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首页> 外文期刊>The Journal of biological chemistry >Air1 Zinc Knuckles 4 and 5 and a Conserved IWRXY Motif Are Critical for the Function and Integrity of the Trf4/5-Air1/2-Mtr4 Polyadenylation (TRAMP) RNA Quality Control Complex
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Air1 Zinc Knuckles 4 and 5 and a Conserved IWRXY Motif Are Critical for the Function and Integrity of the Trf4/5-Air1/2-Mtr4 Polyadenylation (TRAMP) RNA Quality Control Complex

机译:Air1锌指关节4和5和保守的IWRXY图案对于TRF4 / 5-AIR1 / 2-MTR4多腺苷酸(TRAMP)RNA质量控制复合物的功能和完整性至关重要

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In Saccharomyces cerevisiae, non-coding RNAs, including cryptic unstable transcripts (CUTs), are subject to degradation by the exosome. The Trf4/5-Air1/2-Mtr4 polyadenylation (TRAMP) complex in S. cerevisiae is a nuclear exosome cofactor that recruits the exosome to degrade RNAs. Trf4/5 are poly(A) polymerases, Mtr4 is an RNA helicase, and Air1/2 are putative RNA-binding proteins that contain five CCHC zinc knuckles (ZnKs). One central question is how the TRAMP complex, especially the Air1/2 protein, recognizes its RNA substrates. To characterize the function of the Air1/2 protein, we used random mutagenesis of the AIR1/2 gene to identify residues critical for Air protein function. We identified air1-C178R and air2-C167R alleles encoding air1/2 mutant proteins with a substitution in the second cysteine of ZnK5. Mutagenesis of the second cysteine in AIR1/2 ZnK1–5 reveals that Air1/2 ZnK4 and -5 are critical for Air protein function in vivo. In addition, we find that the level of CUT, NEL025c, in air1 ZnK1–5 mutants is stabilized, particularly in air1 ZnK4, suggesting a role for Air1 ZnK4 in the degradation of CUTs. We also find that Air1/2 ZnK4 and -5 are critical for Trf4 interaction and that the Air1-Trf4 interaction and Air1 level are critical for TRAMP complex integrity. We identify a conserved IWRXY motif in the Air1 ZnK4-5 linker that is important for Trf4 interaction. We also find that hZCCHC7, a putative human orthologue of Air1 that contains the IWRXY motif, localizes to the nucleolus in human cells and interacts with both mammalian Trf4 orthologues, PAPD5 and PAPD7 (PAP-associated domain containing 5 and 7), suggesting that hZCCHC7 is the Air component of a human TRAMP complex.
机译:在酿酒酵母中,非编码RNA(包括隐蔽不稳定转录物(切割),受外外部的降解。在S.Cerevisiae中的TRF4 / 5-AIR1 / 2-MTR4聚腺苷酸(TRAMP)复合物是核外来官方辅助因子,用于促进外来降解RNA。 TRF4 / 5是聚(a)聚合酶,MTR4是RNA螺旋酶,AIR1 / 2是含有五个CCHC锌关节(ZNK)的RNA结合蛋白。一个核心问题是Tramp复合物,尤其是Air1 / 2蛋白,识别其RNA基材。为了表征Air1 / 2蛋白的功能,我们使用AIR1 / 2基因的随机诱变以识别对空气蛋白质功能至关重要的残留物。我们鉴定了在ZnK5的第二半胱氨酸中的替代物编码Air1-C178R和Air2-C167R等位基因,其ZnK5的第二半胱氨酸中的取代。 Air1 / 2 ZnK1-5中的第二半胱氨酸的诱变显示,Air1 / 2 ZnK4和-5对于体内空气蛋白质功能至关重要。此外,我们发现AIR1 ZnK1-5突变体中的切口NEL025C水平稳定,特别是在Air1 ZnK4中,表明Air1 ZnK4在切割的降解中的作用。我们还发现Air1 / 2 ZnK4和-5对于TRF4相互作用至关重要,并且AIR1-TRF4相互作用和AIR1水平对于流浪汉复杂完整性至关重要。我们在Air1 ZnK4-5链接器中识别一个保守的IWRXY主题,这对于TRF4相互作用很重要。我们还发现HZCCHC7,含有IWRXY基序的推定人类原理,含有IWRXY基序,定位于人体细胞中的核仁,并与哺乳动物TRF4矫正物,PAPD5和PAPD7(含有5和7的PAP相关结构域)的相互作用,表明HZCCHC7是人类流浪体复合物的空气分量。

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