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首页> 外文期刊>FEMS Yeast Research >Yeast two-hybrid analysis of the origin recognition complex of Saccharomyces cerevisiae: interaction between subunits and identification of binding proteins
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Yeast two-hybrid analysis of the origin recognition complex of Saccharomyces cerevisiae: interaction between subunits and identification of binding proteins

机译:酿酒酵母起源识别复合物的酵母两杂交分析:亚基之间的相互作用和结合蛋白的鉴定

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摘要

Origin recognition complex (ORC), a six-protein complex (Orc1p-6p), is the most likely initiator of chromosomal DNA replication in eukaryotes. Although ORC of Saccharomyces cerevisiae has been studied extensively from biochemical and genetic perspectives, its quaternary structure remains unknown. Previous studies suggested that ORC has functions other than DNA replication, such as gene silencing, but the molecular mechanisms of these functions have not been determined. In this study, we used yeast two-hybrid analysis to examine the interaction between ORC subunits and to search for ORC-binding proteins. As well as the known Orc4p-Orc5p interaction, we revealed strong interactions between Orc2p and Ord3p (2p-3p), Orc2p and Ord5p (2p-5p), Orc2p and Ord6p (2p-6p) and Orc3p and Ord6p (3p-6p) and weaker interactions between Orc1p and Ord4p (1p-4p), Orc3p and Ord4p (3p-4p), Orc2p and Ord3p (3p-5p) and Orc5p and Ord3p (5p-6p). These results suggest that 2p-3p-6p may form a core complex. Orc2p and Orc6p are phosphorylated in vivo, regulating initiation of DNA replication. However, replacing the phosphorylated amino acid residues with others that cannot be phosphorylated, or that mimic phosphorylation, did not affect subunit interactions. We also identified several proteins that interact with ORC subunits; Sir4p and Mad1p interact with Orc2p; Cac1p and Ykr077wp with Orc3p; Rrm3p and Swi6p with Orc5p; and Mih1p with Orc6p. We discuss roles of these interactions in functions of ORC.
机译:起源识别复合物(ORC)是六蛋白复合物(Orc1p-6p),是真核生物中染色体DNA复制最可能的引发剂。尽管已经从生化和遗传的角度对酿酒酵母的ORC进行了广泛的研究,但其四级结构仍然未知。先前的研究表明,ORC具有除DNA复制以外的其他功能,例如基因沉默,但尚未确定这些功能的分子机制。在这项研究中,我们使用酵母双杂交分析来检查ORC亚基之间的相互作用并搜索ORC结合蛋白。以及已知的Orc4p-Orc5p交互作用,我们还揭示了Orc2p和Ord3p(2p-3p),Orc2p和Ord5p(2p-5p),Orc2p和Ord6p(2p-6p)和Orc3p和Ord6p(3p-6p)之间的强大交互作用以及Orc1p和Ord4p(1p-4p),Orc3p和Ord4p(3p-4p),Orc2p和Ord3p(3p-5p)和Orc5p和Ord3p(5p-6p)之间的相互作用较弱。这些结果表明2p-3p-6p可能形成核心复合体。 Orc2p和Orc6p在体内被磷酸化,调节DNA复制的起始。但是,用不能被磷酸化或模拟磷酸化的氨基酸取代磷酸化的氨基酸残基不会影响亚基的相互作用。我们还确定了与ORC亚基相互作用的几种蛋白质。 Sir4p和Mad1p与Orc2p交互;具有Orc3p的Cac1p和Ykr077wp;带有Orc5p的Rrm3p和Swi6p;和Mih1p与Orc6p。我们讨论了这些交互在ORC功能中的作用。

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