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染色质的高阶结构:30纳米染色质螺线管内核小体的取向与物种和间隔长度无关。

Higher order structure of chromatin: orientation of nucleosomes within the 30 nm chromatin solenoid is independent of species and spacer length.

作者信息

McGhee J D, Nickol J M, Felsenfeld G, Rau D C

出版信息

Cell. 1983 Jul;33(3):831-41. doi: 10.1016/0092-8674(83)90025-9.

Abstract

We have used electric dichroism to study the arrangement of nucleosomes in 30 nm chromatin solenoidal fibers prepared from a variety of sources (CHO cells, HeLa cells, rat liver, chicken erythrocytes, and sea urchin sperm) in which the nucleosome spacer length varies from approximately 10 to approximately 80 bp. Field-free relaxation times are consistent only with structures containing 6 +/- 1 nucleosomes for every 11 nm of solenoidal length. With very few assumptions about the arrangement of the spacer DNA, our dichroism data are consistent with the same orientation of the chromatosomes for every chromatin sample examined. This orientation, which maintains the faces of the radially arranged chromatosomes inclined at an angle between 20 degrees-33 degrees to the solenoid axis, thus appears to be a general structural feature of the higher order chromatin fiber.

摘要

我们利用电二色性研究了由多种来源(CHO细胞、HeLa细胞、大鼠肝脏、鸡红细胞和海胆精子)制备的30 nm染色质螺线管纤维中核小体的排列情况,其中核小体间隔长度约为10至约80 bp。无场弛豫时间仅与每11 nm螺线管长度包含6±1个核小体的结构一致。在对间隔DNA的排列做极少假设的情况下,我们的二色性数据与所检测的每个染色质样本中染色质小体的相同取向一致。这种取向使径向排列的染色质小体的面与螺线管轴呈20度至33度的夹角,因此似乎是高阶染色质纤维的一个普遍结构特征。

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