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聚腺苷酸核酸酶的正负调控

Positive and negative regulation of poly(A) nuclease.

作者信息

Mangus David A, Evans Matthew C, Agrin Nathan S, Smith Mandy, Gongidi Preetam, Jacobson Allan

机构信息

Department of Molecular Genetics and Microbiology, University of Massachusetts Medical School, Worcester, MA 01655, USA.

出版信息

Mol Cell Biol. 2004 Jun;24(12):5521-33. doi: 10.1128/MCB.24.12.5521-5533.2004.

Abstract

PAN, a yeast poly(A) nuclease, plays an important nuclear role in the posttranscriptional maturation of mRNA poly(A) tails. The activity of this enzyme is dependent on its Pan2p and Pan3p subunits, as well as the presence of poly(A)-binding protein (Pab1p). We have identified and characterized the associated network of factors controlling the maturation of mRNA poly(A) tails in yeast and defined its relevant protein-protein interactions. Pan3p, a positive regulator of PAN activity, interacts with Pab1p, thus providing substrate specificity for this nuclease. Pab1p also regulates poly(A) tail trimming by interacting with Pbp1p, a factor that appears to negatively regulate PAN. Pan3p and Pbp1p both interact with themselves and with the C terminus of Pab1p. However, the domains required for Pan3p and Pbp1p binding on Pab1p are distinct. Single amino acid changes that disrupt Pan3p interaction with Pab1p have been identified and define a binding pocket in helices 2 and 3 of Pab1p's carboxy terminus. The importance of these amino acids for Pab1p-Pan3p interaction, and poly(A) tail regulation, is underscored by experiments demonstrating that strains harboring substitutions in these residues accumulate mRNAs with long poly(A) tails in vivo.

摘要

PAN是一种酵母聚腺苷酸核酸酶,在mRNA聚腺苷酸尾巴的转录后成熟过程中发挥重要的核作用。这种酶的活性取决于其Pan2p和Pan3p亚基,以及聚腺苷酸结合蛋白(Pab1p)的存在。我们已经鉴定并表征了控制酵母中mRNA聚腺苷酸尾巴成熟的相关因子网络,并确定了其相关的蛋白质-蛋白质相互作用。Pan3p是PAN活性的正调节因子,与Pab1p相互作用,从而为这种核酸酶提供底物特异性。Pab1p还通过与Pbp1p相互作用来调节聚腺苷酸尾巴的修剪,Pbp1p似乎是PAN的负调节因子。Pan3p和Pbp1p都能自身相互作用,并与Pab1p的C末端相互作用。然而,Pan3p和Pbp1p在Pab1p上结合所需的结构域是不同的。已经鉴定出破坏Pan3p与Pab1p相互作用的单氨基酸变化,并确定了Pab1p羧基末端螺旋2和3中的一个结合口袋。实验表明,在这些残基中存在替代的菌株在体内积累具有长聚腺苷酸尾巴的mRNA,这突出了这些氨基酸对Pab1p-Pan3p相互作用和聚腺苷酸尾巴调节的重要性。

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本文引用的文献

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