论文标题
蛋白质周围的水动力学:血红蛋白和蜂素的T-和R园
Water Dynamics Around Proteins: T- and R-States of Hemoglobin and Melittin
论文作者
论文摘要
研究了以局部疏水性(LH)为特征的水动力学,用于四聚体血红蛋白和二聚体蜂胶素。对于Hb中的T0至R0转变,发现LH提供了对佩鲁茨机制的额外分子水平洞察力,即,在alpha1 / beta2和alpha2 / beta1界面上,盐桥的破裂和形成与LH的变化相伴。对于具有90个Aengstroem和120 Aengstroem边缘长度的立方水箱中的HB,观察到,由于水密度降低或蛋白质 /水接口处的水取向的变化,LH降低了α / beta界面的变化。这是Perutz立体化学模型的标志,用于HB中的r转变。因此,目前的工作提供了与HB功能的分子基础相关的经典结构模型的动态视图。对于二聚体蜂素,Cheng and Rossky的早期结果(自然,1998,392,696-699)被确认并根据LH从蛋白质结构冷冻的模拟中进行了解释。对于柔性蜂素二聚体,局部水合的变化可能比刚性二聚体的变化高达30%,这反映了蛋白质和水力动力学的耦合事实。
The water dynamics, as characterized by the local hydrophobicity (LH), is investigated for tetrameric hemoglobin and dimeric melittin. For the T0 to R0 transition in Hb it is found that LH provides additional molecular-level insight into the Perutz mechanism, i.e., the breaking and formation of salt bridges at the alpha1 / beta2 and alpha2 / beta1 interface is accompanied by changes in LH. For Hb in cubic water boxes with 90 Aengstroem and 120 Aengstroem edge length it is observed that following a decrease in LH as a consequence of reduced water density or change of water orientation at the protein/water interface the alpha / beta interfaces are destabilized; this is a hallmark of the Perutz stereochemical model for the T to R transition in Hb. The present work thus provides a dynamical view of the classical structural model relevant to the molecular foundations of Hb function. For dimeric melittin, earlier results by Cheng and Rossky (Nature, 1998, 392, 696-699) are confirmed and interpreted on the basis of LH from simulations in which the protein structure is frozen. For the flexible melittin dimer the changes in the local hydration can be as much as 30 % than for the rigid dimer, reflecting the fact that protein and water dynamics are coupled.