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首页> 外文期刊>The Journal of general physiology >Identification of channel-lining residues in the M2 membrane-spanning segment of the GABA(A) receptor alpha1 subunit.
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Identification of channel-lining residues in the M2 membrane-spanning segment of the GABA(A) receptor alpha1 subunit.

机译:在GABA(A)受体alpha1亚基的M2跨膜片段中识别通道衬里的残基。

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The gamma-aminobutyric acid type A (GABA(A)) receptors are the major inhibitory, postsynaptic, neurotransmitter receptors in the central nervous system. The binding of gamma-aminobutyric acid (GABA) to the GABA(A) receptors induces the opening of an anion-selective channel that remains open for tens of milliseconds before it closes. To understand how the structure of the GABA(A) receptor determines the functional properties such as ion conduction, ion selectivity and gating we sought to identify the amino acid residues that line the ion conducting channel. To accomplish this we mutated 26 consecutive residues (250-275), one at a time, in and flanking the M2 membrane-spanning segment of the rat alpha1 subunit to cysteine. We expressed the mutant alpha1 subunit with wild-type beta1 and gamma2 subunits in Xenopus oocytes. We probed the accessibility of the engineered cysteine to covalent modification by charged, sulfhydryl-specific reagents added extracellularly. We assume that among residues in membrane-spanning segments, only those lining the channel would be susceptible to modification by polar reagents and that such modification would irreversibly alter conduction through the channel. We infer that nine of the residues, alpha1 Val257, alpha1 Thr26l, alpha1 Thr262, alpha1 Leu264, alpha1 Thr265, alpha1 Thr268, alpha1 Ile27l, alpha1 Ser272 and alpha1 Asn275 are exposed in the channel. On a helical wheel plot, the exposed residues, except alpha1 Thr262, lie on one side of the helix in an arc of 120 degrees. We infer that the M2 segment forms an alpha helix that is interrupted in the region of alpha1 Thr262. The modification of residues as cytoplasmic as alpha1 Val257 in the closed state of the channel suggests that the gate is at least as cytoplasmic as alpha1 Val257. The ability of the positively charged reagent methanethiosulfonate ethylammonium to reach the level of alpha1 Thr261 suggests that the charge-selectivity filter is at least as cytoplasmic as this residue.
机译:γ-氨基丁酸A型(GABA(A))受体是中枢神经系统中主要的抑制性突触后神经递质受体。 γ-氨基丁酸(GABA)与GABA(A)受体的结合诱导了一个阴离子选择性通道的打开,该通道在关闭前会保持打开状态数十毫秒。为了了解GABA(A)受体的结构如何确定功能性质,例如离子传导,离子选择性和门控,我们试图确定排在离子传导通道上的氨基酸残基。为此,我们将大鼠alpha1亚基的M2跨膜片段侧翼突变为半胱氨酸,一次突变了26个连续残基(250-275)。我们在非洲爪蟾卵母细胞中表达了具有野生型beta1和gamma2亚基的突变体alpha1亚基。我们探讨了通过细胞外添加带电荷的巯基特异性试剂对工程半胱氨酸进行共价修饰的可及性。我们假设在跨膜片段中的残基中,只有那些衬在通道中的残基才容易受到极性试剂的修饰,并且这种修饰将不可逆地改变通过通道的传导。我们推断,通道中暴露了9个残基,即alpha1 Val257,alpha1 Thr26l,alpha1 Thr262,alpha1 Leu264,alpha1 Thr265,alpha1 Thr268,alpha1 Ile27l,alpha1 Ser272和alpha1 Asn275。在螺旋轮图上,除alpha1 Thr262以外,所有暴露的残基均以120度弧线位于螺旋的一侧。我们推断,M2段形成一个在alpha1 Thr262区域内中断的alpha螺旋。在通道关闭状态下胞质的残基修饰为alpha1 Val257,这表明该门至少与alpha1 Val257胞质相同。带正电荷的试剂甲硫代磺酸盐乙铵达到α1Thr261水平的能力表明,电荷选择性过滤器的胞质至少与此残基一样。

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