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Resonance electroconformational coupling: A proposed mechanism for energy and signal transductions by membrane proteins

机译:共振电构象耦合:膜蛋白进行能量和信号转导的机制

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Recent experiments show that membrane ATPases are capable of absorbing free energy from an applied oscillating electric field and converting it to chemical bond energy of ATP or chemical potential energy of concentration gradients. Presumably these enzymes would also respond to endogenous transmembrane electric fields of similar intensity and waveform. A mechanism is proposed in which energy coupling is achieved via Coulombic interaction of an electric field and the conformational equilibria of an ATPase. Analysis indicates that only an oscillating or fluctuating electric field can be used by an enzyme to drive a chemical reaction away from equilibrium. In vivo, the stationary transmembrane potential of a cell must be modulated to become “locally” oscillatory if it is to derive energy and signal transduction processes.
机译:最近的实验表明,膜ATPase能够从施加的振荡电场中吸收自由能,并将其转换为ATP的化学键能或浓度梯度的化学势能。推测这些酶也将对相似强度和波形的内源跨膜电场作出反应。提出了一种机制,其中通过电场的库仑相互作用和ATPase的构象平衡来实现能量耦合。分析表明,酶只能使用振荡或波动的电场来驱动化学反应脱离平衡。在体内,如果要获得能量和信号转导过程,必须将细胞的固定跨膜电位调节为“局部”振荡。

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