首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >DNA-strand exchange promoted by RecA protein in the absence of ATP: implications for the mechanism of energy transduction in protein-promoted nucleic acid transactions.
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DNA-strand exchange promoted by RecA protein in the absence of ATP: implications for the mechanism of energy transduction in protein-promoted nucleic acid transactions.

机译:在没有ATP的情况下RecA蛋白促进的DNA链交换:对蛋白质促进的核酸交易中能量转导机制的影响。

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摘要

DNA-strand exchange promoted by Escherichia coli RecA protein normally requires the presence of ATP and is accompanied by ATP hydrolysis, thereby implying a need for ATP hydrolysis. Previously, ATP hydrolysis was shown not to be required; here we demonstrate furthermore that a nucleoside triphosphate cofactor is not required for DNA-strand exchange. A gratuitous allosteric effector consisting of the noncovalent complex of ADP and aluminum fluoride, ADP.AIF4-, can both induce the high-affinity DNA-binding state of RecA protein and support the homologous pairing and exchange of up to 800-900 bp of DNA. These results demonstrate that induction of the functionally active, high-affinity DNA-binding state of RecA protein is needed for RecA protein-promoted DNA-strand exchange and that there is no requirement for a high-energy nucleotide cofactor for the exchange of DNA strands. Consequently, the free energy needed to activate the DNA substrates for DNA-strand exchange is not derived from ATP hydrolysis. Instead, the needed free energy is derived from ligand binding and is transduced to the DNA via the associated ligand-induced structural transitions of the RecA protein-DNA complex; ATP hydrolysis simply destroys the effector ligand. This concept has general applicability to the mechanism of energy transduction by proteins.
机译:大肠杆菌RecA蛋白促进的DNA链交换通常需要ATP的存在并伴有ATP水解,因此暗示需要进行ATP水解。以前,显示不需要ATP水解。在这里,我们进一步证明,DNA链交换不需要核苷三磷酸辅因子。由ADP和氟化铝的非共价复合物ADP.AIF4-组成的免费变构效应子,可以诱导RecA蛋白的高亲和力DNA结合状态,并支持同源配对和交换高达800-900 bp的DNA 。这些结果表明,RecA蛋白促进的DNA链交换需要诱导RecA蛋白的功能活跃,高亲和力的DNA结合状态,并且不需要高能核苷酸辅因子来交换DNA链。因此,激活DNA底物进行DNA链交换所需的自由能并非源自ATP水解。取而代之的是,所需的自由能源自配体结合,并通过相关的配体诱导的RecA蛋白-DNA复合物的结构转变被传导至DNA。 ATP水解只会破坏效应子配体。该概念普遍适用于蛋白质的能量转导机制。

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