首页> 美国卫生研究院文献>The Journal of General Physiology >Efficient Coupling of Ligand Binding to Channel Opening by the Binding Domain of a Modulatory (β) Subunit of the Olfactory Cyclic Nucleotide-Gated Channel
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Efficient Coupling of Ligand Binding to Channel Opening by the Binding Domain of a Modulatory (β) Subunit of the Olfactory Cyclic Nucleotide-Gated Channel

机译:嗅觉环核苷酸门控通道的调节性(β)亚基的结合域的配体结合到通道开放的有效耦合。

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摘要

CNG channels in vivo are heteromers of homologous α and β subunits that each contain a six-transmembrane segment domain and a COOH-terminal cytoplasmic cyclic nucleotide binding domain (BD). In heterologous expression systems, heteromeric αβ channels activate with greater sensitivity to ligand than do homomeric α channels; however, ligand-gating of channels containing only β subunit BDs has never been studied because β subunits cannot form functional homomeric CNG channels. To characterize directly the contribution of the β subunit BD to ligand-gating, we constructed a chimeric subunit, X-β, whose BD sequence was that of the β subunit CNG5 from rat, but whose sequence outside the BD was derived from α subunits. For comparison, we constructed another chimera, X-α, whose sequence outside the BD was identical to that of X-β, but whose BD sequence was that of the α subunit CNG2 from catfish. When expressed in Xenopus oocytes, X-β and X-α each formed functional homomeric channels activated by both cAMP and cGMP. This is the first demonstration that the β subunit BD can couple ligand binding to activation in the absence of α subunit BD residues. Notably, both agonists activate X-β more effectively than X-α (higher opening efficacy and lower K1/2). The BD is believed to comprise two functionally distinct subdomains: (1) the roll subdomain (β-roll and flanking A- and B-helices) and (2) the C-helix subdomain. Opening efficacy was previously believed to be controlled primarily by the C-helix, but when we made additional chimeras by exchanging the subdomains between X-β and X-α, we found that both subdomains contain significant determinants of efficacy and agonist selectivity. In particular, only channels containing the roll subdomain of the β subunit had high efficacy. Thermodynamic linkage analysis shows that interaction between the two subdomains accounts for a significant portion of their contribution to activation energetics.
机译:体内的CNG通道是同源α和β亚基的异聚体,每个亚基都包含一个六跨膜片段结构域和一个COOH末端胞质环核苷酸结合域(BD)。在异源表达系统中,异源αβ通道对配体的激活比同质α通道更高。然而,从未研究过仅包含β亚基BDs的通道的配体门控,因为β亚基不能形成功能性同源CNG通道。为了直接表征β亚基BD对配体门控的贡献,我们构建了一个嵌合亚基X-β,其BD序列为大鼠β亚基CNG5的BD序列,但其BD外的序列则源自α亚基。为了进行比较,我们构建了另一种嵌合体X-α,其在BD外部的序列与X-β相同,但其BD序列与fish鱼的α亚基CNG2相同。当在非洲爪蟾卵母细胞中表达时,X-β和X-α各自形成被cAMP和cGMP激活的功能同源通道。这是第一个证明,在不存在α亚基BD残基的情况下,β亚基BD可将配体结合与激活偶联。值得注意的是,两种激动剂都比X-α更有效地激活X-β(较高的开放效力和较低的K1 / 2)。 BD被认为包括两个功能上不同的亚结构域:(1)侧倾亚结构域(β-侧倾和侧翼的A和B螺旋)和(2)C-螺旋亚结构域。以前认为开放效果主要由C螺旋控制,但是当我们通过在X-β和X-α之间交换子域进行其他嵌合时,我们发现这两个子域都包含功效和激动剂选择性的重要决定因素。特别地,仅包含β亚基的roll亚结构域的通道具有高功效。热力学连锁分析表明,两个子域之间的相互作用占其对活化能的贡献的很大一部分。

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