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The diameters of frozen-hydrated chromatin fibers increase with DNA linker length: evidence in support of variable diameter models for chromatin

机译:冷冻水合染色质纤维的直径随DNA连接子长度的增加而增加:证据支持染色质可变直径模型

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摘要

The diameters of chromatin fibers from Thyone briareus (sea cucumber) sperm (DNA linker length, n = 87 bp) and Necturus maculosus (mudpuppy) erythrocytes (n = 48 bp) were investigated. Soluble fibers were frozen into vitrified aqueous solutions of physiological ionic strength (124 mM), imaged by cryo-EM, and measured interactively using quantitative computer image-processing techniques. Frozen-hydrated Thyone and Necturus fibers had significantly different mean diameters of 43.5 nm (SD = 4.2 nm; SEM = 0.61 nm) and 32.0 nm (SD = 3.0 nm; SEM = 0.36 nm), respectively. Evaluation of previously published EM data shows that the diameters of chromatin from a large number of sources are proportional to linker length. In addition, the inherent variability in fiber diameter suggests a relationship between fiber structure and the heterogeneity of linker length. The cryo-EM data were in quantitative agreement with space-filling double-helical crossed-linker models of Thyone and Necturus chromatin. The data, however, do not support solenoid or twisted-ribbon models for chromatin that specify a constant 30 nm diameter. To reconcile the concept of solenoidal packing with the data, we propose a variable-diameter solid-solenoid model with a fiber diameter that increases with linker length. In principle, each of the variable diameter models for chromatin can be reconciled with local variations in linker length.
机译:研究了来自Thyone briareus(海参)精子(DNA接头长度,n = 87 bp)和Necturus maculosus(mudpuppy)红细胞(n = 48 bp)的染色质纤维的直径。将可溶性纤维冷冻到具有生理离子强度(124 mM)的玻璃化水溶液中,通过cryo-EM成像,并使用定量计算机图像处理技术进行交互测量。冷冻水合的Thyone和Necturus纤维的平均直径显着不同,分别为43.5 nm(SD = 4.2 nm; SEM = 0.61 nm)和32.0 nm(SD = 3.0 nm; SEM = 0.36 nm)。对先前发布的EM数据的评估表明,来自大量来源的染色质直径与接头长度成正比。另外,纤维直径的固有可变性表明纤维结构和接头长度的异质性之间的关系。低温EM数据与Thyone和Necturus染色质的空间填充双螺旋交联剂模型定量一致。但是,该数据不支持用于染色质的螺线管或扭曲带模型,该模型指定了恒定的30 nm直径。为了使螺线管填料的概念与数据相吻合,我们提出了直径可变的固态螺线管模型,其纤维直径随接头长度的增加而增加。原则上,染色质的每个可变直径模型都可以与接头长度的局部变化相协调。

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