首页> 美国卫生研究院文献>Taylor Francis Open Select >The role of charged residues in the transmembrane helices of monocarboxylate transporter 1 and its ancillary protein basigin in determining plasma membrane expression and catalytic activity
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The role of charged residues in the transmembrane helices of monocarboxylate transporter 1 and its ancillary protein basigin in determining plasma membrane expression and catalytic activity

机译:单羧酸盐转运蛋白1及其辅助蛋白basisin跨膜螺旋中带电残基在确定质膜表达和催化活性中的作用

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摘要

Monocarboxylate transporters MCT1-MCT4 require basigin (CD147) or embigin (gp70), ancillary proteins with a glutamate residue in their single transmembrane (TM) domain, for plasma membrane (PM) expression and activity. Here we use site-directed mutagenesis and expression in COS cells or Xenopus oocytes to investigate whether this glutamate (Glu218 in basigin) may charge-pair with a positively charged TM-residue of MCT1. Such residues were predicted using a new molecular model of MCT1 based upon the published structure of the E. coli glycerol-3-phosphate transporter. No evidence was obtained for Arg306 (TM 8) of MCT1 and Glu218 of basigin forming a charge-pair; indeed E218Q-basigin could replace WT-basigin, although E218R-basigin was inactive. No PM expression of R306E-MCT1 or D302R-MCT1 was observed but D302R/R306D-MCT1 reached the PM, as did R306K-MCT1. However, both were catalytically inactive suggesting that Arg306 and Asp302 form a charge-pair in either orientation, but their precise geometry is essential for catalytic activity. Mutation of Arg86 to Glu or Gln within TM3 of MCT1 had no effect on plasma membrane expression or activity of MCT1. However, unlike WT-MCT1, these mutants enabled expression of E218R-basigin at the plasma membrane of COS cells. We propose that TM3 of MCT1 lies alongside the TM of basigin with Arg86 adjacent to Glu218 of basigin. Only when both these residues are positively charged (E218R-basigin with WT-MCT1) is this interaction prevented; all other residue pairings at these positions may be accommodated by charge-pairing or stabilization of unionized residues through hydrogen bonding or local distortion of the helical structure.
机译:单羧酸盐转运蛋白MCT1-MCT4需要basigin(CD147)或embigin(gp70),即在其单个跨膜(TM)域中带有谷氨酸残基的辅助蛋白,才能实现质膜(PM)的表达和活性。在这里,我们使用定点诱变和在COS细胞或非洲爪蟾卵母细胞中的表达来研究这种谷氨酸盐(basigin中的Glu218)是否可以与MCT1带正电荷的TM残基进行电荷配对。基于公开的大肠杆菌甘油3-磷酸转运蛋白的结构,使用MCT1的新分子模型预测了此类残基。没有证据表明MCT1的Arg306(TM 8)和basigin的Glu218形成了电荷对。尽管E218R-basigin处于非活动状态,但E218Q-basigin确实可以替代WT-basigin。没有观察到R306E-MCT1或D302R-MCT1的PM表达,但D302R / R306D-MCT1达到了PM,R306K-MCT1也是如此。但是,两者均无催化活性,这表明Arg306和Asp302在任一方向上均形成电荷对,但它们的精确几何形状对于催化活性至关重要。 MCT1的TM3内Arg86突变为Glu或Gln对MCT1的质膜表达或活性没有影响。但是,与WT-MCT1不同,这些突变体使E218R-basigin能够在COS细胞的质膜上表达。我们建议MCT1的TM3与basinin的TM并排排列,Arg86与basigin的Glu218相邻。仅当这两个残基都带正电时(带有WT-MCT1的E218R-basigin)才可以防止这种相互作用;这些位置上的所有其他残基对可通过氢键或螺旋结构的局部变形通过电荷配对或使工会化残基稳定化来容纳。

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