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小鼠精子细胞中的DNA包装。鱼精蛋白变体和四种过渡蛋白的合成。

DNA packaging in mouse spermatids. Synthesis of protamine variants and four transition proteins.

作者信息

Balhorn R, Weston S, Thomas C, Wyrobek A J

出版信息

Exp Cell Res. 1984 Feb;150(2):298-308. doi: 10.1016/0014-4827(84)90572-x.

Abstract

A comparison of the protein compositions of mouse late-step spermatids and cauda epididymal sperm has revealed that the relative distribution of the two amino acid sequence variants of mouse protamine differ markedly in spermatids and sperm. Sonication-resistant spermatids contain the two variants in a ratio of 1:1, while the ratio of these two proteins in cauda epididymal sperm is approx. 2:1. Labeling studies in vivo have shown that this difference is due, in part, to an asynchrony in the time of synthesis of the two protamine variants. Both proteins are synthesized in late-step spermatids, but synthesis of the tyrosine variant in sperm chromatin begins approximately one day before synthesis of the more predominant histidine variant. Analyses of the time of synthesis of protamine and the four transition proteins in late-step spermatids allowed us to estimate the spermatid stage in which these proteins are deposited on DNA and relate these events to the onset of sonication resistance in maturing spermatids. These results indicate that: (1) synthesis and deposition of protamine begins coincident with the onset of sonication resistance in early step 12 spermatids; (2) protamine deposition is complete by mid-step 15; and (3) synthesis of the transition proteins occurs coincident with protamine synthesis.

摘要

对小鼠晚期精子细胞和附睾尾精子蛋白质组成的比较显示,小鼠鱼精蛋白的两种氨基酸序列变体的相对分布在精子细胞和精子中存在显著差异。抗超声处理的精子细胞中这两种变体的比例为1:1,而在附睾尾精子中这两种蛋白质的比例约为2:1。体内标记研究表明,这种差异部分归因于两种鱼精蛋白变体合成时间的不同步。两种蛋白质均在晚期精子细胞中合成,但精子染色质中酪氨酸变体的合成比更主要的组氨酸变体的合成大约早一天开始。对晚期精子细胞中鱼精蛋白和四种过渡蛋白合成时间的分析使我们能够估计这些蛋白质沉积在DNA上的精子细胞阶段,并将这些事件与成熟精子细胞中抗超声处理的开始联系起来。这些结果表明:(1)鱼精蛋白的合成和沉积与早期12步精子细胞中抗超声处理的开始同时发生;(2)在15步中期鱼精蛋白沉积完成;(3)过渡蛋白的合成与鱼精蛋白的合成同时发生。

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