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The arginine finger of bacteriophage T7 gene 4 helicase: Role in energy coupling

机译:噬菌体T7基因4解旋酶的精氨酸指:在能量耦合中的作用

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The DNA helicase encoded by gene 4 of bacteriophage T7 couples DNA unwinding to the hydrolysis of dTTP. The loss of coupling in the presence of orthovanadate (Vi) suggests that the gamma-phosphate of dTTP plays an important role in this mechanism. The crystal structure of the hexameric helicase shows Arg-522, located at the subunit interface, positioned to interact with the gamma-phosphate of bound nucleoside 5' triphosphate. In this respect, it is analogous to arginine fingers found in other nucleotide-hydrolyzing enzymes. When Arg-522 is replaced with alanine (gp4-R522A) or lysine (gp4-R522K), the rate of dTTP hydrolysis is significantly decreased. dTTPase activity of the altered proteins is not inhibited by Vi, suggesting the loss of an interaction between Vi and gene 4 protein. gp4-R522A cannot unwind DNA, whereas gp4-R522K does so, proportionate to its dTTPase activity. However, gp4-R522K cannot stimulate T7 polymerase activity on double-stranded DNA. These findings support the involvement of the Arg-522 residue in the energy coupling mechanism. [References: 47]
机译:由噬菌体T7的基因4编码的DNA解旋酶将解链的DNA与dTTP的水解结合。在原钒酸盐(Vi)存在下失去偶联表明,dTTP的γ-磷酸在该机制中起重要作用。六聚解旋酶的晶体结构显示位于亚基界面处的Arg-522,其定位成与结合的核苷5'三磷酸的γ-磷酸相互作用。在这方面,它类似于在其他核苷酸水解酶中发现的精氨酸指。当将Arg-522替换为丙氨酸(gp4-R522A)或赖氨酸(gp4-R522K)时,dTTP水解速率显着降低。 Vi不会抑制改变的蛋白质的dTTPase活性,这表明Vi与基因4蛋白之间的相互作用丧失。 gp4-R522A无法解绕DNA,而gp4-R522K则解绕DNA,这与其dTTPase活性成正比。但是,gp4-R522K不能刺激T7聚合酶对双链DNA的活性。这些发现支持了Arg-522残基参与能量耦合机理。 [参考:47]

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