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CRAC channel gating and its modulation by STIM1 and 2‐aminoethoxydiphenyl borate

机译:CRAC通道门控及其由STIM1和2-氨基乙氧基二苯硼酸盐的调控

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摘要

Ca2+ release‐activated Ca2+ (CRAC) channels play an essential role in the immune system. The pore‐forming subunit, Orai1, is an important pharmacological target. Here, we summarize the recent discoveries on the structure–function relationship of Orai1, as well as its interaction with the native channel opener STIM1 and chemical modulator 2‐aminoethoxydiphenyl borate (2‐APB). We first introduce the critical structural elements of Orai1, which include a Ca2+ accumulating region, ion selectivity filter, hydrophobic centre, basic region, extended transmembrane Orai1 N‐terminal (ETON) region, transmembrane (TM) regions 2 and 3, P245 bend, 263SHK265 hinge linker and L273–L276 hydrophobic patch. We then hypothesize the possible mechanisms by which STIM1 triggers the conformational transitions of TM regions and exquisitely shapes the ion conduction pathway during generation of the CRAC current (I crac) with high Ca2+ selectivity. Finally, we propose mechanisms by which 2‐APB modulates I crac. On the STIM1‐activated Orai1 channel, a low dose of 2‐APB acts directly, dilating its extremely narrow pore diameter from 3.8 to 4.6 Å, increasing its unitary channel conductance, and potentiating the I crac. Further elucidation of the structure of the opened CRAC channel and a better understanding of structure–function relationship will benefit the future development of novel immune modulators.
机译:Ca 2 + 释放激活的Ca 2 + (CRAC)通道在免疫系统中起重要作用。造孔亚基Orai1是重要的药理学靶标。在这里,我们总结了Orai1在结构与功能之间的关系及其与天然通道开放剂STIM1和化学调节剂2-氨基乙氧基二苯硼酸酯(2-APB)相互作用的最新发现。我们首先介绍Orai1的关键结构元素,包括Ca 2 + 积累区域,离子选择性滤器,疏水中心,碱性区域,延伸的跨膜Orai1 N末端(ETON)区,跨膜(TM) )区域2和3,P245弯曲, 263 SHK 265 铰链接头和L273-L276疏水膜片。然后,我们推测了可能的机制,STIM1触发具有高Ca 2 + 选择性的CRAC电流(I crac)生成过程中,TM区域构象转变并精确地塑造了离子传导途径。最后,我们提出了2-APB调节I crac的机制。在STIM1激活的Orai1通道上,低剂量的2-APB直接起作用,将其极窄的孔径从3.8扩大到4.6Å,增加了其单位通道电导,并增强了I crac。进一步阐明开放的CRAC通道的结构以及对结构与功能关系的更好理解将有益于新型免疫调节剂的未来发展。

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