfusions was present and iron was histologically demonstrated in a calcification area in one case. The possibility of iron overload as a "challenger" for systemic calciphylaxis is discussed.

Acute Disease↗

Polymorphism of HLA-DR beta chains in DR4, -7, and -9 haplotypes: implications for the mechanisms of allelic variation.

We have isolated and sequenced cDNA clones corresponding to the DR beta 1 and DR beta 2 loci from two homozygous B-cell lines typed as DR7 (Burkhart) and DR9 (ISK). These nucleotide sequences were compared to beta 1 and beta 2 chains of other DR haplotypes. The first-domain sequences of beta 2 chains are identical in DR4 and DR7 haplotypes. In addition, there is strong sequence homology within the 3' untranslated regions of beta 1 genes from DR4, -7, and -9 haplotypes, thus confirming the close evolutionary relationship among these three haplotypes. In contrast, the first-domain sequences of beta 1 molecules from these haplotypes are very different from each other and do not reflect the DR4, -7, -9 family relationship. Two explanations for the differences in degree of diversity between beta 1 and beta 2 chains are suggested. The differences may be a consequence of selection pressures; this implies functional differences for products of the beta 1 and beta 2 loci. Alternatively, closely linked segments of the human class II region may differ in their underlying rates of variation, independent of selection pressures, and this may in part account for the extraordinary diversity found in the beta 1 first domain.

Alleles↗