The chromatin structure of well-spread demembranated human sperm nuclei revealed by atomic force microscopy.

Scanning microscopy Pub Date : 1996-01-01
M J Allen, E M Bradbury, R Balhorn
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Abstract

The fundamental structure formed when genomic DNA is packaged by protamine in the human sperm nucleus still remains essentially unresolved. It is known that the binding of protamine, a small arginine-rich protein, to DNA generates a large dense, hydrophobic complex making the sperm chromatin structure difficult to study microscopically. To visualize the internal nuclear structures, isolated human sperm nuclei were swollen extensively in saline buffer using only a reducing agent. The nuclei were swollen during deposition onto coverglass and then imaged in the atomic force microscope (AFM). The two main results obtained from imaging individual well-spread nuclei indicate that native human sperm chromatin is: (1) particulate, consisting primarily of large nodular structures averaging 98 nm in diameter, and (2) also composed of smaller, nucleosome-like particles observed to form linear chains near the nuclear periphery. These two types of chromatin particles imaged by AFM are remarkably similar to other AFM measurements made on native and reconstituted sperm and somatic chromatin.

原子力显微镜显示的分布良好的脱膜人类精子核的染色质结构。
当基因组DNA被鱼精蛋白包装在人类精子细胞核中时形成的基本结构仍然基本上没有解决。众所周知,鱼精蛋白(一种富含精氨酸的小蛋白质)与DNA的结合会产生一个大而致密的疏水复合体,这使得精子染色质结构难以在显微镜下进行研究。为了可视化内部核结构,分离的人类精子核在仅使用还原剂的盐水缓冲液中广泛肿胀。细胞核在覆盖玻璃上沉积时肿胀,然后在原子力显微镜(AFM)下成像。从单个分布良好的细胞核成像得到的两个主要结果表明,天然人类精子染色质是:(1)颗粒状,主要由平均直径为98 nm的大结节结构组成;(2)也由较小的核小体样颗粒组成,在核外围附近形成线性链。原子力显微镜成像的这两种类型的染色质颗粒与其他原子力显微镜对天然和重组精子和体细胞染色质的测量结果非常相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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