首页> 美国卫生研究院文献>PLoS Genetics >The Saccharomyces cerevisiae Telomerase Subunit Est3 Binds Telomeres in a Cell Cycle– and Est1–Dependent Manner and Interacts Directly with Est1 In Vitro
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The Saccharomyces cerevisiae Telomerase Subunit Est3 Binds Telomeres in a Cell Cycle– and Est1–Dependent Manner and Interacts Directly with Est1 In Vitro

机译:酿酒酵母端粒酶亚基Est3在细胞周期和Est1依赖性方式中结合端粒并直接与Est1体外相互作用

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摘要

Telomerase is a telomere dedicated reverse transcriptase that replicates the very ends of eukaryotic chromosomes. Saccharomyces cerevisiae telomerase consists of TLC1 (the RNA template), Est2 (the catalytic subunit), and two accessory proteins, Est1 and Est3, that are essential in vivo for telomerase activity but are dispensable for catalysis in vitro. Est1 functions in both recruitment and activation of telomerase. The association of Est3 with telomeres occurred largely in late S/G2 phase, the time when telomerase acts and Est1 telomere binding occurs. Est3 telomere binding was Est1-dependent. This dependence is likely due to a direct interaction between the two proteins, as purified recombinant Est1 and Est3 interacted in vitro. Est3 abundance was neither cell cycle–regulated nor Est1-dependent. Est3 was the most abundant of the three Est proteins (84.3±13.3 molecules per cell versus 71.1±19.2 for Est1 and 37.2±6.5 for Est2), so its telomere association and/or activity is unlikely to be limited by its relative abundance. Est2 and Est1 telomere binding was unaffected by the absence of Est3. Taken together, these data indicate that Est3 acts downstream of both Est2 and Est1 and that the putative activation function of Est1 can be explained by its role in recruiting Est3 to telomeres.
机译:端粒酶是端粒专用的逆转录酶,可复制真核染色体的最末端。酿酒酵母端粒酶由TLC1(RNA模板),Est2(催化亚基)和两个辅助蛋白Est1和Est3组成,它们对于端粒酶活性在体内是必不可少的,但在体外却不可或缺。 Est1在端粒酶的募集和激活中均起作用。 Est3与端粒的缔合主要发生在S / G2晚期,即端粒酶起作用和Est1端粒结合的时间。 Est3端粒结合是Est1依赖的。这种依赖性很可能是由于两种蛋白质之间的直接相互作用,因为纯化的重组Est1和Est3在体外相互作用。 Est3的丰度既不是细胞周期调节的,也不是Est1依赖性的。 Est3是三种Est蛋白中含量最高的(每个细胞84.3±13.3个分子,而Est1为71.1±19.2,Est2为37.2±6.5),因此其端粒缔合和/或活性不太可能受其相对丰度的限制。 Est2和Est1端粒结合不受Est3缺失的影响。综上所述,这些数据表明Est3在Est2和Est1的下游起作用,并且Est1的假定激活功能可以通过其在将Est3募集到端粒中的作用来解释。

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