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首页> 外文期刊>Journal of Molecular Biology >Point mutations in membrane proteins reshape energy landscape and populate different unfolding pathways
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Point mutations in membrane proteins reshape energy landscape and populate different unfolding pathways

机译:膜蛋白中的点突变可重塑能量结构并填充不同的展开途径

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摘要

Using single-molecule force spectroscopy, we investigated the effect of single point mutations on the energy landscape and unfolding pathways of the transmembrane protein bacteriorhodopsin. We show that the unfolding energy barriers in the energy landscape of the membrane protein followed a Simple two-state behavior and represent a manifestation of many converging unfolding pathways. Although the unfolding pathways of wildtype and mutant bacteriorhodopsin did not change, indicating the presence of same ensemble of structural unfolding intermediates, the free energies of the rate-limiting transition states of the bacteriorhodopsin mutants decreased as the distance of those transition states to the folded intermediate states decreased. Thus, all mutants exhibited Hammond behavior and a change in the free energies of the intermediates along the unfolding reaction coordinate and, consequently, their relative occupancies. This is the first experimental proof showing that point mutations can reshape the free energy landscape of a membrane protein and force single proteins to populate certain unfolding pathways over others. (C) 2007 Elsevier Ltd. All rights reserved.
机译:使用单分子力谱,我们调查了单点突变对跨膜蛋白细菌视紫红质的能量格局和展开途径的影响。我们表明在膜蛋白的能量格局中的展开能量障碍遵循简单的两个状态的行为,并表示许多收敛的展开途径的体现。尽管野生型和突变细菌视紫红质的展开途径没有改变,表明存在相同的结构展开中间体的集合,但是细菌视紫红质突变体的限速过渡态的自由能随着这些过渡态与折叠中间体的距离而降低状态减少。因此,所有突变体均表现出哈蒙德行为和中间体的自由能沿展开反应坐标的变化,因此,它们的相对占有率也随之变化。这是第一个实验证明,表明点突变可以重塑膜蛋白的自由能态,并迫使单个蛋白在某些展开途径上占据优势。 (C)2007 Elsevier Ltd.保留所有权利。

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