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Chromatin fibers are left-handed double helices with diameter and mass per unit length that depend on linker length.

机译:染色质纤维是左旋双螺旋,其单位长度的直径和质量取决于接头的长度。

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摘要

Four classes of models have been proposed for the internal structure of eukaryotic chromosome fibers--the solenoid, twisted-ribbon, crossed-linker, and superbead models. We have collected electron image and x-ray scattering data from nuclei, and isolated chromatin fibers of seven different tissues to distinguish between these models. The fiber diameters are related to the linker lengths by the equation: D(N) = 19.3 + 0.23 N, where D(N) is the external diameter (nm) and N is the linker length (base pairs). The number of nucleosomes per unit length of the fibers is also related to linker length. Detailed studies were done on the highly regular chromatin from erythrocytes of Necturus (mud puppy) and sperm of Thyone (sea cucumber). Necturus chromatin fibers (N = 48 bp) have diameters of 31 nm and have 7.5 +/- 1 nucleosomes per 10 nm along the axis. Thyone chromatin fibers (N = 87 bp) have diameters of 39 nm and have 12 +/- 2 nucleosomes per 10 nm along the axis. Fourier transforms of electron micrographs of Necturus fibers showed left-handed helical symmetry with a pitch of 25.8 +/- 0.8 nm and pitch angle of 32 +/- 3 degrees, consistent with a double helix. Comparable conclusions were drawn from the Thyone data. The data do not support the solenoid, twisted-ribbon, or supranucleosomal particle models. The data do support two crossed-linker models having left-handed double-helical symmetry and conserved nucleosome interactions.
机译:对于真核染色体纤维的内部结构,已经提出了四类模型:螺线管模型,扭曲带模型,交联接头模型和超珠模型。我们已经收集了来自细胞核的电子图像和X射线散射数据,并分离了七个不同组织的染色质纤维,以区分这些模型。纤维直径通过以下公式与连接子长度相关:D(N)= 19.3 + 0.23 N,其中D(N)是外径(nm),N是连接子长度(碱基对)。每单位纤维长度的核小体的数目也与接头长度有关。对Necturus(泥小狗)的红细胞和Thyone(海参)的精子中高度规则的染色质进行了详细研究。 Necturus染色质纤维(N = 48 bp)直径为31 nm,沿轴每10 nm具有7.5 +/- 1个核小体。甲状腺染色质纤维(N = 87 bp)直径为39 nm,沿轴每10 nm具有12个+/- 2个核小体。 Necturus纤维的电子显微照片的傅立叶变换显示出左旋螺旋对称性,其螺距为25.8 +/- 0.8 nm,螺距角为32 +/- 3度,与双螺旋一致。从Thyone数据得出了可比较的结论。数据不支持螺线管,扭曲带或超核小体颗粒模型。数据确实支持具有左手双螺旋对称性和保守核小体相互作用的两个交叉接头模型。

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