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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Interactions and cooperativity between P-glycoprotein structural domains determined by thermal unfolding provides insights into its solution structure and function
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Interactions and cooperativity between P-glycoprotein structural domains determined by thermal unfolding provides insights into its solution structure and function

机译:热展开测定的p-糖蛋白结构域之间的相互作用和合作,提供了解决方案结构和功能的见解

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Structural changes in mouse P-glycoprotein (Pgp) induced by thermal unfolding were studied by differential scanning calorimetry (DSC), circular dichroism and fluorescence spectroscopy to gain insight into the solution conformation(s) of this ABC transporter that may not be apparent from current crystal structures. DSC of reconstituted Pgp showed two thermal unfolding transitions in the absence of MgATP, suggesting that each transition involved the cooperative unfolding of two or more interacting structural domains. A low calorimetric unfolding enthalpy and minimal structural changes were observed, which are hallmarks of the thermal unfolding of alpha-helical membrane proteins, because generally only the extramembranous regions undergo significant unfolding. Nucleotide binding increased the unfolding temperature of both transitions to the same extent, suggesting that one nucleotide binding domain (NBD) unfolds with each transition. Combined with the results from the two isolated NBDs, we propose that each DSC transition represents the cooperative unfolding of one NBD and the two contacting intracellular loops. Further, the presence of two transitions in both apo and MgATP bound wild-type Pgp suggests the NBD-dimeric conformation is transient, and that Pgp resides predominantly in the crystallographically observed inward-facing conformation with NBD5 separated, even under conditions supporting continuous MgATP hydrolysis. In contrast, DSC of the vanadate-trapped MgADP. Pgp complex and the MgATP-bound catalytically inactive mutant, E552A/E1197A, show an additional transition at much higher temperature, corresponding to the unfolding of the nucleotide-trapped NBD-dimeric outward-facing conformation. The collective results indicate a strong preference for an NBD dissociated, inward-facing conformation of Pgp. (C) 2016 Published by Elsevier B.V.
机译:通过差示扫描量热法(DSC),圆形二色性和荧光光谱法研究了由热展开的小鼠p-糖蛋白(PGP)的结构变化,以获得可能对电流可能不明显的该ABC转运液的溶液构象的洞察水晶结构。重构PGP的DSC显示出在没有MGATP的情况下的两个热展开过渡,表明每个转变都涉及两个或更多个相互作用结构域的协同展开。观察到低热量展开焓和最小的结构变化,这是α-螺旋膜蛋白的热展开的标志,因为通常只有辐射区域经历显着的展开。核苷酸结合在相同程度上增加了两种转变的展开温度,表明一种核苷酸结合结构域(NBD)随着每种转变展开。结合来自两种孤立的NBD的结果,我们提出每个DSC转变代表一个NBD的协同展开和两个接触细胞内环的展开。此外,APO和MgATP结合的野生型PGP中的两种过渡的存在表明Nbd二聚体构象是瞬态的,并且该PGP主要在用Nbd5分离的结晶观察到的对面对的向内构象,即使在支撑连续的MgATP水解的条件下也是如此。相反,钒族捕获的MGADP的DSC。 PGP络合物和MgATP结合的催化失活突变体E552A / E1197A显示出高温的额外转变,对应于核苷酸被捕获的NBD二维的外观外观构象的展开。集体结果表明对PGP的NBD,对PGP的内向构象的强烈偏好。 (c)2016年由Elsevier B.V发布。

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