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A novel role of RNA helicase A in regulation of translation of type I collagen mRNAs.

机译:RNA解旋酶A在调节I型胶原mRNA的翻译中的新作用。

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Type I collagen is composed of two alpha1(I) polypeptides and one alpha2(I) polypeptide and is the most abundant protein in the human body. Expression of type I collagen is primarily controlled at the level of mRNA stability and translation. Coordinated translation of alpha(I) and alpha2(I) mRNAs is necessary for efficient folding of the corresponding peptides into the collagen heterotrimer. In the 5' untranslated region (5' UTR), collagen mRNAs have a unique 5' stem-loop structure (5' SL). La ribonucleoprotein domain family member 6 (LARP6) is the protein that binds 5' SL with high affinity and specificity and coordinates their translation. Here we show that RNA helicase A (RHA) is tethered to the 5' SL of collagen mRNAs by interaction with the C-terminal domain of LARP6. In vivo, collagen mRNAs immunoprecipitate with RHA in an LARP6-dependent manner. Knockdown of RHA prevents formation of polysomes on collagen mRNAs and dramatically reduces synthesis of collagen protein, without affecting the level of the mRNAs. A reporter mRNA with collagen 5' SL is translated three times more efficiently in the presence of RHA than the same reporter without the 5' SL, indicating that the 5' SL is the cis-acting element conferring the regulation. During activation of quiescent cells into collagen-producing cells, expression of RHA is highly up-regulated. We postulate that RHA is recruited to the 5' UTR of collagen mRNAs by LARP6 to facilitate their translation. Thus, RHA has been discovered as a critical factor for synthesis of the most abundant protein in the human body.
机译:I型胶原蛋白由两个alpha1(I)多肽和一个alpha2(I)多肽组成,是人体中最丰富的蛋白质。 I型胶原蛋白的表达主要在mRNA稳定性和翻译水平上受到控制。 alpha(I)和alpha2(I)mRNA的协调翻译对于将相应肽有效折叠到胶原异源三聚体中是必需的。在5'非翻译区(5'UTR),胶原蛋白mRNA具有独特的5'茎环结构(5'SL)。 La核糖核蛋白结构域家族成员6(LARP6)是以高亲和力和特异性结合5'SL并协调其翻译的蛋白质。在这里,我们显示RNA解旋酶A(RHA)通过与LARP6的C末端域相互作用而被束缚在胶原mRNA的5'SL上。在体内,胶原蛋白mRNA以LARP6依赖性方式与RHA免疫沉淀。抑制RHA可防止胶原蛋白mRNA上多核糖体的形成,并显着减少胶原蛋白的合成,而不会影响mRNA的水平。在存在RHA的情况下,具有胶原蛋白5'SL的报告基因mRNA的翻译效率是没有5'SL的同一报告基因的三倍,这表明5'SL是赋予调控作用的顺式作用元件。在将静止细胞激活为产生胶原蛋白的细胞过程中,RHA的表达高度上调。我们推测RHA被LARP6募集到胶原mRNA的5'UTR,以促进其翻译。因此,已经发现RHA是合成人体中最丰富的蛋白质的关键因素。

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