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首页> 外文期刊>Human Molecular Genetics >TDRD3, a novel Tudor domain-containing protein, localizes to cytoplasmic stress granules.
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TDRD3, a novel Tudor domain-containing protein, localizes to cytoplasmic stress granules.

机译:TDRD3是一种新型的含Tudor域的蛋白质,位于细胞质应激颗粒中。

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摘要

Our previous work has demonstrated that the Tudor domain of the 'survival of motor neuron' protein and the Tudor domain-containing protein 3 (TDRD3) are highly similar and that they both have the ability to interact with arginine-methylated polypeptides. TDRD3 has been identified among genes whose overexpression has a strong predictive value for poor prognosis of estrogen receptor-negative breast cancers, although its precise function remains unknown. TDRD3 is a modular protein, and in addition to its Tudor domain, it harbors a putative nucleic acid recognition motif and a ubiquitin-associated domain. We report here that TDRD3 localizes predominantly to the cytoplasm, where it co-sediments with the fragile X mental retardation protein on actively translating polyribosomes. We also demonstrate that TDRD3 accumulates into stress granules (SGs) in response to various cellular stresses. Strikingly, the Tudor domain of TDRD3 was found to be both required and sufficient for its recruitment to SGs, and the methyl-binding surface in the Tudor domain is important for this process. Pull down experiments identified five novel TDRD3 interacting partners, most of which are potentially methylated RNA-binding proteins. Our findings revealed that two of these proteins, SERPINE1 mRNA-binding protein 1 and DEAD/H box-3 (a gene often deleted in Sertoli-cell-only syndrome), are also novel constituents of cytoplasmic SGs. Taken together, we report the first characterization of TDRD3 and its functional interaction with at least two proteins implicated in human genetic diseases and present evidence supporting a role for arginine methylation in the regulation of SG dynamics.
机译:我们以前的工作表明,“运动神经元的存活”蛋白的Tudor结构域和含Tudor结构域的蛋白3(TDRD3)高度相似,并且它们都具有与精氨酸甲基化多肽相互作用的能力。 TDRD3已被确定其基因的过表达对雌激素受体阴性乳腺癌的不良预后具有很强的预测价值,尽管其确切功能尚不清楚。 TDRD3是一种模块蛋白,除其Tudor结构域外,还具有推定的核酸识别基序和泛素相关结构域。我们在这里报告TDRD3主要定位于细胞质,在这里它与脆弱的X智力低下蛋白在主动翻译多核糖体上共同沉淀。我们还证明了TDRD3可以响应各种细胞应激而积聚成应激颗粒(SGs​​)。令人惊讶的是,发现TDRD3的Tudor结构域既需要又足以将其招募至SG,并且Tudor结构域中的甲基结合表面对该过程很重要。下拉实验确定了五个新的TDRD3相互作用伴侣,其中大多数可能是甲基化的RNA结合蛋白。我们的发现表明,这些蛋白中的两个,SERPINE1 mRNA结合蛋白1和DEAD / H box-3(常在仅支持细胞的综合征中缺失的基因),也是细胞质SG的新组成部分。两者合计,我们报告TDRD3的第一个表征及其与至少两种涉及人类遗传疾病的蛋白质的功能相互作用,并提供证据支持精氨酸甲基化在SG动态调节中的作用。

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