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Two modes of interaction of the single-stranded DNA-binding protein of bacteriophage T7 with the DNA polymerase-thioredoxin complex

机译:噬菌体T7的单链DNA结合蛋白与DNA聚合酶-硫氧还蛋白复合物的两种相互作用方式

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摘要

The DNA polymerase encoded by bacteriophage T7 has low processivity. Escherichia coli thioredoxin binds to a segment of 76 residues in the thumb subdomain of the polymerase and increases the processivity. The binding of thioredoxin leads to the formation of two basic loops, loops A and B, located within the thioredoxin-binding domain (TBD). Both loops interact with the acidic C terminus of the T7 helicase. A relatively weak electrostatic mode involves the C-terminal tail of the helicase and the TBD, whereas a high affinity interaction that does not involve the C-terminal tail occurs when the polymerase is in a polymerization mode. T7 gene 2.5 single-stranded DNA-binding protein (gp2.5) also has an acidic C-terminal tail. gp2.5 also has two modes of interaction with the polymerase, but both involve the C-terminal tail of gp2.5. An electrostatic interaction requires the basic residues in loops A and B, and gp2.5 binds to both loops with similar affinity as measured by surface plasmon resonance. When the polymerase is in a polymerization mode, the C terminus of gene 2.5 protein interacts with the polymerase in regions outside the TBD.gp2.5 increases the processivity of the polymerase-helicase complex during leading strand synthesis. When loop B of the TBD is altered, abortive DNA products are observed during leading strand synthesis. Loop B appears to play an important role in communication with the helicase and gp2.5, whereas loop A plays a stabilizing role in these interactions. © 2010 by The American Society for Biochemistry and Molecular Biology, Inc.
机译:由噬菌体T7编码的DNA聚合酶的合成能力低。大肠杆菌硫氧还蛋白结合至聚合酶拇指亚结构域的76个残基片段,并提高了合成能力。硫氧还蛋白的结合导致形成两个基本环,环A和B,位于硫氧还蛋白结合域(TBD)内。两个环都与T7解旋酶的酸性C末端相互作用。相对较弱的静电模式涉及解旋酶和TBD的C末端尾巴,而当聚合酶处于聚合模式时,发生不涉及C末端尾巴的高亲和力相互作用。 T7基因2.5单链DNA结合蛋白(gp2.5)也具有酸性C末端尾巴。 gp2.5还具有与聚合酶相互作用的两种模式,但都涉及gp2.5的C末端尾巴。静电相互作用需要环A和环B中的碱性残基,并且gp2.5以相似的亲和力结合两个环,如通过表面等离振子共振测量的。当聚合酶处于聚合模式时,基因2.5蛋白的C末端与TBD外的区域中的聚合酶相互作用。gp2.5增加了前导链合成过程中聚合酶-解旋酶复合物的合成能力。当TBD的环B改变时,在前导链合成过程中观察到流产的DNA产物。循环B在与解旋酶和gp2.5的通讯中似乎起重要作用,而循环A在这些相互作用中起稳定作用。 ©2010美国生物化学与分子生物学学会版权所有。

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