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The inactivation domain of STIM1 acts through intramolecular binding to the coiled-coil domain in the resting state

机译:STIM1的灭活结构域通过在静止状态下与卷轴线圈结构域的分子内结合作用

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摘要

Store-operated Ca2+ entry (SOCE) is a major Ca2+ influx pathway that is controlled by the ER Ca2+ sensor STIM1. Abnormal activation of STIM1 directly influences Ca2+ influx, resulting in severe diseases such as Stormorken syndrome. The inactivation domain of STIM1 (IDstim) has been identified as being essential for Ca-2(+)-dependent inactivation of STIM1 (CDI) after SOCE occurs. However, it is unknown whether IDstim is involved in keeping STIM1 inactive before CDI. Herein, we show that IDstim helps STIM1 keep inactive through intramolecular binding with the coiled-coil domain. Between IDstim and the coiled-coil domain, we found a short conserved linker whose extension or mutation leads to the constitutive activation of STIM1. We have demonstrated that IDstim needs the coiled-coil domain 1 (CC1) to inhibit the Ca2+ release-activated Ca2+ (CRAC) activation domain (CAD) activity and binds to a CC1-CAD fragment. Serial deletion of CC1 revealed that CC1 alpha 1 is a co-inhibitory domain of IDstim. CC1 alpha 1 deletion or leucine mutation, which abolishes the closed conformation, impaired the inhibitory effect and binding of IDstim. These results suggest that IDstim cooperates with CC1 alpha 1 to help STIM1 keep inactive under resting conditions.
机译:存储操作的CA2 +条目(SOCE)是由ER CA2 +传感器STIM1控制的主要CA2 +流入路径。 STIM1的异常激活直接影响CA2 +流入,导致风疹综合征如严重的疾病。在发生脱落之后,STIM1(IDSTIM)的灭活结构域已被鉴定为CA-2(+)依赖性灭活的CA-2(+)依赖性灭活。但是,它是未知IDSTIM是否涉及在CDI之前保持STY1非活动状态。在此,我们表明IDSTIM有助于STIM1通过与卷曲线圈域的分子内结合保持无活性。在Idstim和卷绕线圈结构域之间,我们发现一个短暂的保守接头,其延伸或突变导致肌肉的组成型活化。我们已经证明Idstim需要卷曲卷域1(CC1)抑制Ca2 +释放活化的Ca2 +(CRAC)活化结构域(CAD)活性并与CC1-CAD片段结合。 CC1的连续缺失显示CC1α1是IDSTIM的共同抑制域。 CC1α1缺失或亮氨酸突变消除了闭合构象,损害了Idstim的抑制作用和结合。这些结果表明,IDSTIM与CC1 Alpha 1合作,以帮助Stim1在休息条件下保持不活跃。

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