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Heterogeneous Nuclear Ribonucleoproteins C1 and C2 Associate with the RNA Component of Human Telomerase

机译:异构核糖核蛋白C1和C2与人类端粒酶的RNA成分相关。

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Here we demonstrate that heterogeneous nuclear ribonucleoproteins (hnRNPs) C1 and C2 can associate directly with the integral RNA component of mammalian telomerase. The binding site for hnRNPs C1 and C2 maps to a 6-base uridylate tract located directly 5′ to the template region in the human telomerase RNA (TR) and a 4-base uridylate tract directly 3′ to the template in the mouse TR. Telomerase activity is precipitated with antibodies specific to hnRNPs C1 and C2 from cells expressing wild-type human TR but not a variant of the human TR lacking the hnRNPs C1 and C2 binding site, indicating that hnRNPs C1 and C2 require the 6-base uridylate tract within the human TR to associate with the telomerase holoenzyme. In addition, we demonstrate that binding of hnRNPs C1 and C2 to telomerase correlates with the ability of telomerase to access the telomere. Although correlative, these data do suggest that the binding of hnRNPs C1 and C2 to telomerase may be important for the ability of telomerase to function on telomeres. The C proteins of the hnRNP particle are also capable of colocalizing with telomere binding proteins, suggesting that the C proteins may associate with telomeres in vivo. Therefore, human telomerase is capable of associating with core members of the hnRNP family of RNA binding proteins through a direct and sequence-specific interaction with the human TR. This is also the first account describing the precise mapping of a sequence in the human TR that is required to associate with an auxiliary component of the human telomerase holoenzyme.
机译:在这里,我们证明异质核核糖核蛋白(hnRNPs)C1和C2可以直接与哺乳动物端粒酶的整体RNA成分相关联。 hnRNP C1和C2的结合位点映射到位于人端粒酶RNA(TR)中模板区域直接5'的6个碱基的尿苷酸通道和直接位于小鼠TR中模板3'的4个碱基的尿苷酸通道。端粒酶活性由特异于hnRNP C1和C2的抗体从表达野生型人TR的细胞中沉淀出来,但缺少缺少hnRNP C1和C2结合位点的人TR的变体,表明hnRNP C1和C2需要6个碱基的尿苷酸在人类TR中与端粒酶全酶结合。此外,我们证明hnRNPs C1和C2与端粒酶的结合与端粒酶访问端粒的能力有关。尽管具有相关性,但这些数据确实表明hnRNP C1和C2与端粒酶的结合对于端粒酶在端粒上发挥功能的能力可能很重要。 hnRNP颗粒的C蛋白还能够与端粒结合蛋白共定位,表明C蛋白可能在体内与端粒缔合。因此,人类端粒酶能够通过与人类TR的直接和序列特异性相互作用与RNA结合蛋白hnRNP家族的核心成员缔合。这也是描述人TR中与人端粒酶全酶辅助成分相关的序列的精确定位的第一个说明。

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