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Domain Structures and Inter-Domain Interactions Defining the Holoenzyme Architecture of Archaeal D-Family DNA Polymerase

机译:域结构和域间相互作用定义古细菌D-家族DNA聚合酶的全酶构型

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摘要

Archaea-specific D-family DNA polymerase (PolD) forms a dimeric heterodimer consisting of two large polymerase subunits and two small exonuclease subunits. According to the protein-protein interactions identified among the domains of large and small subunits of PolD, a symmetrical model for the domain topology of the PolD holoenzyme is proposed. The experimental evidence supports various aspects of the model. The conserved amphipathic nature of the N-terminal putative α-helix of the large subunit plays a key role in the homodimeric assembly and the self-cyclization of the large subunit and is deeply involved in the archaeal PolD stability and activity. We also discuss the evolutional transformation from archaeal D-family to eukaryotic B-family polymerase on the basis of the structural information.
机译:古细菌特异性D家族DNA聚合酶(PolD)形成由两个大的聚合酶亚基和两个小的核酸外切酶亚基组成的二聚异二聚体。根据在PolD的大亚基和小亚基之间鉴定出的蛋白质-蛋白质相互作用,提出了PolD全酶的域拓扑结构的对称模型。实验证据支持该模型的各个方面。大亚基的N末端推定的α-螺旋的保守两亲性质在同二聚体组装和大亚基的自环化中起关键作用,并深深地参与古细菌PolD的稳定性和活性。我们还讨论了基于结构信息从古细菌D家族向真核生物B家族聚合酶的进化转化。

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