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酵母核小体的结构研究。

Structural studies on yeast nucleosomes.

作者信息

Lee K P, Baxter H J, Guillemette J G, Lawford H G, Lewis P N

出版信息

Can J Biochem. 1982 Mar;60(3):379-88. doi: 10.1139/o82-045.

Abstract

Mononucleosomes isolated from micrococcal nuclease digests of stationary phase chromatin of the yeast Saccharomyces cerevisiae were compared both compositionally and physiochemically with those from chicken and bovine calf. It was found that while yeast mononucleosomes are similar in composition, their thermal denaturation profiles and circular dichroism spectra indicate a less constrained structure. Furthermore, yeast nucleosomes were discovered to be labile in solutions of low ionic strength and could not be reconstituted by methods applicable to calf and chicken nucleosomes. On the basis of the reconstitution of a hybrid nucleosome containing calf histones H2A, H2B, and H3 and yeast histone H4, it was concluded that variations in the yeast H4 sequence are unlikely to be responsible for the apparent decrease in the stability of yeast nucleosomes. Examinations of histone-histone interactions in free solution revealed a change in the H3-H4 interaction and together with the previously published results of other researchers it was inferred that changes in the H3 sequence might be responsible for this structural variation.

摘要

将从酿酒酵母静止期染色质的微球菌核酸酶消化物中分离出的单核小体,在组成和物理化学性质上与从鸡和小牛中分离出的单核小体进行了比较。结果发现,虽然酵母单核小体在组成上相似,但其热变性曲线和圆二色光谱表明其结构约束较少。此外,还发现酵母核小体在低离子强度溶液中不稳定,并且不能通过适用于小牛和鸡核小体的方法进行重构。基于包含小牛组蛋白H2A、H2B和H3以及酵母组蛋白H4的杂交核小体的重构,得出结论:酵母H4序列的变化不太可能是酵母核小体稳定性明显降低的原因。对游离溶液中组蛋白-组蛋白相互作用进行的研究揭示了H3-H4相互作用的变化,并且与其他研究人员先前发表的结果一起推断,H3序列的变化可能是这种结构变异产生的原因。

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