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镁离子(Mg²⁺)如何影响无水四环素在四环素阻遏蛋白(TetR蛋白)中的结合?

How does Mg(2+) affect the binding of anhydrotetracycline in the TetR protein?

作者信息

Leypold Clemens F, Marian Dan-Thomas, Roman Ciprian, Schneider Siegfried, Schubert Peter, Scholz Oliver, Hillen Wolfgang, Clark Timothy, Lanig Harald

机构信息

Institut für Physikalische und Theiretische Chemie, Universität Erlangen-Nürnberg, Erlangen, Germany.

出版信息

Photochem Photobiol Sci. 2004 Jan;3(1):109-19. doi: 10.1039/b303431n.

Abstract

The binding of anhydrotetracycline (atc) in wild-type TetR(D), TetR(B), and four single tryptophan mutants of TetR(B) was investigated by UV/vis absorption, steady state, and time-resolved fluorescence spectroscopy. From absorption titration experiments with Mg2+, we conclude that binding of one [atc-Mg]+ complex in the homodimer causes changes in the protein conformation around the second binding pocket. In the presence of absence of Mg2+, several different groups of atc-protein arrangements must exist, each with a characteristic atc fluorescence decay time. Taking into account the results of molecular dynamics (MD) simulations, we propose as one possible origin for such a differentiation teh extent of hydrogen bonding between atc and the surrounding amino acids. Binding of Mg2+ should change the arrangement of the surrounding amino acids such that some of the excited atc molecules do not undergo the relaxation process typical for free atc. The MD simulations also show that the pattern of intra- and intermolecular hydrogen bonding in the two monomeric units is no correlated, thereby leading to different fluorescence kinetics for atc in the two monomeric units. Furthermore, it is suggested that hydrogen bonding between Arg104 and O10 of anhydrotetracycline could regulate the relaxation processes of excited anhydrotetracycline.

摘要

通过紫外/可见吸收光谱、稳态荧光光谱和时间分辨荧光光谱研究了脱水四环素(atc)在野生型TetR(D)、TetR(B)以及TetR(B)的四个单色氨酸突变体中的结合情况。通过Mg2+的吸收滴定实验,我们得出结论:同型二聚体中一个[atc-Mg]+复合物的结合会导致第二个结合口袋周围蛋白质构象的变化。在有或没有Mg2+的情况下,必须存在几组不同的atc-蛋白质排列方式,每组都有其特有的atc荧光衰减时间。考虑到分子动力学(MD)模拟的结果,我们提出atc与周围氨基酸之间氢键的程度是造成这种差异的一个可能原因。Mg2+的结合应该会改变周围氨基酸的排列,使得一些被激发的atc分子不会经历游离atc典型的弛豫过程。MD模拟还表明,两个单体单元内和分子间氢键的模式不相关,从而导致两个单体单元中atc的荧光动力学不同。此外,有人认为,精氨酸104与脱水四环素的O10之间的氢键可以调节被激发的脱水四环素的弛豫过程。

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