Department of Biophysics and Biochemistry, Graduate School of Science, University of Tokyo, Tokyo 113-0033, Japan.
Genes Cells. 2010 Apr 1;15(4):359-72. doi: 10.1111/j.1365-2443.2010.01386.x. Epub 2010 Mar 14.
In fission yeast Schizosaccharomyces pombe, cytoplasmic dynein drives oscillatory nuclear movement during meiotic prophase, which may facilitate pairing of homologous chromosomes. Here, we report the identification of a dynein light intermediate chain (LIC) in fission yeast, termed Dli1p, and show that Dli1p and dynein intermediate chain (IC) Dic1p are essential for the appropriate subcellular localization and proper function of dynein during meiotic prophase. Expression of both the dli1 and dic1 genes was observed only in cells undergoing meiosis. Dli1p interacted and colocalized with dynein heavy chain Dhc1p. The subcellular localization of Dli1p was dependent on Dhc1p, and vice versa. The Dhc1p-Dli1p subcomplex could localize to the spindle pole body (SPB) with no aid of Dic1p and dynactin subunit Ssm4p, but its localization to microtubules was dependent on these two proteins. Dic1p localized to microtubules depending on Ssm4p, but not on Dhc1p and Dli1p. Its localization to the SPB, however, was dependent on Dhc1p and Dli1p. Localization of Ssm4p to the SPB was largely dependent on Dhc1p, Dli1p and Dic1p. Thus, Dli1p and Dic1p contribute differently in localizing the dynein-dynactin motor complex to organelles, providing novel insight into the in vivo function of dynein subunits in fission yeast.
在裂殖酵母 Schizosaccharomyces pombe 中,细胞质动力蛋白在减数分裂前期驱动核的振荡运动,这可能有助于同源染色体的配对。在这里,我们鉴定了裂殖酵母中的一种动力蛋白轻中间链(LIC),称为 Dli1p,并表明 Dli1p 和动力蛋白中间链(IC)Dic1p 对于动力蛋白在减数分裂前期的适当亚细胞定位和正常功能是必不可少的。dli1 和 dic1 基因的表达仅在进行减数分裂的细胞中观察到。Dli1p 与动力蛋白重链 Dhc1p 相互作用并共定位。Dli1p 的亚细胞定位依赖于 Dhc1p,反之亦然。Dhc1p-Dli1p 亚复合物可以在没有 Dic1p 和动力蛋白 dynactin 亚基 Ssm4p 帮助的情况下定位于纺锤体极体(SPB),但其定位于微管依赖于这两种蛋白。Dic1p 依赖于 Ssm4p 定位于微管,但不依赖于 Dhc1p 和 Dli1p。然而,它在 SPB 的定位依赖于 Dhc1p 和 Dli1p。Ssm4p 向 SPB 的定位在很大程度上依赖于 Dhc1p、Dli1p 和 Dic1p。因此,Dli1p 和 Dic1p 在将动力蛋白-dynactin 运动复合物定位到细胞器方面的作用不同,为裂殖酵母中动力蛋白亚基的体内功能提供了新的见解。