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原核生物DNA聚合酶I:进化、结构及核苷酸选择的“碱基翻转”机制

Prokaryotic DNA polymerase I: evolution, structure, and "base flipping" mechanism for nucleotide selection.

作者信息

Patel P H, Suzuki M, Adman E, Shinkai A, Loeb L A

机构信息

The Joseph Gottstein Memorial Cancer Laboratory, Department of Pathology, University of Washington School of Medicine, Seattle, WA 98195-7705, USA.

出版信息

J Mol Biol. 2001 May 18;308(5):823-37. doi: 10.1006/jmbi.2001.4619.

Abstract

Accurate transmission of DNA material from one generation to the next is crucial for prolonged cell survival. Following the discovery of DNA polymerse I in Escherichia coli, the DNA polymerase I class of enzymes has served as the prototype for studies on structural and biochemical mechanisms of DNA replication. Recently, a series of genomic, mutagenesis and structural investigations have provided key insights into how Pol I class of enzymes function and evolve. X-ray crystal structures of at least three Pol I class of enzymes have been solved in the presence of DNA and dNTP, thus allowing a detailed description of a productive replication complex. Rapid-quench stop-flow studies have helped define individual steps during nucleotide incorporation and conformational changes that are rate limiting during catalysis. Studies in our laboratory have generated large libraries of active mutant enzymes (8000) containing a variety of substitutions within the active site, some of which exhibit altered biochemical properties. Extensive genomic information of Pol I has recently become available, as over 50 polA genes from different prokaryotic species have been sequenced. In light of these advancements, we review here the structure-function relationships of Pol I, and we highlight those interactions that are responsible for the high fidelity of DNA synthesis. We present a mechanism for "flipping" of the complementary template base to enhance interactions with the incoming nucleotide substrate during DNA synthesis.

摘要

DNA物质从一代准确传递到下一代对于细胞的长期存活至关重要。自从在大肠杆菌中发现DNA聚合酶I以来,DNA聚合酶I类酶一直是研究DNA复制的结构和生化机制的原型。最近,一系列基因组、诱变和结构研究为了解聚合酶I类酶的功能和进化提供了关键见解。在DNA和脱氧核苷三磷酸存在的情况下,至少三种聚合酶I类酶的X射线晶体结构已得到解析,从而能够详细描述一个有效的复制复合物。快速淬灭停流研究有助于确定核苷酸掺入过程中的各个步骤以及催化过程中限速的构象变化。我们实验室的研究已经构建了大量活性突变酶文库(8000个),这些文库在活性位点内包含各种取代,其中一些表现出改变的生化特性。最近,由于已经对来自不同原核生物物种的50多个polA基因进行了测序,聚合酶I的广泛基因组信息已经可用。鉴于这些进展,我们在此回顾聚合酶I的结构-功能关系,并强调那些负责DNA合成高保真度的相互作用。我们提出了一种在DNA合成过程中互补模板碱基“翻转”的机制,以增强与进入的核苷酸底物的相互作用。

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