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大肠杆菌复制因子DnaC蛋白在不存在和存在核苷酸辅因子情况下的全局构象。

Global conformation of the Escherichia coli replication factor DnaC protein in absence and presence of nucleotide cofactors.

作者信息

Galletto Roberto, Maillard Rodrigo, Jezewska Maria J, Bujalowski Wlodzimierz

机构信息

Department of Human Biological Chemistry and Genetics, the Sealy Center for Structural Biology, The University of Texas Medical Branch at Galveston, 301 University Boulevard, Galveston, Texas 77555-1053, USA.

出版信息

Biochemistry. 2004 Aug 31;43(34):10988-1001. doi: 10.1021/bi049377y.

Abstract

Global conformational and oligomeric states of the Escherichia coli replicative factor DnaC protein in the absence and presence of magnesium and nucleotide cofactors, ATP and ADP, and their fluorescent analogues, MANT-ATP and MANT-ADP, have been examined using analytical sedimentation velocity and time-dependent fluorescence anisotropy techniques. In solution, the DnaC protein exists exclusively as a monomer over a large protein concentration range. The value of s(degrees) (20, w)= 2.45 +/- 0.07 S indicates that the protein molecule has an elongated shape. When modeled as a prolate ellipsoid of revolution, the hydrated DnaC protein has an axial ratio of 4.0 +/- 0.6 with long axis a = 112 A and the short axis b = 28 A, respectively. The presence of magnesium or nucleotide cofactors, ATP or ADP, does not affect the global conformation of the protein and its monomeric state. These data indicate that recently found cooperative interactions between the DnaC molecules, in the complex with the DnaB helicase, are induced by the binding to the helicase, i.e., they are not the intrinsic property of the DnaC protein. Fluorescence anisotropy decays of the DnaC-MANT-ATP and DnaC-MANT-ADP complexes indicate that the protein has a rigid global structure on the nanosecond time scale, little affected by the nucleotide cofactors. Nevertheless, the complex with ATP has a more flexible structure, while the complex with ADP is more rigid, with the protein molecule assuming a more elongated shape. Magnesium exerts control only on the complex with the ATP analogue. In the absence of magnesium, the ATP analogue is firmly held in the binding site. In the presence of Mg(2+), this fixed location is released and the analogue is allowed to assume a flexible conformational state. The significance of the results for the functioning of the DnaC protein is discussed.

摘要

利用分析型沉降速度和时间依赖性荧光各向异性技术,研究了大肠杆菌复制因子DnaC蛋白在不存在和存在镁及核苷酸辅因子ATP和ADP及其荧光类似物MANT - ATP和MANT - ADP的情况下的全局构象和寡聚状态。在溶液中,DnaC蛋白在很大的蛋白质浓度范围内仅以单体形式存在。s(20,w)值为2.45±0.07 S,表明该蛋白质分子呈细长形状。当将其模拟为旋转长椭球体时,水合DnaC蛋白的轴比为4.0±0.6,长轴a = 112 Å,短轴b = 28 Å。镁或核苷酸辅因子ATP或ADP的存在不影响蛋白质的全局构象及其单体状态。这些数据表明,最近在与DnaB解旋酶形成的复合物中发现的DnaC分子之间的协同相互作用是由与解旋酶的结合诱导的,即它们不是DnaC蛋白的固有特性。DnaC - MANT - ATP和DnaC - MANT - ADP复合物的荧光各向异性衰减表明,该蛋白质在纳秒时间尺度上具有刚性的全局结构,受核苷酸辅因子的影响很小。然而,与ATP形成的复合物结构更灵活,而与ADP形成的复合物更刚性,蛋白质分子呈现出更细长的形状。镁仅对与ATP类似物形成的复合物起调控作用。在没有镁的情况下,ATP类似物牢固地结合在结合位点。在Mg(2+)存在的情况下,这种固定位置被释放,类似物可以呈现出灵活的构象状态。文中讨论了这些结果对DnaC蛋白功能的意义。

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