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绘制核糖体出口通道内的静电势图。

Mapping the electrostatic potential within the ribosomal exit tunnel.

作者信息

Lu Jianli, Kobertz William R, Deutsch Carol

机构信息

Department of Physiology, University of Pennsylvania, Philadelphia, PA 19104-6085, USA.

出版信息

J Mol Biol. 2007 Aug 31;371(5):1378-91. doi: 10.1016/j.jmb.2007.06.038. Epub 2007 Jun 19.

Abstract

Electrostatic potentials influence interactions among proteins and nucleic acids, the orientation of dipoles and quadrupoles, and the distribution of mobile charges. Consequently, electrostatic potentials can modulate macromolecular folding and conformational stability, as well as rates of catalysis and substrate binding. The ribosomal exit tunnel, along with its resident nascent peptide, is no less susceptible to these consequences. Yet, the electrostatics inside the tunnel have never been measured. Here we map both the electrostatic potential and accessibilities along the length of the tunnel and determine the electrostatic consequences of introducing a charged amino acid into the nascent peptide. To do this we developed novel probes and strategies. Our findings provide new insights regarding the dielectric of the tunnel and the dynamics of its local electric fields.

摘要

静电势影响蛋白质与核酸之间的相互作用、偶极子和四极子的取向以及移动电荷的分布。因此,静电势能够调节大分子折叠和构象稳定性,以及催化和底物结合的速率。核糖体出口通道及其驻留的新生肽同样易受这些影响。然而,通道内部的静电作用从未被测量过。在此,我们绘制了通道长度方向上的静电势和可及性图谱,并确定了向新生肽中引入带电氨基酸的静电效应。为此,我们开发了新的探针和策略。我们的研究结果为通道的介电性质及其局部电场的动力学提供了新的见解。

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