首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >A residue in the TRPM2 channel outer pore is crucial in determining species-dependent sensitivity to extracellular acidic pH.
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A residue in the TRPM2 channel outer pore is crucial in determining species-dependent sensitivity to extracellular acidic pH.

机译:TRPM2通道外孔中的残基对于确定物种对细胞外酸性pH的敏感性至关重要。

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Acidic pH is an important parameter regulating ion channel activity and its biological function. This study investigated inhibition of the hTRPM2 channels by extracellular acidic pH and compared the sensitivity of human (h) and mouse (m) TRPM2 channel to such an inhibition. The initial inhibition of hTRPM2 channel currents was substantially reversible, but the reversibility progressively diminished as the exposure to acidic pH was prolonged and it was essentially lost in the steady state, suggesting that extracellular acidic pH induces initial reversible inhibition and subsequent irreversible inactivation. Like the hTRPM2 channel, the mTRPM2 channel was sensitive to inhibition by pH 4.0-5.5, but the kinetics was significantly slower. Moreover, in contrast to the complete inhibition of the hTRPM2 channel, the mTRPM2 channel was insensitive to pH 6.0. Replacement of residue Gln(992) in the outer pore with the equivalent residue His(995) in the hTRPM2 channel resulted in a mutant mTRPM2 channel with the pH sensitivity and kinetics of inhibition of the wild-type hTRPM2 channel. Conversely, the reciprocal mutation H995Q in the hTRPM2 channel dramatically slowed down the kinetics of inhibition. Swapping other residues in the pore region failed to produce such opposing effects. Taken together, our results suggest a crucial role of residue His(995)/Gln(992) in the outer pore of TRPM2 channels in determining species-dependent effects of extracellular acidic pH.
机译:酸性pH是调节离子通道活性及其生物学功能的重要参数。这项研究调查了细胞外酸性pH对hTRPM2通道的抑制作用,并比较了人(h)和小鼠(m)TRPM2通道对该抑制的敏感性。最初对hTRPM2通道电流的抑制作用基本上是可逆的,但随着暴露于酸性pH的时间延长,可逆性逐渐减弱,并且在稳定状态下基本上丧失了,这表明细胞外酸性pH诱导了最初的可逆抑制和随后的不可逆失活。像hTRPM2通道一样,mTRPM2通道对pH 4.0-5.5的抑制也很敏感,但动力学明显较慢。此外,与完全抑制hTRPM2通道相反,mTRPM2通道对pH 6.0不敏感。 hTRPM2通道中的等效残基His(995)取代了外孔中的Gln(992)残基,导致突变的mTRPM2通道具有pH敏感性和抑制野生型hTRPM2通道的动力学。相反,hTRPM2通道中的相互突变H995Q大大减慢了抑制动力学。在孔区域中交换其他残基无法产生这种相反的效果。两者合计,我们的结果表明,残基His(995)/ Gln(992)在TRPM2通道外孔中在确定细胞外酸性pH的物种依赖性影响中起着至关重要的作用。

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