Yu Junying, Hecht Norman B, Schultz Richard M
Department of Biology, University of Pennsylvania, Philadelphia, PA 19104-6018, USA.
Dev Biol. 2003 Mar 15;255(2):249-62. doi: 10.1016/s0012-1606(02)00094-5.
MSY2, a mouse germ cell-specific Y-box protein, is implicated in the global regulation of the stability and/or translation of maternal mRNAs in the mouse oocyte. We report here that in the oocyte approximately 75% of MSY2 protein is associated with a Triton-insoluble preparation, whereas in either male germ cells or when exogenously expressed in transfected somatic cells almost all MSY2 is soluble. This retention in the oocyte, which is unlikely mediated either by microfilaments or by microtubules, markedly decreases beyond the two-cell stage of development. By microinjecting mutant MSY2-EGFP chimeric mRNAs into mouse oocytes and then assaying the expressed protein's localization by laser-scanning confocal microscopy, we find that an intact cold-shock domain (CSD), containing two RNA-binding motifs, is required to localize MSY2 to the oocyte cytoplasm. In addition, an additional basic/aromatic amino acid island (B/A), which can also interact with RNA, in the C-terminal tail domain is necessary to retain MSY2 following Triton permeabilization. Intact mRNA appeared required for this retention, since RNase A treatment of Triton-permeabilized oocytes or microinjection of RNase A into the oocyte released essentially all of the endogenous MSY2 protein. Furthermore, there is a positive correlation between the ability of the mutant MSY2-EGFP protein to remain associated with the Triton-insoluble preparations and its increased affinity for RNA, as determined by RNA electrophoretic mobility shift assays. These results suggest that binding of intact maternal mRNA by MSY2 is required for its cytoplasmic retention.
MSY2是一种小鼠生殖细胞特异性Y盒蛋白,参与小鼠卵母细胞中母体mRNA稳定性和/或翻译的全局调控。我们在此报告,在卵母细胞中,约75%的MSY2蛋白与Triton不溶性制剂相关,而在雄性生殖细胞中或在转染的体细胞中外源表达时,几乎所有的MSY2都是可溶的。这种在卵母细胞中的保留不太可能由微丝或微管介导,在发育的两细胞阶段之后显著降低。通过将突变的MSY2-EGFP嵌合mRNA显微注射到小鼠卵母细胞中,然后通过激光扫描共聚焦显微镜检测表达蛋白的定位,我们发现完整的冷休克结构域(CSD),包含两个RNA结合基序,是将MSY2定位到卵母细胞细胞质所必需的。此外,在C末端尾巴结构域中一个额外的也能与RNA相互作用的碱性/芳香族氨基酸岛(B/A)对于Triton通透后保留MSY2是必要的。这种保留似乎需要完整的mRNA,因为用核糖核酸酶A处理Triton通透的卵母细胞或将核糖核酸酶A显微注射到卵母细胞中会释放基本上所有的内源性MSY2蛋白。此外,通过RNA电泳迁移率变动分析确定,突变的MSY2-EGFP蛋白与Triton不溶性制剂保持相关联的能力与其对RNA的亲和力增加之间存在正相关。这些结果表明,MSY2与完整的母体mRNA结合是其在细胞质中保留所必需的。