Bello Martiniano
Laboratorio de Modelado Molecular, Bioinformática y Diseño de Fármacos de la Escuela Superior de Medicina, Instituto Politécnico Nacional, Mexico City, Mexico.
J Biomol Struct Dyn. 2022 Apr;40(7):3011-3023. doi: 10.1080/07391102.2020.1844062. Epub 2020 Nov 6.
X-ray analysis has provided structural data about a pH-driven conformational change in β-lactoglobulin (BLG) known as the Tanford transition, which occurs at around pH 7 and involves the EF loop, which acts as a lid closing the internal cavity of the protein below pH 7 and opening it above pH 7. NMR studies using wild-type BLG have encountered problems trying to explain the Tanford transition, however, they have provided important insight using a dimeric BLG mutant, revealing that the opening and closure of the EF loop consists of two types of motions in the microsecond and milliseconds timescales. This provides valuable information indicating that the dimeric state is a good model to study the Tanford transition, although the understanding of this structural change is still lacking at the atomic level. We performed microsecond molecular dynamics (MD) simulations starting from different conformations of BLG in the monomeric and dimeric state, with protonated and deprotonated E89, in order to explore the Tanford transition. Our results provide structural information for the transition from the closed to the open conformation in BLG and show it occurs in the dimeric state in the microsecond timescale, in line with the fast motion observed through NMR experiments. In addition, MD simulations coupled to MMGBSA approach indicated that the most populated conformer of BLG in the open state is able to bind ligands with similar affinity to that of BLG at neutral pH obtained through crystallographic experiments.Communicated by Ramaswamy H. Sarma.
X射线分析提供了有关β-乳球蛋白(BLG)中一种由pH驱动的构象变化的结构数据,这种变化被称为坦福德转变,它发生在pH约为7时,涉及EF环。在pH低于7时,EF环充当盖子关闭蛋白质的内部腔体,而在pH高于7时则打开。然而,使用野生型BLG的核磁共振研究在试图解释坦福德转变时遇到了问题,不过,他们通过一个二聚体BLG突变体提供了重要的见解,揭示了EF环的打开和关闭由微秒和毫秒时间尺度上的两种运动组成。这提供了有价值的信息,表明二聚体状态是研究坦福德转变的一个良好模型,尽管在原子水平上对这种结构变化仍缺乏了解。我们从单体和二聚体状态下BLG的不同构象出发,对质子化和去质子化的E89进行了微秒级分子动力学(MD)模拟,以探索坦福德转变。我们的结果为BLG从关闭构象到开放构象的转变提供了结构信息,并表明它在微秒时间尺度上发生在二聚体状态,这与通过核磁共振实验观察到的快速运动一致。此外,结合MMGBSA方法的MD模拟表明,开放状态下BLG最丰富的构象异构体能够以与通过晶体学实验获得的中性pH下的BLG相似的亲和力结合配体。由拉马斯瓦米·H·萨尔马传达。