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睾丸特异性高迁移率族蛋白,一种参与延长和浓缩精子细胞的磷酸化依赖性DNA包装因子。

The testis-specific high-mobility-group protein, a phosphorylation-dependent DNA-packaging factor of elongating and condensing spermatids.

作者信息

Alami-Ouahabi N, Veilleux S, Meistrich M L, Boissonneault G

机构信息

Department of Biochemistry, Faculty of Medicine, University of Sherbrooke, Quebec, Canada.

出版信息

Mol Cell Biol. 1996 Jul;16(7):3720-9. doi: 10.1128/MCB.16.7.3720.

Abstract

Mammalian spermiogenesis is characterized by a striking restructuring of the spermatid chromatin caused by the replacement of nucleohistones with transition proteins and their subsequent replacement with nucleoprotamines. The onset of nuclear elongation and chromatin condensation in spermatids is accompanied by a general decrease in the transcriptional activity of the DNA. A recently identified testis-specific high-mobility-group (tsHMG) protein, similar to the human mitochondrial transcription factor I and to the linker-associated protein delta of Tetrahymena thermophila micronuclei, is thought to play a structural role in this process. We confirm by immunoblot analysis of fractionated germ cells that the presence of tsHMG is restricted to transcriptionally quiescent elongating and condensing spermatids. Purified recombinant tsHMG protein displays preferential binding to supercoiled plasmid DNA, which reversibly protects the DNA against the DNA-relaxing activity of eukaryotic topoisomerase I and also impairs the transcriptional activity of this template when assayed in vitro. The tsHMG protein can also introduce negative supercoils into a relaxed plasmid substrate in a topoisomerase I-dependent manner. We also show that the tsHMG protein is the substrate of a Ca2+-phospholipid-dependent protein kinase (protein kinase C) present in testis extracts of adult mice and demonstrate that phosphorylation by protein kinase C is required for both the DNA-binding and the topoisomerase I-dependent supercoiling activities of tsHMG. Our results support the hypothesis that the spermatid tsHMG protein is a topological factor (transition protein) that can modulate the activity of topoisomerase I. This activity could contribute to the important transition in chromatin structure which leads to the decrease in DNA metabolism observed at the early stages of spermatid elongation.

摘要

哺乳动物精子发生的特征是精子细胞染色质的显著重组,这是由核组蛋白被过渡蛋白取代以及随后过渡蛋白被核精蛋白取代所引起的。精子细胞核伸长和染色质浓缩的开始伴随着DNA转录活性的普遍下降。最近鉴定出的一种睾丸特异性高迁移率族(tsHMG)蛋白,类似于人类线粒体转录因子I和嗜热四膜虫微核的连接体相关蛋白δ,被认为在这一过程中发挥结构作用。我们通过对分级分离的生殖细胞进行免疫印迹分析证实,tsHMG的存在仅限于转录静止的伸长和浓缩精子细胞。纯化的重组tsHMG蛋白显示出对超螺旋质粒DNA的优先结合,它能可逆地保护DNA免受真核拓扑异构酶I的DNA松弛活性影响,并且在体外检测时也会损害该模板的转录活性。tsHMG蛋白还能以拓扑异构酶I依赖的方式将负超螺旋引入松弛的质粒底物中。我们还表明,tsHMG蛋白是成年小鼠睾丸提取物中存在的一种Ca2+ - 磷脂依赖性蛋白激酶(蛋白激酶C)的底物,并证明蛋白激酶C的磷酸化对于tsHMG的DNA结合和拓扑异构酶I依赖的超螺旋活性都是必需的。我们的结果支持这样一种假说,即精子细胞tsHMG蛋白是一种拓扑因子(过渡蛋白),可以调节拓扑异构酶I的活性。这种活性可能有助于染色质结构的重要转变,而这种转变导致在精子细胞伸长早期观察到的DNA代谢下降。

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