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PriA解旋酶-单链DNA复合物中核苷酸结合位点与单链DNA结合位点之间的变构相互作用。3.

Allosteric interactions between the nucleotide-binding sites and the ssDNA-binding site in the PriA helicase-ssDNA complex. 3.

作者信息

Lucius Aaron L, Jezewska Maria J, Bujalowski Wlodzimierz

机构信息

Department of Biochemistry and Molecular Biology, The University of Texas Medical Branch at Galveston, 301 University Boulevard, Galveston, Texas 77555-1053, USA.

出版信息

Biochemistry. 2006 Jun 13;45(23):7237-55. doi: 10.1021/bi0518287.

Abstract

Allosteric interactions between the strong and weak nucleotide-binding sites and the total and proper single-stranded (ss)DNA-binding sites of the Escherichia coli PriA helicase have been analyzed using the fluorescence titration technique. Binding of the DNA exclusively to the proper DNA-binding site of the helicase, profoundly affects the intrinsic affinities of both nucleotide-binding sites, indicating a direct communication between the nucleotide-binding sites and the proper DNA-binding site. The communication involves conformational changes of the entire protein molecule. Nevertheless, the bound DNA differently affects the structures of the strong and weak nucleotide-binding sites. While the polarity of the strong site is moderately diminished, the polarity of the weak site is dramatically increased, indicating an intimate involvement of the weak site in controlling the helicase interactions with the DNA. The strong site does not directly control the DNA affinity of the enzyme. Only when the helicase has both nucleotide-binding sites saturated with ADP but not with ATP analogues does the enzyme have an increased affinity for the ssDNA, indicating that the control of ssDNA affinity involves a coordinated action of both nucleotide-binding sites and depends upon the phosphate group of the bound cofactor. A dramatic increase of the DNA affinity, when the DNA encompasses the total DNA-binding site of the enzyme, with both nucleotide-binding sites saturated with ADP or NDP, indicates that an additional area of the protein within the total DNA-binding site becomes engaged in interactions with the DNA. The significance of these results for the enzyme activities in the DNA unwinding and recognition is discussed.

摘要

利用荧光滴定技术分析了大肠杆菌PriA解旋酶的强、弱核苷酸结合位点与总单链(ss)DNA结合位点和正确单链DNA结合位点之间的变构相互作用。DNA仅与解旋酶的正确DNA结合位点结合,会深刻影响两个核苷酸结合位点的内在亲和力,这表明核苷酸结合位点与正确DNA结合位点之间存在直接通讯。这种通讯涉及整个蛋白质分子的构象变化。然而,结合的DNA对强、弱核苷酸结合位点的结构影响不同。虽然强位点的极性适度降低,但弱位点的极性显著增加,这表明弱位点密切参与控制解旋酶与DNA的相互作用。强位点并不直接控制酶对DNA的亲和力。只有当解旋酶的两个核苷酸结合位点都被ADP饱和而不是被ATP类似物饱和时,酶对ssDNA的亲和力才会增加,这表明对ssDNA亲和力的控制涉及两个核苷酸结合位点的协同作用,并取决于结合辅因子的磷酸基团。当DNA包含酶的总DNA结合位点且两个核苷酸结合位点都被ADP或NDP饱和时,DNA亲和力急剧增加,这表明总DNA结合位点内蛋白质的一个额外区域参与了与DNA的相互作用。讨论了这些结果对DNA解旋和识别中酶活性的意义。

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