首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Chromatin fibers observed in situ in frozen hydrated sections. Native fiber diameter is not correlated with nucleosome repeat length
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Chromatin fibers observed in situ in frozen hydrated sections. Native fiber diameter is not correlated with nucleosome repeat length

机译:在冷冻水合切片中原位观察到染色质纤维。天然纤维直径与核小体重复长度无关

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摘要

Chromatin fibers have been observed and measured in frozen hydrated sections of three types of cell (chicken erythrocytes and sperm of Patiria miniata and Thyone briareus) representing an approximately 20- bp range of nucleosomal repeat lengths. For sperm of the starfish P. miniata, it was possible to obtain images of chromatin fibers from cells that were swimming in seawater up to the moment of cryo- immobilization, thus providing a record of the native morphology of the chromatin of these cells. Glutaraldehyde fixation produced no significant changes in the ultrastructure or diameter of chromatin fibers, and fiber diameters observed in cryosections were similar to those recorded after low temperature embedding in Lowicryl K11M. Chromatin fiber diameters measured from cryosections of the three types of nuclei were similar, a striking contrast to the situation for chromatin isolated from these cell types, where a strong positive correlation between diameter and nucleosomal repeat length has been established. The demonstration of chromatin fibers in unfixed whole cells establishes an unequivocal baseline for the study of native chromatin and chromosome architecture. The significant differences between chromatin fibers in nucleo and after isolation supports a previous observation (P. J. Giannasca, R. A. Horowitz, and C. L. Woodcock. 1993. J. Cell Sci. 105:551-561), and suggests that structural studies on isolated material should be interpreted with caution until the changes that accompany chromatin isolation are understood.
机译:在三种类型细胞的冷冻水合切片中观察到并测定了染色质纤维,所述三种细胞(鸡红细胞和小Pat桐和Thryone briareus的精子)代表核小体重复长度的大约20 bp范围。对于海星小单胞菌的精子,可以从在海水中游泳直至冷冻固定之前的细胞获得染色质纤维的图像,从而提供这些细胞染色质的天然形态的记录。戊二醛固定不会使染色质纤维的超微结构或直径发生明显变化,并且在冰冻切片中观察到的纤维直径与在Lowicryl K11M中低温包埋后记录的纤维直径相似。从三种类型的细胞核的冷冻切片测得的染色质纤维直径相似,这与从这些细胞类型分离的染色质的情况形成了鲜明的对比,在染色质纤维的直径与核小体重复长度之间已建立了很强的正相关性。未固定的全细胞中染色质纤维的演示为研究天然染色质和染色体结构奠定了明确的基线。核染色质纤维与分离后的染色质纤维之间的显着差异支持以前的观察(PJ Giannasca,RA Horowitz和CL Woodcock。1993. J. Cell Sci。105:551-561),并建议对分离的材料进行结构研究在理解染色质分离所伴随的变化之前,请谨慎解释。

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