论文标题

蛋白质结构的基础 - 物理符合生物学

Building blocks of protein structures -- Physics meets Biology

论文作者

Škrbić, Tatjana, Maritan, Amos, Giacometti, Achille, Rose, George D., Banavar, Jayanth R.

论文摘要

球状蛋白的天然状态结构是稳定的,并且充满了包装,表明在折叠条件下,自我互动比蛋白质 - 溶剂相互作用受到青睐。我们将其用作指导原理来得出蛋白质结构,α-螺旋和链的几何形状组成的β片,没有可调节的参数,没有氨基酸序列信息,也没有化学。数学和物理学的决定与量子化学规则之间几乎是完美的。我们的理论建立了一种能量格局,该景观通过为详细依赖序列依赖性功能多样性提供独立的序列平台来引导蛋白质的演变。我们的工作强调了离散性在生活中的至关重要作用,并对人工生命的创造以及宇宙中其他地方的生活本质具有影响。

The native state structures of globular proteins are stable and well-packed indicating that self-interactions are favored over protein-solvent interactions under folding conditions. We use this as a guiding principle to derive the geometry of the building blocks of protein structures, alpha-helices and strands assembled into beta-sheets, with no adjustable parameters, no amino acid sequence information, and no chemistry. There is an almost perfect fit between the dictates of mathematics and physics and the rules of quantum chemistry. Our theory establishes an energy landscape that channels protein evolution by providing sequence-independent platforms for elaborating sequence-dependent functional diversity. Our work highlights the vital role of discreteness in life and has implications for the creation of artificial life and on the nature of life elsewhere in the cosmos.

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