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首页> 外文期刊>Journal of Molecular Biology >DNA-induced conformational changes in cyclic AMP receptor protein: detection and mapping by a protein footprinting technique using multiple chemical proteases.
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DNA-induced conformational changes in cyclic AMP receptor protein: detection and mapping by a protein footprinting technique using multiple chemical proteases.

机译:DNA诱导的环状AMP受体蛋白质构象变化:使用多种化学蛋白酶通过蛋白质足迹技术进行检测和作图。

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摘要

Cyclic AMP receptor protein (CRP) is a regulator of transcription in Escherichia coli which mediates its activity by binding specific DNA sequences in a cyclic AMP-dependent manner. The interaction of CRP with specific DNA was probed by a protein footprinting technique using chemical proteases of different charge, size, and hydrophobicity. The experimental data were compared with known crystal structures of cAMP-CRP and cAMP-CRP-DNA complexes to determine a correlation between the structure of the complexes, the nature of the chemical protease and protein cleavage patterns. In addition, such comparison allowed us to determine if DNA binding in solution induced conformational changes in the protein not apparent in the crystal structure. In the cAMP-CRP-DNA complex, both the protections and the enhancements of proteolytic cleavage were observed outside of the known CRP-DNA interface, suggesting that CRP undergoes a conformational change upon binding DNA. Among the observed changes, the most interesting were those around the B alpha-helix and beta-strand 8, since this region overlaps with the activation region 2 which CRP uses for protein-protein interactions with RNA polymerase. DNA-induced changes were observed also in the region involved in CRP-CytR interaction and in CRP intersubunit contact regions. These data suggest that binding of DNA in solution induces conformational changes in CRP which can be transmitted via intersubunit contacts to regions of the protein involved in interactions with other members of transcriptional machinery. Copyright 1999 Academic Press.
机译:环状AMP受体蛋白(CRP)是大肠杆菌中的转录调节因子,它通过以环状AMP依赖性方式结合特定的DNA序列来介导其活性。通过使用不同电荷,大小和疏水性的化学蛋白酶的蛋白质足迹技术探测CRP与特定DNA的相互作用。将实验数据与已知的cAMP-CRP和cAMP-CRP-DNA复合物的晶体结构进行比较,以确定复合物的结构,化学蛋白酶的性质和蛋白质裂解模式之间的相关性。此外,这种比较使我们能够确定溶液中的DNA结合是否诱导了蛋白质的构象变化,这种变化在晶体结构中不明显。在cAMP-CRP-DNA复合物中,在已知的CRP-DNA界面之外均观察到了蛋白水解酶的保护作用和增强作用,这表明CRP在结合DNA后发生构象变化。在观察到的变化中,最有趣的是Bα-螺旋和β链8周围的变化,因为该区域与CRP用于与RNA聚合酶进行蛋白质相互作用的活化区域2重叠。在CRP-CytR相互作用所涉及的区域和CRP亚单位间接触区域也观察到了DNA诱导的变化。这些数据表明,溶液中DNA的结合会诱导CRP的构象变化,这种变化可通过亚基间接触传递至参与与转录机制其他成员相互作用的蛋白质区域。版权所有1999,学术出版社。

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