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TRPC6 and TRPC4 Heteromultimerization Mediates Store Depletion-Activated NCX1 Reversal in Proliferative Vascular Smooth Muscle Cells

机译:TRPC6和TRPC4异源多聚化介导在增殖性血管平滑肌细胞中存储耗尽激活的NCX1逆转。

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Store depletion has been shown to induce Ca~(2+) entry by Na+/Ca+ exchange (NCX) 1 reversal in proliferative vascular smooth muscle cells (VSMCs). The study objective was to investigate the role of transient receptor potential canonical (TRPC) channels in store depletion and NCX1 reversal in proliferative VSMCs. In cultured VSMCs, expressing TRPC1, TRPC4, and TRPC6, the removal of extracellular Na~(+) was followed by a significant increase of cytosolic Ca~(2+) concentration that was inhibited by KBR, a selective NCX1 inhibitor. TRPC1 knockdown significantly suppressed store-operated, channel-mediated Ca~(2+) entry, but TRPC4 knockdown and TRPC6 knockdown had no effect. Separate knockdown of TRPC1, TRPC4, or TRPC6 did not have a significant effect on thapsigargin-initiated Na~(+) increase in the peripheral regions with KBR treatment, but knockdown of both TRPC4 and TRPC6 did. Stromal interaction molecule (STIM)1 knockdown significantly reduced TRPC4 and TRPC6 binding. The results demonstrated that TRPC4–TRPC6 heteromultimerization linked Ca~(2+) store depletion and STIM1 accumulation with NCX reversal in proliferative VSMCs.
机译:研究表明,在增殖性血管平滑肌细胞(VSMC)中,Na + / Ca +交换(NCX)1逆转可导致商店消耗诱导Ca〜(2+)进入。研究目的是研究增殖性VSMC中瞬时受体潜在规范(TRPC)通道在商店耗竭和NCX1逆转中的作用。在培养的表达TRPC1,TRPC4和TRPC6的VSMC中,去除细胞外Na〜(+)后,胞质Ca〜(2+)浓度显着增加,而KBR(一种选择性的NCX1抑制剂)抑制了该浓度。 TRPC1敲低显着抑制了存储操作的,通道介导的Ca〜(2+)进入,但是TRPC4敲低和TRPC6敲低没有作用。用KBR处理后,单独敲除TRPC1,TRPC4或TRPC6不会对毒胡萝卜素引发的Na〜(+)的增加产生显着影响,但TRPC4和TRPC6的敲除确实有显着影响。基质相互作用分子(STIM)1组合式大大减少了TRPC4和TRPC6结合。结果表明,TRPC4-TRPC6异源多聚化将Ca〜(2+)存储损耗和STIM1积累与增生VSMC中的NCX逆转联系起来。

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