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Chromatin higher-order structure studied by neutron scattering and scanning transmission electron microscopy.

机译:通过中子散射和扫描透射电子显微镜研究了染色质的高阶结构。

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摘要

Neutron scattering in solution and scanning transmission electron microscopy were simultaneously done on chicken erythrocyte chromatin at various salt and magnesium concentrations. We show that chromatin is organized into a higher-order structure even at low ionic strength and that the mass per unit length increases continuously as a function of salt concentration, reaching a limiting value of between six and seven nucleosomes per 11 nm. There is no evidence of a transition from a 10-nm to a 30-nm fiber. Fiber diameter is correlated with mass per unit length, showing that both increase during condensation. We also find that there is no essential difference between the mass per unit length measured by scanning transmission electron microscopy and neutron scattering in solution, showing that the ordered regions seen in micrographs are representative of chromatin in solution.
机译:溶液中中子散射和扫描透射电子显微镜是同时在各种盐和镁浓度下对鸡红细胞染色质进行的。我们表明,即使在低离子强度下,染色质也被组织成更高阶的结构,单位长度的质量作为盐浓度的函数连续增加,达到每11 nm六至七个核小体的极限值。没有证据表明从10纳米光纤过渡到30纳米光纤。纤维直径与单位长度的质量相关,表明两者在凝结过程中均增加。我们还发现,通过扫描透射电子显微镜测量的每单位长度质量与溶液中的中子散射之间没有本质区别,这表明在显微照片中看到的有序区域代表溶液中的染色质。

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