Extreme electric fields power catalysis in the active site of ketosteroid isomerase.

Extreme electric fields power catalysis in the active site of ketosteroid isomerase.
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DOI:
10.1126/science.1259802
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发表时间:
2014-12-19
期刊:
Science (New York, N.Y.)
影响因子:
--
通讯作者:
Boxer SG
Boxer SG
中科院分区:
其他
文献类型:
--
作者:
Fried SD;Bagchi S;Boxer SG

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酶利用蛋白质结构将特定的静电场施加到其结合的底物上,但这些电场的大小和催化作用已被证明难以用标准实验方法量化。利用振动Stark效应光谱,我们发现酮类固醇异构酶(KSI)的活性位点对C=O化学键施加了极大的电场,在KSI的速率决定步骤中发生了电荷重排。此外,我们发现活性位点施加的电场大小与酶的催化速率增强密切相关,这使我们能够量化催化效应中静电产生的部分。这里描述的测量可能有助于解释静电在许多其他酶和生物分子系统中的作用。
Enzymes use protein architecture to impose specific electrostatic fields onto their bound substrates, but the magnitude and catalytic effect of these electric fields have proven difficult to quantify with standard experimental approaches. Using vibrational Stark effect spectroscopy, we found that the active site of the enzyme ketosteroid isomerase (KSI) exerts an extremely large electric field onto the C=O chemical bond that undergoes a charge rearrangement in KSI’s rate-determining step. Moreover, we found that the magnitude of the electric field exerted by the active site strongly correlates with the enzyme’s catalytic rate enhancement, enabling us to quantify the fraction of the catalytic effect that is electrostatic in origin. The measurements described here may help explain the role of electrostatics in many other enzymes and biomolecular systems.