Zhang Hansi, Pluhackova Kristyna, Jiang Zhenyan, Böckmann Rainer A
Computational Biology, Department of Biology, Friedrich-Alexander Universität Erlangen-Nürnberg, Erlangen, 91058, Germany.
Sci Rep. 2016 Aug 1;6:30655. doi: 10.1038/srep30655.
Sphingosine-1-phosphate (S1P) is a lysophospholipid mediator carried by the HDL-associated apoM protein in blood, regulating many physiological processes by activating the G protein-coupled S1P receptor in mammals. Despite the solved crystal structure of the apoM-S1P complex, the mechanism of S1P release from apoM as a part of the S1P pathway is unknown. Here, the dynamics of the wild type apoM-S1P complex as well as of mutants were investigated by means of atomistic molecular dynamics simulations. The potential of mean force for S1P unbinding from apoM reflected a large binding strength of more than 60 kJ/mol. This high unbinding free energy for S1P underlines the observed specificity of the physiological effects of S1P as it suggests that the spontaneous release of S1P from apoM is unlikely. Instead, S1P release and thus the control of this bioactive lipid probably requires the tight interaction with other molecules, e.g. with the S1P receptor. Mutations of specific S1P anchoring residues of apoM decreased the energetic barrier by up to 20 kJ/mol. Moreover, the ligand-free apoM protein is shown to adopt a more open upper hydrophilic binding pocket and to result in complete closure of the lower hydrophobic cavity, suggesting a mechanism for adjusting the gate for ligand access.
鞘氨醇-1-磷酸(S1P)是一种溶血磷脂介质,由血液中与高密度脂蛋白(HDL)相关的载脂蛋白M(apoM)携带,通过激活哺乳动物中的G蛋白偶联S1P受体来调节许多生理过程。尽管已解析出apoM-S1P复合物的晶体结构,但作为S1P途径一部分的S1P从apoM释放的机制尚不清楚。在此,通过原子分子动力学模拟研究了野生型apoM-S1P复合物以及突变体的动力学。S1P从apoM解离的平均力势反映出超过60 kJ/mol的大结合强度。S1P这种高解离自由能强调了所观察到的S1P生理效应的特异性,因为这表明S1P从apoM自发释放不太可能。相反,S1P的释放以及这种生物活性脂质的控制可能需要与其他分子紧密相互作用,例如与S1P受体相互作用。apoM特定S1P锚定残基的突变使能量屏障降低了高达20 kJ/mol。此外,无配体的apoM蛋白显示出具有更开放的上部亲水结合口袋,并导致下部疏水腔完全封闭,这表明存在一种调节配体进入通道的机制。