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A plasma membrane-targeted cytosolic domain of STIM1 selectively activates ARC channels an arachidonate-regulated store-independent Orai channel

机译:STIM1的质膜靶向胞质结构域选择性激活ARC通道花生四烯酸调节的独立于存储的Orai通道

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摘要

The Orai family of calcium channels includes the store-operated CRAC channels and store-independent, arachidonic acid (AA)-regulated ARC channels. Both depend on STIM1 for their activation but, whereas CRAC channel activation involves sensing the depletion of intracellular calcium stores via a luminal N terminal EF-hand of STIM1 in the endoplasmic reticulum (ER) membrane, ARC channels are exclusively activated by the pool of STIM1 that constitutively resides in the plasma membrane (PM). Here, the EF-hand is extracellular and unlikely to ever lose its bound calcium, suggesting that STIM1-dependent activation of ARC channels is very different from that of CRAC channels. We now show that attachment of the cytosolic portion of STIM1 to the inner face of the PM via an N terminal Lck-domain sequence is sufficient to enable normal AA-dependent activation of ARC channels, while failing to allow activation of store-operated CRAC channels. Introduction of a point mutation within the Lck-domain resulted in the loss of both PM localization and ARC channel activation. Reversing the orientation of the PM-anchored STIM1 C terminus via a C-terminal CAAX-box fails to support either CRAC or ARC channel activation. Finally, the Lck-anchored STIM1 C-terminal domain also enabled the exclusive activation of the ARC channels following physiological agonist addition. These data demonstrate that simple tethering of the cytosolic C-terminal domain of STIM1 to the inner face of the PM is sufficient to allow the full, normal and exclusive activation of ARC channels, and that the N-terminal regions of STIM1 (including the EF-hand domain) play no significant role in this activation.
机译:Orai系列的钙通道包括存储操作的CRAC通道和独立于存储的花生四烯酸(AA)调节的ARC通道。两者都依赖于STIM1进行激活,但是CRAC通道激活涉及通过内质网(ER)膜中STIM1的腔N端EF手感应细胞内钙存储的耗尽,而ARC通道仅由STIM1池激活本征地位于质膜(PM)中。在这里,EF手在细胞外,不可能丢失其结合的钙,这表明ARC通道的STIM1依赖性激活与CRAC通道的激活非常不同。我们现在表明,通过N末端Lck结构域序列将STIM1的胞质部分附着于PM的内表面足以使ARC通道的正常AA依赖激活成为可能,而无法允许存储操作的CRAC通道激活。 Lck域内引入点突变导致PM定位和ARC通道激活均丢失。通过C端CAAX盒反转PM锚定的STIM1 C端的方向无法支持CRAC或ARC通道激活。最后,在添加生理激动剂后,Lck锚定的STIM1 C末端结构域还能够激活ARC通道。这些数据表明,将STIM1的胞质C末端结构域与PM的内表面进行简单的束缚足以使ARC通道完全,正常和排他地激活,并且STIM1的N末端区域(包括EF手动域名)在此激活中不起作用。

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