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30纳米染色质纤维的内部结构。

Internal structure of the 30 nm chromatin fiber.

作者信息

Bartolomé S, Bermúdez A, Daban J R

机构信息

Departament de Bioquímica i Biologia Molecular, Facultat de Ciències, Universitat Autònoma de Barcelona, Spain.

出版信息

J Cell Sci. 1994 Nov;107 ( Pt 11):2983-92. doi: 10.1242/jcs.107.11.2983.

DOI:10.1242/jcs.107.11.2983
PMID:7698998
Abstract

In the presence of 1.7 mM Mg2+, the diameter of the circular structures produced by small chromatin fragments isolated from chicken erythrocytes remains essentially unchanged when the number of nucleosomes in these fragments increases from 10 to 36. In contrast, the results obtained in unidirectional shadowing experiments show that under the same conditions the height of the chromatin fragments increases with the number of nucleosomes. These observations indicate that the electron microscope images studied in this work correspond to a top view of small chromatin fragments. Rotary-shadowed chromatin fragments show three parts: (a) a contour with a heavy deposition of platinum; (b) an annular zone between the central region and the periphery; and (c) a central hole. The heterogeneous ring generated by the deposition of platinum in the periphery suggests that nucleosomes form a one-start helix (5-7 nucleosomes per turn) that apparently can be left- or right-handed. The annular region (thickness of about 11 nm) shows spokes probably due to flat faces and core DNA of radially oriented nucleosomes. The central hole (8-12 nm) is clearly seen in many images but it is not empty because some deformed fragments show coated material (probably linker DNA) that protrudes from this central depression. We have observed that these structural elements directly detected in short chromatin fragments are also present in long chromatin fibers. This allows us to conclude that these elements are basic structural components of the 30 nm chromatin fiber.

摘要

在存在1.7 mM Mg2+的情况下,从鸡红细胞中分离出的小染色质片段所产生的圆形结构的直径,在这些片段中的核小体数量从10增加到36时基本保持不变。相比之下,单向阴影实验的结果表明,在相同条件下,染色质片段的高度随核小体数量增加。这些观察结果表明,这项工作中研究的电子显微镜图像对应于小染色质片段的俯视图。旋转阴影的染色质片段显示出三个部分:(a) 有大量铂沉积的轮廓;(b) 中心区域和周边之间的环形区域;(c) 一个中心孔。铂在周边沉积产生的异质环表明,核小体形成一个单起始螺旋(每圈5 - 7个核小体),显然可以是左手或右手螺旋。环形区域(厚度约11 nm)显示出辐条,可能是由于径向排列的核小体的平面和核心DNA。中心孔(8 - 12 nm)在许多图像中清晰可见,但它并非空的,因为一些变形片段显示有从这个中心凹陷处突出的包被物质(可能是连接DNA)。我们观察到,在短染色质片段中直接检测到的这些结构元件也存在于长染色质纤维中。这使我们能够得出结论,这些元件是30 nm染色质纤维的基本结构成分。

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1
Internal structure of the 30 nm chromatin fiber.30纳米染色质纤维的内部结构。
J Cell Sci. 1994 Nov;107 ( Pt 11):2983-92. doi: 10.1242/jcs.107.11.2983.
2
Nucleosomes, linker DNA, and linker histone form a unique structural motif that directs the higher-order folding and compaction of chromatin.核小体、连接DNA和连接组蛋白形成一种独特的结构基序,指导染色质的高级折叠和压缩。
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Evidence for short-range helical order in the 30-nm chromatin fibers of erythrocyte nuclei.红细胞核 30nm 染色质纤维中短程螺旋有序的证据。
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[Current insights into chromatin structure organization].[关于染色质结构组织的当前见解]
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Partial denaturation of small chromatin fragments: direct evidence for the radial distribution of nucleosomes in folded chromatin fibers.小染色质片段的部分变性:折叠染色质纤维中核小体径向分布的直接证据。
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Cryo-EM study of the chromatin fiber reveals a double helix twisted by tetranucleosomal units.冷冻电镜研究染色质纤维揭示了由四联体核小体单位扭曲的双螺旋结构。
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Orientation of the nucleosome within the higher order structure of chromatin.核小体在染色质高级结构中的定位。
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Linker histone tails and N-tails of histone H3 are redundant: scanning force microscopy studies of reconstituted fibers.连接组蛋白尾巴与组蛋白H3的N端尾巴功能冗余:重组纤维的扫描力显微镜研究
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Higher-order structures of chromatin: the elusive 30 nm fiber.染色质的高阶结构:难以捉摸的30纳米纤维。
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Self-assembly of thin plates from micrococcal nuclease-digested chromatin of metaphase chromosomes.从有丝分裂中期染色体经微球菌核酸酶消化的染色质中自组装薄的板块。
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Dense chromatin plates in metaphase chromosomes.中期染色体中的致密染色质板。
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An all-atom model of the chromatin fiber containing linker histones reveals a versatile structure tuned by the nucleosomal repeat length.包含连接组蛋白的染色质纤维的全原子模型揭示了一种由核小体重复长度调节的多功能结构。
PLoS One. 2007 Sep 12;2(9):e877. doi: 10.1371/journal.pone.0000877.
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EM measurements define the dimensions of the "30-nm" chromatin fiber: evidence for a compact, interdigitated structure.电子显微镜测量确定了“30纳米”染色质纤维的尺寸:致密、相互交错结构的证据。
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