首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Novel RNA-binding Protein P311 Binds Eukaryotic Translation Initiation Factor 3 Subunit b (eIF3b) to Promote Translation of Transforming Growth Factor β1-3 (TGF-β1-3)
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Novel RNA-binding Protein P311 Binds Eukaryotic Translation Initiation Factor 3 Subunit b (eIF3b) to Promote Translation of Transforming Growth Factor β1-3 (TGF-β1-3)

机译:新型RNA结合蛋白P311结合真核翻译起始因子3亚基b(eIF3b)以促进转化生长因子β1-3(TGF-β1-3)的翻译

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摘要

P311, a conserved 8-kDa intracellular protein expressed in brain, smooth muscle, regenerating tissues, and malignant glioblastomas, represents the first documented stimulator of TGF-β1-3 translation in vitro and in vivo. Here we initiated efforts to define the mechanism underlying P311 function. PONDR® (Predictor Of Naturally Disordered Regions) analysis suggested and CD confirmed that P311 is an intrinsically disordered protein, therefore requiring an interacting partner to acquire tertiary structure and function. Immunoprecipitation coupled with mass spectroscopy identified eIF3 subunit b (eIF3b) as a novel P311 binding partner. Immunohistochemical colocalization, GST pulldown, and surface plasmon resonance studies revealed that P311-eIF3b interaction is direct and has a Kd of 1.26 μm. Binding sites were mapped to the non-canonical RNA recognition motif of eIF3b and a central 11-amino acid-long region of P311, here referred to as eIF3b binding motif. Disruption of P311-eIF3b binding inhibited translation of TGF-β1, 2, and 3, as indicated by luciferase reporter assays, polysome fractionation studies, and Western blot analysis. RNA precipitation assays after UV cross-linking and RNA-protein EMSA demonstrated that P311 binds directly to TGF-β 5′UTRs mRNAs through a previously unidentified RNA recognition motif-like motif. Our results demonstrate that P311 is a novel RNA-binding protein that, by interacting with TGF-βs 5′UTRs and eIF3b, stimulates the translation of TGF-β1, 2, and 3.
机译:P311是一种在大脑,平滑肌,再生组织和恶性胶质母细胞瘤中表达的保守的8 kDa细胞内蛋白,代表了第一个在体外和体内对TGF-β1-3进行翻译的刺激物。在这里,我们开始努力定义P311功能的基础机制。建议进行PONDR®(自然无序区域的预测因素)分析,CD证实P311是一种内在无序的蛋白质,因此需要相互作用的伴侣才能获得三级结构和功能。免疫沉淀结合质谱法鉴定eIF3亚基b(eIF3b)为新型P311结合伴侣。免疫组织化学共定位,GST下拉和表面等离振子共振研究表明,P311-eIF3b相互作用是直接的,其Kd为1.26μm。结合位点被定位到eIF3b的非规范RNA识别基序和P311的中央11个氨基酸长的区域,这里称为eIF3b结合基序。萤光素酶报告基因检测,多核糖体分级研究和蛋白质印迹分析表明,破坏P311-eIF3b的结合会抑制TGF-β1、2和3的翻译。 UV交联和RNA蛋白质EMSA后的RNA沉淀分析表明,P311通过以前未确定的RNA识别基序样基序直接与TGF-β5'UTRs mRNA结合。我们的结果表明,P311是一种新型的RNA结合蛋白,通过与TGF-βs5'UTR和eIF3b相互作用,刺激TGF-β1、2和3的翻译。

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