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通过蛋白质结合配体的负相互作用增加化学能和渗透自由能。

Addition of chemical and osmotic free energies through negative interaction of protein-bound ligands.

作者信息

Weber G

出版信息

Proc Natl Acad Sci U S A. 1972 Oct;69(10):3000-3. doi: 10.1073/pnas.69.10.3000.

Abstract

Simple free energy considerations show that an effector ligand, Y, bound to a protein can modify the standard free energy change of the reaction P - X + D - R = P - R + D - X, where P is a protein, D - R a small molecule, and X a group in the protein that interacts negatively with Y. By consideration of a three-compartment system containing the protein, an X-acceptor (A - R), an X-donor (D - X), and the ligand Y present at two different concentrations in the inner and outer compartments, it is shown that the protein can perform under steady-state conditions the addition of the free energy in the Y concentration gradient to that of the chemical reaction A - X + D - R = A - R + D - X. This free energy addition can effectively generate a high energy X-donor from a low energy one and may be of importance in metabolism, particularly in the oxidative phosphorylation of ADP.

摘要

简单的自由能考量表明,与蛋白质结合的效应配体Y可改变反应P - X + D - R = P - R + D - X的标准自由能变化,其中P为蛋白质,D - R为小分子,X为蛋白质中与Y发生负性相互作用的基团。通过考量一个包含蛋白质、X受体(A - R)、X供体(D - X)以及在内层和外层隔室中以两种不同浓度存在的配体Y的三室系统,结果表明该蛋白质能够在稳态条件下将Y浓度梯度中的自由能与化学反应A - X + D - R = A - R + D - X的自由能相加。这种自由能相加能够有效地从低能X供体生成高能X供体,并且可能在新陈代谢中具有重要意义,尤其是在ADP的氧化磷酸化过程中。

相似文献

2
Addition of chemical and osmotic energies by ligand-protein interactions.
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Some general principles in free energy transduction.自由能转换中的一些一般原则。
Proc Natl Acad Sci U S A. 1983 May;80(10):2922-5. doi: 10.1073/pnas.80.10.2922.

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