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染色质分级分离与细胞类型和染色体凝聚有关,但可能与转录活性无关。

Chromatin fractionation related to cell type and chromosome condensation but perhaps not to transcriptional activity.

作者信息

Seidman M M, Cole R D

出版信息

J Biol Chem. 1977 Apr 25;252(8):2630-9.

PMID:856797
Abstract

A chromatin fractionation procedure has been developed that involves the shearing of swollen chromatin and the separation of chromatin fragments by sucrose gradient centrifugation. When chromatin from rapidly growing HeLa cells was fractionated, four partially resolved peaks were obtained. Partial characterization of the chromatin fractions indicated that each contained similar lengths of DNA formed in a complex with histones in nucleosomes. The most likely difference between the fractions is the degree of intra-or interstrand association of the fibers of nucleosomes. Chromatins from chicken erythrocytes and mitotic chromosomes were analyzed by the procedure. These chromatins yielded gradient profiles that were distinctly different from each other and from interphase chromatin. These results suggested that the fractionation procedure reflected at least some of the differences in the structure of chromatin known to exist in vivo. The association of pulse-labeled RNA with a particular chromatin fraction is frequently used to support claims of successful separation of transcriptionally active chromatin from inactive chromatin. Since our data show that the slowly sedimenting fractions preferentially bind RNA whose synthesis was clearly not in progress at the start of the fractionation, this criterion is suspect. The presence of equal amounts of satellite DNA in all fractions of mouse L-cell chromatin indicated that the method did not fractionate on the basis of the in vivo transcriptional activity.

摘要

已开发出一种染色质分级分离程序,该程序包括对肿胀的染色质进行剪切,并通过蔗糖梯度离心分离染色质片段。当对快速生长的海拉细胞的染色质进行分级分离时,得到了四个部分分离的峰。对染色质级分的部分表征表明,每个级分都含有与核小体中的组蛋白形成复合物的相似长度的DNA。这些级分之间最可能的差异是核小体纤维的链内或链间缔合程度。用该程序分析了鸡红细胞和有丝分裂染色体的染色质。这些染色质产生的梯度图谱彼此明显不同,也与间期染色质不同。这些结果表明,分级分离程序反映了体内已知存在的染色质结构的至少一些差异。脉冲标记的RNA与特定染色质级分的缔合经常被用来支持从无活性染色质中成功分离出转录活性染色质的说法。由于我们的数据表明,沉降缓慢的级分优先结合在分级分离开始时显然未进行合成的RNA,因此这一标准值得怀疑。小鼠L细胞染色质的所有级分中卫星DNA含量相等,这表明该方法不是根据体内转录活性进行分级分离的。

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