首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Conformational Motions and Functionally Key Residues for Vitamin B12 Transporter BtuCD–BtuF Revealed by Elastic Network Model with a Function-Related Internal Coordinate
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Conformational Motions and Functionally Key Residues for Vitamin B12 Transporter BtuCD–BtuF Revealed by Elastic Network Model with a Function-Related Internal Coordinate

机译:带有功能相关内部坐标的弹性网络模型揭示维生素B12转运蛋白BtuCD–BtuF的构象运动和功能关键残基

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摘要

BtuCD–BtuF from Escherichia coli is a binding protein-dependent adenosine triphosphate (ATP)-binding cassette (ABC) transporter system that uses the energy of ATP hydrolysis to transmit vitamin B12 across cellular membranes. Experimental studies have showed that during the transport cycle, the transporter undergoes conformational transitions between the “inward-facing” and “outward-facing” states, which results in the open–closed motions of the cytoplasmic gate of the transport channel. The opening–closing of the channel gate play critical roles for the function of the transporter, which enables the substrate vitamin B12 to be translocated into the cell. In the present work, the extent of opening of the cytoplasmic gate was chosen as a function-related internal coordinate. Then the mean-square fluctuation of the internal coordinate, as well as the cross-correlation between the displacement of the internal coordinate and the movement of each residue in the protein, were calculated based on the normal mode analysis of the elastic network model to analyze the function-related motions encoded in the structure of the system. In addition, the key residues important for the functional motions of the transporter were predicted by using a perturbation method. In order to facilitate the calculations, the internal coordinate was introduced as one of the axes of the coordinate space and the conventional Cartesian coordinate space was transformed into the internal/Cartesian space with linear approximation. All the calculations were carried out in this internal/Cartesian space. Our method can successfully identify the functional motions and key residues for the transporter BtuCD–BtuF, which are well consistent with the experimental observations.
机译:大肠杆菌的BtuCD–BtuF是一种结合蛋白依赖性三磷酸腺苷(ATP)结合盒(ABC)转运蛋白系统,利用ATP水解的能量在细胞膜上传递维生素B12。实验研究表明,在转运周期中,转运蛋白在“向内”和“向外”状态之间经历构象转变,这导致了转运通道的细胞质门的开闭运动。通道门的开/关对于转运蛋白的功能起着至关重要的作用,转运蛋白使底物维生素B12能够转运到细胞中。在目前的工作中,细胞质门的开放程度被选为功能相关的内部坐标。然后,基于弹性网络模型的正态分析,计算出内部坐标的均方差,以及内部坐标的位移与蛋白质中每个残基的运动之间的互相关,以进行分析。系统结构中编码的与功能有关的运动。另外,通过使用扰动方法预测了对于转运蛋白的功能运动重要的关键残基。为了方便计算,引入了内部坐标作为坐标空间的轴之一,并且将传统的笛卡尔坐标空间通过线性近似转换为内部/笛卡尔空间。所有计算都在此内部/笛卡尔空间中进行。我们的方法可以成功地识别转运蛋白BtuCD–BtuF的功能运动和关键残基,与实验观察结果非常一致。

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