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首页> 外文期刊>Scientific reports. >Characterization of the MCM homohexamer from the thermoacidophilic euryarchaeon Picrophilus torridus
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Characterization of the MCM homohexamer from the thermoacidophilic euryarchaeon Picrophilus torridus

机译:嗜热嗜酸欧氏古细菌托氏拟青霉的MCM同六聚体的表征

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The typical archaeal MCM exhibits helicase activity independently in vitro . This study characterizes MCM from the euryarchaeon Picrophilus torridus . While PtMCM hydrolyzes ATP in DNA-independent manner, it displays very poor ability to unwind DNA independently, and then too only under acidic conditions. The protein exists stably in complex with PtGINS in whole cell lysates, interacting directly with PtGINS under neutral and acidic conditions. GINS strongly activates MCM helicase activity, but only at low pH. In consonance with this, PtGINS activates PtMCM-mediated ATP hydrolysis only at low pH, with the amount of ATP hydrolyzed during the helicase reaction increasing more than fifty-fold in the presence of GINS. While the stimulation of MCM-mediated helicase activity by GINS has been reported in MCMs from P.furiosus, T.kodakarensis , and very recently, T.acidophilum , to the best of our knowledge, this is the first report of an MCM helicase demonstrating DNA unwinding activity only at such acidic pH, across all archaea and eukaryotes. PtGINS may induce/stabilize a conducive conformation of PtMCM under acidic conditions, favouring PtMCM-mediated DNA unwinding coupled to ATP hydrolysis. Our findings underscore the existence of divergent modes of replication regulation among archaea and the importance of investigating replication events in more archaeal organisms.
机译:典型的古菌MCM在体外表现出独立的解旋酶活性。这项研究的特点是MCM来自于棘皮假丝酵母。尽管PtMCM以不依赖DNA的方式水解ATP,但它显示出非常独立的DNA解链能力很差,然后仅在酸性条件下解链。该蛋白在全细胞裂解物中与PtGINS稳定复合存在,在中性和酸性条件下直接与PtGINS相互作用。 GINS强烈激活MCM解旋酶活性,但仅在低pH下才有效。与此相应,PtGINS仅在低pH值时激活PtMCM介导的ATP水解,解旋酶反应过程中水解的ATP量在GINS存在下增加了50倍以上。尽管据我们所知,在G.furiosus,T.kodakarensis和最近的T.acidophilum中,已经报道了GINS刺激MCM介导的解旋酶活性,但这是MCM解旋酶首次证明仅在这样的酸性pH值下,所有古细菌和真核生物都有DNA解链活性。在酸性条件下,PtGINS可能诱导/稳定PtMCM的有益构象,从而有利于PtMCM介导的DNA解链和ATP水解。我们的发现强调了古细菌之间存在不同的复制调控模式,以及研究更多古细菌中复制事件的重要性。

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