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Novel N7- and N1- substituted cGMP derivatives are potent activators of cyclic nucleotide-gated channels

机译:新的N7和N1取代的cGMP衍生物是环状核苷酸门控通道的有效激活剂

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摘要

Cyclic nucleotide-gated (CNG) channels, key players in olfactory and visual signal transduction, generate electrical responses to odorant- and light-induced changes in cyclic nucleotide concentration. Previous work suggests that substitutions are tolerated solely at the C8 position on the purine ring of cGMP. Our studies with C8, 2′-OH, and 2-NH2-modified cGMP derivatives support this assertion. To gain further insight into determinants important for CNG channel binding and activation, we targeted previously unexplored positions. Modifications at N7 of 8-SH-cGMP (>6) are well tolerated by olfactory and retinal rod CNG channels. Toleration of a very large substituent, a 3400 MW PEG, at either N7 or C8 argues for broad accommodation at these positions in the binding site. Modification at N1 of cGMP reduces the apparent affinity for the channel, however, when combined with 8-parachlorophenylthio-derivatization, the resulting cGMP analog is more potent than cGMP itself. These studies establish the N7 and N1 positions of cGMP as targets for modification in the design of novel CNG channel agonists.
机译:环状核苷酸门控(CNG)通道是嗅觉和视觉信号转导的关键参与者,会对气味和光诱导的环状核苷酸浓度变化产生电响应。先前的工作表明,仅在cGMP嘌呤环的C8位置可耐受取代。我们对C8、2'-OH和2-NH2修饰的cGMP衍生物的研究支持这一主张。为了进一步了解对于CNG通道绑定和激活很重要的决定因素,我们针对了以前未开发的位置。嗅觉和视网膜棒CNG通道可很好地耐受8-SH-cGMP(> 6 )在N7的修饰。在N7或C8处对非常大的取代基3400 MW PEG的耐受性表明,在结合位点的这些位置具有宽泛的调节能力。 cGMP在N1处的修饰降低了对通道的表观亲和力,但是,当与8-对氯苯硫基衍生化结合使用时,所得cGMP类似物比cGMP本身更有效。这些研究建立了cGMP的N7和N1位置,作为在新型CNG通道激动剂设计中进行修饰的目标。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(50),17
  • 年度 -1
  • 页码 4186–4194
  • 总页数 23
  • 原文格式 PDF
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