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首页> 外文期刊>Journal of Molecular Biology >LIGAND BINDING TO WILD-TYPE AND E-B13Q MUTANT INSULINS - A THREE-STATE ALLOSTERIC MODEL SYSTEM SHOWING HALF-SITE REACTIVITY
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LIGAND BINDING TO WILD-TYPE AND E-B13Q MUTANT INSULINS - A THREE-STATE ALLOSTERIC MODEL SYSTEM SHOWING HALF-SITE REACTIVITY

机译:配体与野生型和E-B13Q突变型绝缘子的结合-具有半场地反应性的三态变构模型系统

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By using ultra-violet and visible absorbance in conjunction with high field H-1-nuclear magentic resonance spectroscopy, the insulin hexamer has been shown to undergo two allosteric transitions in solution involving three allosteric states (T-6 reversible arrow T-3 R(3) reversible arrow R(6)). A simple mathematical model consisting of four variables has been derived that quantitatively describes the complex homotropic and heterotropic interactions that modulate these allosteric transitions. The mutation of one residue, Glu-B13 to Gin, results in an unexpected change in the T(3)R(3) to R(6) equilibrium by a factor of 10(7). [References: 24]
机译:通过结合使用紫外线和可见光吸收以及高场H-1核磁共振共振光谱学,胰岛素六聚体在溶液中经历了两个变构过渡,涉及三个变构状态(T-6可逆箭头T-3 R( 3)可逆箭头R(6))。已经得出了一个由四个变量组成的简单数学模型,该模型定量描述了调制这些变构转变的复杂的同向和异向相互作用。一个残基,Glu-B13突变为Gin导致T(3)R(3)到R(6)平衡的意外变化,其变化系数为10(7)。 [参考:24]

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