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小鼠精子发生过程中组合性复制依赖性组蛋白变体基因的动态表达

Dynamic expression of combinatorial replication-dependent histone variant genes during mouse spermatogenesis.

作者信息

Sun Rongfang, Qi Huayu

机构信息

Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, South China Institute of Stem Cell Biology and Regenerative Medicine, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou 510530, China.

Key Laboratory of Regenerative Biology, Guangdong Provincial Key Laboratory of Stem Cell and Regenerative Medicine, South China Institute of Stem Cell Biology and Regenerative Medicine, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou 510530, China.

出版信息

Gene Expr Patterns. 2014 Jan;14(1):30-41. doi: 10.1016/j.gep.2013.10.002. Epub 2013 Oct 18.

Abstract

Nucleosomes are basic chromatin structural units that are formed by DNA sequences wrapping around histones. Global chromatin states in different cell types are specified by combinatorial effects of post-translational modifications of histones and the expression of histone variants. During mouse spermatogenesis, spermatogonial stem cells (SSCs) self-renew while undergo differentiation, events that occur in the company of constant re-modeling of chromatin structures. Previous studies have shown that testes contain highly expressed or specific histone variants to facilitate these epigenetic modifications. However, mechanisms of regulating the epigenetic changes and the specific histone compositions of spermatogenic cells are not fully understood. Using real time quantitative RT-PCR, we examined the dynamic expression of replication-dependent histone genes in post-natal mouse testes. It was found that distinct sets of histone genes are expressed in various spermatogenic cells at different stages during spermatogenesis. While gonocyte-enriched testes from mice at 2-dpp (days post partum) express pre-dominantly thirteen histone variant genes, SSC-stage testes at 9-dpp highly express a different set of eight histone genes. During differentiation stage when testes are occupied mostly by spermatocytes and spermatids, another twenty-two histone genes are expressed much higher than the rest, including previously known testis-specific hist1h1t, hist1h2ba and hist1h4c. In addition, histone genes that are pre-dominantly expressed in gonocytes and SSCs are also highly expressed in embryonic stem cells. Several of them were changed when embryoid bodies were formed from ES cells, suggesting their roles in regulating pluripotency of the cells. Further more, differentially expressed histone genes are specifically localized in either SSCs or spermatocytes and spermatids, as demonstrated by in situ hybridization using gene specific probes. Taken together, results presented here revealed that different combinations of histone variant genes are expressed in distinct spermatogenic cell types accompanying the progression of self-renewal and differentiation of SSCs, suggesting a systematic regulatory role histone variants play during spermatogenesis.

摘要

核小体是由DNA序列缠绕组蛋白形成的基本染色质结构单元。不同细胞类型中的整体染色质状态由组蛋白的翻译后修饰和组蛋白变体的表达的组合效应所决定。在小鼠精子发生过程中,精原干细胞(SSCs)自我更新并同时经历分化,这些事件伴随着染色质结构的持续重塑。先前的研究表明,睾丸含有高表达或特异性的组蛋白变体以促进这些表观遗传修饰。然而,调节表观遗传变化和生精细胞特定组蛋白组成的机制尚未完全了解。我们使用实时定量RT-PCR检测了出生后小鼠睾丸中依赖复制的组蛋白基因的动态表达。结果发现,在精子发生的不同阶段,不同的生精细胞中表达不同组的组蛋白基因。在产后2天(dpp)小鼠富含生殖母细胞的睾丸中,主要表达13个组蛋白变体基因,而在9 dpp的SSC阶段睾丸中,高表达另一组不同的8个组蛋白基因。在分化阶段,当睾丸主要被精母细胞和精子细胞占据时,另外22个组蛋白基因的表达比其他基因高得多,包括先前已知的睾丸特异性hist1h1t、hist1h2ba和hist1h4c。此外,主要在生殖母细胞和SSCs中表达的组蛋白基因在胚胎干细胞中也高表达。当从ES细胞形成胚状体时,其中一些基因发生了变化,表明它们在调节细胞多能性中的作用。此外,使用基因特异性探针的原位杂交表明,差异表达的组蛋白基因特异性地定位于SSCs或精母细胞和精子细胞中。综上所述,这里呈现的结果表明,随着SSCs自我更新和分化的进展,不同的组蛋白变体基因组合在不同的生精细胞类型中表达,表明组蛋白变体在精子发生过程中发挥系统性调节作用。

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