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SLBP 中一个位于 mRNA 处理结构域之外的区域对于组蛋白 mRNA 沉积到卵母细胞中是必需的。

A region of SLBP outside the mRNA-processing domain is essential for deposition of histone mRNA into the egg.

机构信息

Curriculum in Genetics and Molecular Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

Interdisciplinary Program in Biological and Genome Sciences, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

出版信息

J Cell Sci. 2021 Feb 11;134(3):jcs251728. doi: 10.1242/jcs.251728.

Abstract

Replication-dependent histone mRNAs are the only cellular mRNAs that are not polyadenylated, ending in a stemloop instead of a polyA tail, and are normally regulated coordinately with DNA replication. Stemloop-binding protein (SLBP) binds the 3' end of histone mRNA, and is required for processing and translation. During oogenesis, large amounts of histone mRNAs and proteins are deposited in the developing oocyte. The maternally deposited histone mRNA is synthesized in stage 10B oocytes after the nurse cells complete endoreduplication. We report that in wild-type stage 10B oocytes, the histone locus bodies (HLBs), formed on the histone genes, produce histone mRNAs in the absence of phosphorylation of Mxc, which is normally required for histone gene expression in S-phase cells. Two mutants of SLBP, one with reduced expression and another with a 10-amino-acid deletion, fail to deposit sufficient histone mRNA in the oocyte, and do not transcribe the histone genes in stage 10B. Mutations in a putative SLBP nuclear localization sequence overlapping the deletion phenocopy the deletion. We conclude that a high concentration of SLBP in the nucleus of stage 10B oocytes is essential for histone gene transcription.This article has an associated First Person interview with the first author of the paper.

摘要

复制依赖性组蛋白 mRNA 是唯一不进行多聚腺苷酸化的细胞 mRNA,其 3' 端以茎环而非多聚 A 尾结尾,通常与 DNA 复制协调调控。茎环结合蛋白 (SLBP) 结合组蛋白 mRNA 的 3' 端,是加工和翻译所必需的。在卵母细胞发生过程中,大量的组蛋白 mRNA 和蛋白质被储存在正在发育的卵母细胞中。母源沉积的组蛋白 mRNA 在滋养细胞完成内复制后,在 10B 期卵母细胞中合成。我们报告说,在野生型 10B 期卵母细胞中,组蛋白基因上形成的组蛋白基因体(HLBs)在 Mxc 磷酸化正常情况下所需的 S 期细胞组蛋白基因表达缺失的情况下,产生组蛋白 mRNA。SLBP 的两个突变体,一个表达减少,另一个缺失 10 个氨基酸,在卵母细胞中不能沉积足够的组蛋白 mRNA,并且在 10B 期不能转录组蛋白基因。与缺失重叠的假定 SLBP 核定位序列的突变突显出缺失的表型。我们得出结论,高浓度的 SLBP 存在于 10B 期卵母细胞的核中对于组蛋白基因转录是必不可少的。本文有一篇与该论文第一作者的相关第一人称采访。

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