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首页> 外文期刊>Biochemistry >ALTERED LIGAND SPECIFICITY BY PROTONATION IN THE LIGAND BINDING DOMAIN OF CYCLIC NUCLEOTIDE-GATED CHANNELS
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ALTERED LIGAND SPECIFICITY BY PROTONATION IN THE LIGAND BINDING DOMAIN OF CYCLIC NUCLEOTIDE-GATED CHANNELS

机译:环状核苷酸门的配体结合域中质子的改变配体比

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Cyclic nucleotide-gated (CNG) ion channels are the critical mediators between the second messengers of sensory transduction and the cell's membrane potential. The photoreceptor CNG channels are activated by the direct binding of cGMP but can also be activated to a much lesser extent by cAMP. In rod CNG channels expressed in Xenopus oocytes, we demonstrate two types of potentiation by protons. One type potentiated cGMP-bound and cAMP-bound channels to the same extent, while another potentiated only cAMP-bound channels. Both types of potentiation could be described by a mechanism in which protons bound primarily to the channel open configuration. The potentiation specific to cAMP-bound channels could be accounted for by protonation of aspartic acid 604 (D604). It is the unfavorable electrostatic interaction between the carboxylate of D604 and the purine ring of cAMP that accounts for the normally poor activation of the channels by cAMP. Protonation at this site removed the unfavorable interaction and allowed cAMP to act as nearly a full agonist. Protonation of a second amino acid, H468, contributed to the nucleotide-nonspecific potentiation and is likely to be an element of the channel gating assembly. Protons potentiate native rod channels less than channels formed from subunit 1. In heteromultimeric channels formed by coexpressing subunit 1 with subunit 2, we found a similar attenuation of potentiation. The absence of protonatable amino acids in subunit 2 at positions corresponding to H468 and D604 can explain the reduced effects of pH on native channels.
机译:环状核苷酸门控(CNG)离子通道是感觉转导的第二信使和细胞膜电位之间的关键介体。感光器CNG通道通过cGMP的直接结合被激活,但也可以被cAMP激活的程度较小。在非洲爪蟾卵母细胞中表达的杆CNG通道中,我们证明了质子增强的两种类型。一种类型增强了cGMP绑定通道和cAMP绑定通道,而另一种类型仅增强了cAMP绑定通道。两种类型的增强作用都可以通过一种机制来描述,在该机制中,质子主要与通道开放构型结合。特异于cAMP结合通道的增强作用可以通过天冬氨酸604(D604)的质子化来解决。 D604的羧酸盐与cAMP的嘌呤环之间不利的静电相互作用解释了cAMP通常对通道的激活不良。该位点的质子化消除了不利的相互作用,并使cAMP几乎充当了完全的激动剂。第二个氨基酸H468的质子化有助于核苷酸非特异性增强,并且很可能是通道门控组件的一个元素。质子增强的天然杆通道少于由亚基1形成的通道。在共表达亚基1和亚基2形成的异源多聚体通道中,我们发现了类似的增强作用。在亚基2中与H468和D604相对应的位置没有质子化氨基酸,可以解释pH值对天然通道的影响降低。

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