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Subunit-specific inhibition of acid sensing ion channels by stomatin-like protein 1

机译:Stomatin样蛋白1对酸感应离子通道的亚基特异性抑制

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摘要

There are five mammalian stomatin-domain genes, all of which encode peripheral membrane proteins that can modulate ion channel function. Here we examined the ability of stomatin-like protein 1 (STOML1) to modulate the proton-sensitive members of the acid-sensing ion channel (ASIC) family. STOML1 profoundly inhibits ASIC1a, but has no effect on the splice variant ASIC1b. The inactivation time constant of ASIC3 is also accelerated by STOML1. We examined STOML1 null mutant mice with a β-galactosidase-neomycin cassette gene-trap reporter driven from the STOML1 gene locus, which indicated that STOML1 is expressed in at least 50% of dorsal root ganglion (DRG) neurones. Patch clamp recordings from mouse DRG neurones identified a trend for larger proton-gated currents in neurones lacking STOML1, which was due to a contribution of effects upon both transient and sustained currents, at different pH, a finding consistent with an endogenous inhibitory function for STOML1.
机译:有五个哺乳动物的Stomatin域基因,所有这些基因都编码可以调节离子通道功能的外周膜蛋白。在这里,我们检查了抑菌素样蛋白1(STOML1)调节酸敏感离子通道(ASIC)家族的质子敏感成员的能力。 STOML1深刻地抑制了ASIC1a,但对剪接变体ASIC1b没有影响。 STOML1也加快了ASIC3的失活时间常数。我们用从STOML1基因位点驱动的β-半乳糖苷酶-新霉素盒式基因捕获报告基因检查了STOML1空突变小鼠,这表明STOML1在至少50%的背根神经节(DRG)神经元中表达。小鼠DRG神经元的膜片钳记录确定了缺乏STOML1的神经元中较大的质子门控电流的趋势,这是由于在不同pH下对瞬时电流和持续电流都有影响,这一发现与STOML1的内源性抑制功能一致。

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