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四膜虫大核可能的骨骼亚结构。

A possible skeletal substructure of the macronucleus of Tetrahymena.

作者信息

Wolfe J

出版信息

J Cell Biol. 1980 Jan;84(1):160-71. doi: 10.1083/jcb.84.1.160.

Abstract

Upon removal of chromatin from isolated macronuclei of tetrahymena, residual structures are obtained, the organization of which faithfully reflects the distinctive architecture of the macronucleus. Macronuclei are isolated by a new procedure in which cells are lysed by immersion in citric acid and Triton X-100. This method is rapid and efficient and leaves the nuclear structures stripped of nuclear envelope and nucleoli. The remaining interconnected chromatin bodies are structurally differentiated into a dense outer shell and a fibrillar inner core. The fibrillar component is identified as chromatin because it is removed upon digestion with DNase and extraction with 2 M NaCl. The dense shell of the chromatin body is unaffected by the digestion procedure, which leaves a skeletal structure comprised of hollow spherical bodies. Analysis of the protein composition by SDS acrylamide gel electrophoresis before and after digestion with DNase and RNase and high-salt extraction shows that histones are diminished, whereas the nonhistone protein composition remains unchanged. It was found the DNase not only extracts chromatin but also protects the nonchromatin structure from the otherwise disruptive effects of high-salt extraction. The method used for isolating the nuclei also affects the structure remaining after the digestion procedure the citric acid/Triton X-100 method enhances the stability of the interconnected spherical bodies. The results indicate that the method for isolating nuclei and the procedure by which chromatin is extracted are both major factors contributing to the detection of a possible nonchromatin nuclear skeleton.

摘要

从四膜虫分离出的大核中去除染色质后,可得到残留结构,其组织结构忠实地反映了大核独特的结构。大核是通过一种新方法分离出来的,即把细胞浸入柠檬酸和 Triton X - 100 中使其裂解。这种方法快速有效,能使核结构去除核膜和核仁。剩下的相互连接的染色质体在结构上可分为致密的外壳和纤维状的内核。纤维状成分被鉴定为染色质,因为用 DNase 消化并用 2M NaCl 提取后它会被去除。染色质体的致密外壳不受消化过程的影响,消化后留下由空心球体组成的骨架结构。用 SDS 聚丙烯酰胺凝胶电泳分析 DNase 和 RNase 消化以及高盐提取前后的蛋白质组成,结果表明组蛋白减少,而非组蛋白蛋白质组成不变。发现 DNase 不仅能提取染色质,还能保护非染色质结构免受高盐提取的破坏作用。用于分离细胞核的方法也会影响消化过程后剩余的结构——柠檬酸/Triton X - 100 方法增强了相互连接的球体的稳定性。结果表明,分离细胞核的方法和提取染色质的过程都是有助于检测可能的非染色质核骨架的主要因素。

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