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聚腺苷酸核酸酶与聚腺苷酸结合蛋白中聚腺苷酸结合蛋白结构域的C末端结构域相互作用。

Poly(A) nuclease interacts with the C-terminal domain of polyadenylate-binding protein domain from poly(A)-binding protein.

作者信息

Siddiqui Nadeem, Mangus David A, Chang Tsung-Cheng, Palermino Jeanne-Marie, Shyu Ann-Bin, Gehring Kalle

机构信息

Department of Biochemistry, McGill University, Montréal, Quebec H3G 1Y6, Canada.

出版信息

J Biol Chem. 2007 Aug 24;282(34):25067-75. doi: 10.1074/jbc.M701256200. Epub 2007 Jun 26.

DOI:10.1074/jbc.M701256200
PMID:17595167
Abstract

The poly(A)-binding protein (PABP) is an essential protein found in all eukaryotes and is involved in an extensive range of cellular functions, including translation, mRNA metabolism, and mRNA export. Its C-terminal region contains a peptide-interacting PABC domain that recruits proteins containing a highly specific PAM-2 sequence motif to the messenger ribonucleoprotein complex. In humans, these proteins, including Paip1, Paip2, eRF3 (eukaryotic release factor 3), Ataxin-2, and Tob2, are all found to regulate translation through varying mechanisms. The following reports poly(A) nuclease (PAN) as a PABC-interacting partner in both yeast and humans. Their interaction is mediated by a PAM-2 motif identified within the PAN3 subunit. This site was identified in various fungal and animal species suggesting that the interaction is conserved throughout evolution. Our results indicate that PABP is directly involved in recruiting a deadenylase to the messenger ribonucleoprotein complex. This demonstrates a novel role for the PABC domain in mRNA metabolic processes and gives further insight into the function of PABP in mRNA maturation, export, and turnover.

摘要

聚腺苷酸结合蛋白(PABP)是一种在所有真核生物中都存在的必需蛋白质,参与广泛的细胞功能,包括翻译、mRNA代谢和mRNA输出。其C末端区域包含一个肽相互作用的PABC结构域,该结构域将含有高度特异性PAM-2序列基序的蛋白质招募到信使核糖核蛋白复合物中。在人类中,这些蛋白质,包括Paip1、Paip2、eRF3(真核释放因子3)、Ataxin-2和Tob2,都被发现通过不同机制调节翻译。以下报道了聚腺苷酸核酸酶(PAN)在酵母和人类中都是PABC相互作用的伙伴。它们的相互作用由在PAN3亚基中鉴定出的PAM-2基序介导。该位点在各种真菌和动物物种中都被鉴定出来,表明这种相互作用在整个进化过程中都是保守的。我们的结果表明,PABP直接参与将去腺苷酸化酶招募到信使核糖核蛋白复合物中。这证明了PABC结构域在mRNA代谢过程中的新作用,并进一步深入了解了PABP在mRNA成熟、输出和周转中的功能。

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