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J C Silver

Publications and source records attributed to J C Silver.

25 records · Page 2Linked to original sources

Analysis of histones associated with neuronal and glial nuclei exhibiting divergent DNA repeat lengths.

Total cerebral hemisphere nuclei purified from adult rabbit brain were subfractionated into neuronal and glial populations. Previous studies have shown that chromatin in neuronal nuclei is organized in an unusual nucleosome conformation compared with glial or kidney nuclei, i.e., a short DNA repeat length is present. We now analyze whether this difference in chromatin organization is associated with an alteration in the histone component of nucleosomes. Total histone isolated by acid/urea-protamine extraction of purified neuronal, glial, and kidney nuclei was analyzed by electrophoresis on SDS-polyacrylamide slab gels. Histone H1 that was selectively extracted from nuclei was also examined. Differences were not observed on SDS gels in the electrophoretic mobilities of histones associated with either the nucleosome core particle (histones (H2A, H2B, H3, H4) or the nucleosome linker region (histone H1). Total histone and selectively extracted histone H1 were also analyzed on acid/urea slab gels that resolve histones on the basis of both molecular weight and charge differences. When analyzed in this system, differences with respect to electrophoretic mobility were not detected when comparing either selectively extracted histone H1 or total histone from neuronal and glial nuclei. Quantitative analyses were also performed and neuronal nuclei were found to contain less histone H1 per milligram DNA compared with glial or kidney nuclei. Neuronal nuceli also demonstrated a lower ratio of histone H1/core histone. These results suggest that the pronounced difference in chromatin organization in neuronal compared with glial nuclei, which is reflected by a short DNA repeat length in neurons, appears to be associated with quantitative differences in neuronal histone H1.

Animals↗

Basic nuclear proteins in the aquatic fungus Achlya ambisexualis.

The complement of basic chromosomal proteins in the aquatic fungus Achlya ambisexualis has been characterized. Achlya nuclei contain proteins with electrophoretic mobilities on acetic acid/urea and dodecyl sulphate polyacrylamide gels which are comparable to rabbit kidney histones H3, H4 and H2A. In contrast, the behavior of putative H2B and H1 proteins from Achlya showed greater analogy on acid/urea gels to higher plant histones. A closely related water fungus Saprolegnia ferax contained basic nuclear proteins which were very similar to those of Achlya.

Animals↗

Chromatin organization in the oomycete Achlya ambisexualis.

Nuclei from the Oömycete Achlya ambisexualis and rabbit kidney nuclei were digested with micrococcal nuclease and the resultant DNA fragments analyzed on slab gels. The average DNA repeat size was found to be 159 +/- 1.2 base pairs for Achlya and 199.8 +/- 3.7 base pairs for rabbit kidney. The presence of a DNA repeat size of 159 base pairs for Achlya extends the characterization of eukaryotic chromatins to this most primitive and perhaps unique microbe.

Biological Evolution↗

Hormonal stimulation of ribosomal RNA synthesis in Achlya ambisexualis.

The experiments reported show that one of the early effects of the steroid sex hormone antheridiol is on the synthesis of rRNA and ribosomes. This is demonstrated in hormone treated cultures of Achlya ambisexualis (strain E87) by an enhancement of the incorporation of [3H]uridine into 26S and 18S rRNA and by an increase in measurable amounts of ribosomes per milligram dry weight of mycelium. Furthermore, since the hormone does not significantly alter the pool size or the specific activity of uridine triphosphate, this effect appears to represent an increased rate of RNA synthesis.

Fungi↗