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R Chalkley

Publications and source records attributed to R Chalkley.

At least 109 records · Page 6Linked to original sources

Histone-histone propinquity by aldehyde fixation of chromatin.

Histones have been fixed within the chromatin complex using either formaldehyde or glutaraldehyde. Evidence is presented which argues that in short time periods formaldehyde fixation leads to the formation of reversible covalent bonds between histone and DNA. On the other hand, fixation of chromatin with glutaraldehyde leads initially to the formation of polymers of F1 histone, and at a later stage of multiple small oligomers of the remaining histones. There oligomers then increase in size until they become too large to detect by polyacrylamide gel electrophoresis. Exclusive formation of histone dimers or tetramers was not observed. The simplest model for histone distribution on DNA which encompasses these observations is one in which histones are organized as a fairly extensive linear overlapping array.

Aldehydes↗

New histones found in mature mammalian testes.

Two new histones have been found in sexually mature testes of several mammals. The new histones have been identified as a new F1 (TF1) and F2b (TF2b) on the basis of their behavior upon chemical fractionation procedures and electrophoresis at several urea concentrations. The new testis-specific histones are absent in very immature animals and in somatic tissues. However, by day 20, in the rat, the histone pattern is that of the adult, displaying nearly a full complement of TF1 and TF2b. The new histone complement evidently is characteristic of prespermatid germ cells. The degree of evolutionary variations in these histones and in other basic sperm proteins, as detected by change in electrophoretic mobility, appears to be much greater than that seen in somatic histones.

Aging↗

An approach to histone nearest neighbours in extended chromatin.

The primary sequence organization of histones upon the DNA molecule in chromatin has been analyzed by extension of the nucleoprotein at very low ionic strength and crosslinking with a reversible crosslinking reagent, methyl-4-mercaptobutyrimidate. Histones extracted after limited reaction were fractionated into different classes and the composition of the oligomers analyzed after reduction of the crosslinked material. We have found that the following dimers occur at a high frequency: (F3-F2b), (F3-F2a2), and (F2b-F2a2), whereas (F2b-F2al), (F3-F2al) and (F3-F3) occur with a lower frequency. F1 appears to polymerize rapidly to largely homogeneous polymers of high molecular weight. These results are analyzed in terms of several models proposed for chromatin structure.

Animals↗