Chuma Shinichiro, Hiyoshi Masateru, Yamamoto Akitsugu, Hosokawa Mihoko, Takamune Kazufumi, Nakatsuji Norio
Department of Development and Differentiation, Institute for Frontier Medical Sciences, Kyoto University, Kyoto 606-8507, Japan.
Mech Dev. 2003 Sep;120(9):979-90. doi: 10.1016/s0925-4773(03)00181-3.
Characteristic ribonucleoprotein-rich granules, called nuages, are present in the cytoplasm of germ-line cells in many species. In mice, nuages are prominent in postnatal meiotic spermatocytes and postmeiotic round spermatids, and are often called chromatoid bodies at the stages. We have isolated Mouse tudor repeat-1 (Mtr-1) which encodes a MYND domain and four copies of the tudor domain. Multiple tudor domains are a characteristic of the TUDOR protein, a component of Drosophila nuages. Mtr-1 is expressed in germ-line cells and is most abundant in fetal prospermatogonia and postnatal primary spermatocytes. The MTR-1 protein is present in the cytoplasm of prospermatogonia, spermatocytes, and round spermatids, and predominantly localizes to chromatoid bodies. We show that (1) an assembled form of small nuclear ribonucleoproteins (snRNPs), which usually function as spliceosomal complexes in the nucleus, accumulate in chromatoid bodies, and form a complex with MTR-1, (2) when expressed in cultured cells, MTR-1 forms discernible granules that co-localize with snRNPs in the cell plasm during cell division, and (3) the deletion of multiple tudor domains in MTR-1 abolishes the formation of such granules. These results suggest that MTR-1, which would provide novel insights into evolutionary comparison of nuages, functions in assembling snRNPs into cytoplasmic granules in germ cells.
在许多物种的生殖系细胞的细胞质中,存在着一种富含核糖核蛋白的特征性颗粒,称为“云雾状小体”。在小鼠中,云雾状小体在出生后的减数分裂期精母细胞和减数分裂后的圆形精子细胞中很突出,在这些阶段通常被称为染色质小体。我们分离出了小鼠Tudor重复序列-1(Mtr-1),它编码一个MYND结构域和四个Tudor结构域拷贝。多个Tudor结构域是TUDOR蛋白的一个特征,TUDOR蛋白是果蝇云雾状小体的一个组成部分。Mtr-1在生殖系细胞中表达,在胎儿期的精原细胞和出生后的初级精母细胞中最为丰富。MTR-1蛋白存在于精原细胞、精母细胞和圆形精子细胞的细胞质中,并且主要定位于染色质小体。我们发现:(1)通常在细胞核中作为剪接体复合物发挥作用的小核核糖核蛋白(snRNP)的组装形式,在染色质小体中积累,并与MTR-1形成复合物;(2)当在培养细胞中表达时,MTR-1形成可识别的颗粒,在细胞分裂期间与细胞质中的snRNP共定位;(3)MTR-1中多个Tudor结构域的缺失消除了此类颗粒的形成。这些结果表明,MTR-1在将snRNP组装到生殖细胞的细胞质颗粒中发挥作用,这将为云雾状小体的进化比较提供新的见解。