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Stimulation of Inositol 1,4,5-Trisphosphate (IP3) Receptor Subtypes by Adenophostin A and Its Analogues

机译:腺苷A及其类似物刺激肌醇1,4,5-三磷酸(IP3)受体亚型

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摘要

Inositol 1,4,5-trisphosphate receptors (IP3R) are intracellular Ca2+ channels. Most animal cells express mixtures of the three IP3R subtypes encoded by vertebrate genomes. Adenophostin A (AdA) is the most potent naturally occurring agonist of IP3R and it shares with IP3 the essential features of all IP3R agonists, namely structures equivalent to the 4,5-bisphosphate and 6-hydroxyl of IP3. The two essential phosphate groups contribute to closure of the clam-like IP3-binding core (IBC), and thereby IP3R activation, by binding to each of its sides (the α- and β-domains). Regulation of the three subtypes of IP3R by AdA and its analogues has not been examined in cells expressing defined homogenous populations of IP3R. We measured Ca2+ release evoked by synthetic adenophostin A (AdA) and its analogues in permeabilized DT40 cells devoid of native IP3R and stably expressing single subtypes of mammalian IP3R. The determinants of high-affinity binding of AdA and its analogues were indistinguishable for each IP3R subtype. The results are consistent with a cation-π interaction between the adenine of AdA and a conserved arginine within the IBC α-domain contributing to closure of the IBC. The two complementary contacts between AdA and the α-domain (cation-π interaction and 3″-phosphate) allow activation of IP3R by an analogue of AdA (3″-dephospho-AdA) that lacks a phosphate group equivalent to the essential 5-phosphate of IP3. These data provide the first structure-activity analyses of key AdA analogues using homogenous populations of all mammalian IP3R subtypes. They demonstrate that differences in the Ca2+ signals evoked by AdA analogues are unlikely to be due to selective regulation of IP3R subtypes.
机译:肌醇1,4,5-三磷酸酯(IP3R)是细胞内Ca 2 + 通道。大多数动物细胞表达脊椎动物基因组编码的三种IP3R亚型的混合物。腺苷A(AdA)是IP3R最有效的天然激动剂,它与IP3共享所有IP3R激动剂的基本特征,即等同于IP3的4,5-双磷酸酯和6-羟基的结构。两个必需的磷酸基团通过与蛤的IP3结合核(α-和β-结构域)的每一侧结合,有助于封闭蛤状IP3结合核心(IBC),从而激活IP3R活化。在表达确定的IP3R同源种群的细胞中,尚未检查过AdA及其类似物对IP3R三种亚型的调节。我们在缺乏天然IP3R且稳定表达哺乳动物IP3R的单个亚型的透化DT40细胞中测量了合成腺苷A(AdA)及其类似物引起的Ca 2 + 释放。对于每种IP3R亚型,AdA及其类似物的高亲和力结合的决定因素是无法区分的。结果与AdA的腺嘌呤和IBCα结构域内的保守精氨酸之间的阳离子-π相互作用相一致,这有助于IBC的封闭。 AdA和α结构域之间的两个互补接触(阳离子-π相互作用和3“-磷酸)可通过AdA的类似物(3”-脱磷酸-AdA)激活IP3R,该类似物的磷酸基团与必需的5- IP3的磷酸盐。这些数据提供了使用所有哺乳动物IP3R亚型的同质种群对关键AdA类似物进行的首次结构活性分析。他们证明了AdA类似物引起的Ca 2 + 信号的差异不太可能归因于IP 3 R亚型的选择性调节。

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