Kandt Christian, Xu Zhitao, Tieleman D Peter
Department of Biological Sciences, University of Calgary, 2500 University Drive NW, Calgary, Alberta T2N 1N4, Canada.
Biochemistry. 2006 Nov 7;45(44):13284-92. doi: 10.1021/bi061280j.
BtuF is the periplasmic binding protein (PBP) in the vitamin B(12) uptake system in Escherichia coli where it is associated with the ABC transporter BtuCD. When the ligand binds, PBPs generally display large conformational changes, commonly termed the Venus flytrap mechanism. BtuF belongs to a group of PBPs that, on the basis of crystal structures, does not appear to display such behavior. Using 480 ns multicopy molecular dynamics simulations of apo and holo forms of the protein, we investigate the dynamics of BtuF. We find BtuF to be more flexible than previously assumed, displaying clear opening and closing motions which are more pronounced in the apo form. The protein behavior is compatible with a PBP functional model that postulates a closed conformation for the ligand-bound state, whereas the empty form fluctuates between open and closed conformations. Elastic network normal-mode analysis suggests that all BtuF-like PBPs are capable of similar opening and closing motions. It also makes the typical Venus flytrap domain motions a likely common means of how PBP-ABC transporter interaction could occur.
BtuF是大肠杆菌维生素B12摄取系统中的周质结合蛋白(PBP),它与ABC转运蛋白BtuCD相关联。当配体结合时,PBP通常会发生较大的构象变化,通常称为捕蝇草机制。基于晶体结构,BtuF属于一类似乎不会表现出这种行为的PBP。通过对该蛋白的无配体和结合配体形式进行480纳秒的多拷贝分子动力学模拟,我们研究了BtuF的动力学。我们发现BtuF比之前设想的更具灵活性,表现出明显的打开和关闭运动,这在无配体形式中更为明显。该蛋白的行为与一种PBP功能模型相符,该模型假定配体结合状态为封闭构象,而空载形式在开放和封闭构象之间波动。弹性网络正常模式分析表明,所有类似BtuF的PBP都能够进行类似的打开和关闭运动。这也使得典型的捕蝇草结构域运动成为PBP-ABC转运蛋白相互作用可能发生的一种常见方式。