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干燥综合征抗原 B (SSB)/La 通过茎环识别结合 microRNA 前体来促进全局 microRNA 表达。

Sjogren syndrome antigen B (SSB)/La promotes global microRNA expression by binding microRNA precursors through stem-loop recognition.

机构信息

Department of Biochemistry, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.

出版信息

J Biol Chem. 2013 Jan 4;288(1):723-36. doi: 10.1074/jbc.M112.401323. Epub 2012 Nov 5.

Abstract

MicroRNAs (miRNA) control numerous physiological and pathological processes. Typically, the primary miRNA (pri-miRNA) transcripts are processed by nuclear Drosha complex into ~70-nucleotide stem-loop precursor miRNAs (pre-miRNA), which are further cleaved by cytoplasmic Dicer complex into ~21-nucleotide mature miRNAs. However, it is unclear how nascent pre-miRNAs are protected from ribonucleases, such as MCPIP1, that degrade pre-miRNAs to abort miRNA production. Here, we identify Sjögren syndrome antigen B (SSB)/La as a pre-miRNA-binding protein that regulates miRNA processing in vitro. All three RNA-binding motifs (LAM, RRM1, and RRM2) of La/SSB are required for efficient pre-miRNA binding. Intriguingly, La/SSB recognizes the characteristic stem-loop structure of pre-miRNAs, of which the majority lack a 3' UUU terminus. Moreover, La/SSB associates with endogenous pri-/pre-miRNAs and promotes miRNA biogenesis by stabilizing pre-miRNAs from nuclease (e.g. MCPIP1)-mediated decay in mammalian cells. Accordingly, we observed positive correlations between the expression status of La/SSB and Dicer in human cancer transcriptome and prognosis. These studies identify an important function of La/SSB as a global regulator of miRNA expression, and implicate stem-loop recognition as a major mechanism that mediates association between La/SSB and diverse RNA molecules.

摘要

微小 RNA(miRNA)调控着众多生理和病理过程。通常情况下,初级 miRNA(pri-miRNA)转录本首先被核 Drosha 复合物加工成约 70 个核苷酸的茎环前体 miRNA(pre-miRNA),然后进一步被细胞质 Dicer 复合物切割成约 21 个核苷酸的成熟 miRNA。然而,新生的 pre-miRNA 是如何免受核糖核酸酶(如 MCPIP1)的降解,从而阻止 miRNA 生成的,目前还不清楚。在这里,我们鉴定出干燥综合征抗原 B(SSB)/La 是一种前体 miRNA 结合蛋白,可在体外调节 miRNA 的加工。La/SSB 的三个 RNA 结合基序(LAM、RRM1 和 RRM2)均需要有效结合 pre-miRNA。有趣的是,La/SSB 识别 pre-miRNA 的特征茎环结构,其中大多数缺乏 3' UUU 末端。此外,La/SSB 与内源性 pri-/pre-miRNA 结合,并通过稳定 pre-miRNA 来促进 miRNA 的生物发生,从而抵抗核酸酶(如 MCPIP1)介导的降解。因此,我们在人类癌症转录组和预后中观察到 La/SSB 和 Dicer 的表达状态之间存在正相关。这些研究鉴定出 La/SSB 作为 miRNA 表达的全局调节剂的重要功能,并暗示茎环识别是介导 La/SSB 与各种 RNA 分子之间关联的主要机制。

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