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Red5 和三个核孔复合体成分对于在裂殖酵母营养生长期间高效抑制特定 mRNAs 是必需的。

Red5 and three nuclear pore components are essential for efficient suppression of specific mRNAs during vegetative growth of fission yeast.

机构信息

University of Tsukuba, Tsukuba, Ibaraki, 305-8577, Japan.

出版信息

Nucleic Acids Res. 2013 Jul;41(13):6674-86. doi: 10.1093/nar/gkt363. Epub 2013 May 8.

Abstract

Zinc-finger domains are found in many nucleic acid-binding proteins in both prokaryotes and eukaryotes. Proteins carrying zinc-finger domains have important roles in various nuclear transactions, including transcription, mRNA processing and mRNA export; however, for many individual zinc-finger proteins in eukaryotes, the exact function of the protein is not fully understood. Here, we report that Red5 is involved in efficient suppression of specific mRNAs during vegetative growth of Schizosaccharomyces pombe. Red5, which contains five C3H1-type zinc-finger domains, localizes to the nucleus where it forms discrete dots. A red5 point mutation, red5-2, results in the upregulation of specific meiotic mRNAs in vegetative mutant red5-2 cells; northern blot data indicated that these meiotic mRNAs in red5-2 cells have elongated poly(A) tails. RNA-fluorescence in situ hybridization results demonstrate that poly(A)(+) RNA species accumulate in the nucleolar regions of red5-deficient cells. Moreover, Red5 genetically interacts with several mRNA export factors. Unexpectedly, three components of the nuclear pore complex also suppress a specific set of meiotic mRNAs. These results indicate that Red5 function is important to meiotic mRNA degradation; they also suggest possible connections among selective mRNA decay, mRNA export and the nuclear pore complex in vegetative fission yeast.

摘要

锌指结构域存在于原核生物和真核生物的许多核酸结合蛋白中。携带锌指结构域的蛋白质在各种核反应中发挥重要作用,包括转录、mRNA 加工和 mRNA 输出;然而,对于真核生物中的许多单个锌指蛋白,其蛋白质的确切功能尚不完全清楚。在这里,我们报告 Red5 参与了裂殖酵母营养生长过程中特定 mRNA 的有效抑制。Red5 包含五个 C3H1 型锌指结构域,定位于细胞核中,形成离散的点。red5 点突变 red5-2 导致营养突变体 red5-2 细胞中特定减数分裂 mRNA 的上调; northern blot 数据表明,red5-2 细胞中的这些减数分裂 mRNA 具有延长的 poly(A)尾巴。RNA-荧光原位杂交结果表明,poly(A)(+)RNA 物种在 red5 缺陷细胞的核仁区域积累。此外,Red5 与几个 mRNA 输出因子在遗传上相互作用。出乎意料的是,核孔复合体的三个成分也抑制了一组特定的减数分裂 mRNA。这些结果表明 Red5 功能对减数分裂 mRNA 降解很重要;它们还表明选择性 mRNA 降解、mRNA 输出和有丝分裂酵母核孔复合体之间可能存在联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c25/3711435/1c0efac092d3/gkt363f1p.jpg

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