Yu Eun Young, Wang Feng, Lei Ming, Lue Neal F
Department of Microbiology & Immunology, W. R. Hearst Microbiology Research Center, Weill Medical College of Cornell University, 1300 York Avenue, New York, New York 10065, USA.
Nat Struct Mol Biol. 2008 Sep;15(9):985-9. doi: 10.1038/nsmb.1471.
Ever shorter telomeres 3 (Est3) is an essential telomerase regulatory subunit thought to be unique to budding yeasts. Here we use multiple sequence alignment and hidden Markov model-hidden Markov model (HMM-HMM) comparison to uncover potential similarities between Est3 and the mammalian telomeric protein Tpp1. Analysis of site-specific mutants of Candida albicans Est3 revealed functional distinctions between residues that are conserved between Est3 and Tpp1 and those that are unique to Est3. Although both types of residues are important for telomere maintenance in vivo, only the former contributes to telomerase activity in vitro and facilitates the association of Est3 with telomerase core components. Consistent with a function in protein-protein interaction, the residues common to Est3 and Tpp1 map to one face of an OB-fold model structure, away from the canonical nucleic acid binding surface. We propose that Est3 and the OB-fold domain of Tpp1 mediate a conserved function in telomerase regulation.
端粒酶亚基3(Est3)是一种重要的端粒酶调节亚基,被认为是芽殖酵母所特有的。在这里,我们使用多序列比对和隐马尔可夫模型-隐马尔可夫模型(HMM-HMM)比较来揭示Est3与哺乳动物端粒蛋白Tpp1之间的潜在相似性。对白色念珠菌Est3的位点特异性突变体的分析揭示了Est3和Tpp1之间保守的残基与Est3特有的残基之间的功能差异。尽管这两种类型的残基在体内对端粒维持都很重要,但只有前者在体外有助于端粒酶活性,并促进Est3与端粒酶核心成分的结合。与蛋白质-蛋白质相互作用的功能一致,Est3和Tpp1共有的残基位于一个OB折叠模型结构的一个面上,远离典型的核酸结合表面。我们提出,Est3和Tpp1的OB折叠结构域在端粒酶调节中发挥保守功能。