Department of Public Health and Cell Biology, Section of Anatomy, University of Rome, 00133 Rome, Italy.
Nucleic Acids Res. 2011 Jul;39(12):4961-74. doi: 10.1093/nar/gkr085. Epub 2011 Feb 25.
Sam68 plays an essential role in mouse spermatogenesis and male fertility. Herein, we report an interaction between Sam68 and the phosphorylated forms of the RNA polymerase II (RNAPII) in meiotic spermatocytes. RNase treatment decreased but did not abolish the interaction, consistently with in vitro binding of RNAPII to the Sam68 carboxyl-terminal region. Sam68 retention in the spermatocyte nucleus was dependent on the integrity of cellular RNAs, suggesting that the protein is recruited to transcriptionally active chromatin. Mouse knockout models characterized by stage-specific arrest of spermatogenesis and staining with the phosphorylated form of RNAPII documented that Sam68 expression is confined to the transcriptionally active stages of spermatogenesis. Furthermore, Sam68 associates with splicing regulators in germ cells and we report that alternative splicing of Sgce exon 8 is regulated in a Sam68-dependent manner during spermatogenesis. RNA and chromatin crosslink immunoprecipitation experiments showed that Sam68 binds in vivo to sequences surrounding the intron 7/exon 8 boundary, thereby affecting the recruitment of the phosphorylated RNAPII and of the general splicing factor U2AF65. These results suggest that Sam68 regulates alternative splicing at transcriptionally active sites in differentiating germ cells and provide new insights into the regulation of Sam68 expression during spermatogenesis.
Sam68 在小鼠精子发生和雄性生育力中发挥着重要作用。在此,我们报告了 Sam68 与减数分裂精母细胞中磷酸化形式的 RNA 聚合酶 II (RNAPII) 之间的相互作用。RNase 处理虽然降低了但并未完全消除相互作用,这与体外 RNAPII 与 Sam68 羧基末端区域的结合一致。Sam68 在精母细胞核中的保留依赖于细胞 RNA 的完整性,这表明该蛋白被募集到转录活跃的染色质上。由精子发生特定阶段停滞和磷酸化形式的 RNAPII 染色特征的小鼠敲除模型表明,Sam68 的表达仅限于精子发生的转录活跃阶段。此外,Sam68 与生殖细胞中的剪接调节因子相关,我们报告说,Sgce 外显子 8 的可变剪接在精子发生过程中受 Sam68 依赖方式调节。RNA 和染色质交联免疫沉淀实验表明,Sam68 在体内与内含子 7/外显子 8 边界周围的序列结合,从而影响磷酸化 RNAPII 和一般剪接因子 U2AF65 的募集。这些结果表明,Sam68 在分化的生殖细胞中调节转录活跃部位的可变剪接,并为精子发生过程中 Sam68 表达的调控提供了新的见解。