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STIM1 activation is regulated by a 14 amino acid sequence adjacent to the CRAC activation domain

机译:STIM1激活受邻近CRAC激活域的14个氨基酸序列调控

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Oligomerization of the Ca2+ sensor, STIM1, in the endoplasmic reticulum (ER) membrane, caused by depletion of ER Ca2+ stores, results in STIM1 coupling to the plasma membrane Ca2+ channel protein, Orai1, to activate Ca2+ influx in a process known as store-operated Ca2+ entry. We use fluorimetry-based fluorescence resonance energy transfer (FRET) to monitor changes in STIM1 oligomerization in COS7 cells transfected with STIM1 constructs containing selected truncations, deletions, and point mutations, and labeled with donor and acceptor fluorescent proteins at either the luminal (N-terminal) or the cytoplasmic (C-terminal) ends. Our results with sequential truncations of STIM1 from the C-terminus support previous evidence that the CRAC activation domain (CAD/SOAR, human sequence 342–448) is an oligomer-promoting segment of STIM1, and they show that truncation just after CAD/SOAR (1–448) causes significantly elevated basal cytoplasmic Ca2+ and spontaneous STIM1 clustering. We find that a 14 amino acid sequence just C-terminal of CAD/SOAR (449–462) prevents spontaneous clustering and activation of STIM1 in COS7 cells. In response to store depletion, C-terminally labeled STIM1 without CAD/SOAR clusters together with CAD/SOAR-containing STIM1 constructs. However, these donor-acceptor pairs do not undergo a stimulated increase in FRET, exhibiting instead a decrease in FRET consistent with a stimulated conformational extension in full length STIM1. We find that the 14 amino acid sequence plays a regulatory role in this process. Overall, our FRET results provide evidence in live cells that Ca2+ store depletion stimulates a conformational extension in the cytoplasmic segment of STIM1 that accompanies its oligomerization.
机译:内质网(ER)膜中Ca 2+ 传感器STIM1的低聚是由于ER Ca 2 + 存储库的耗尽导致的,STIM1耦合至血浆膜Ca 2+ 通道蛋白Orai1,以称为存储操作Ca 2+ 进入的过程激活Ca 2 + 流入。我们使用基于荧光分析的荧光共振能量转移(FRET)来监测用STIM1构建体转染的COS7细胞中STIM1寡聚化的变化,该构建体包含选定的截短,缺失和点突变,并在两个腔体(N-末端)或胞质(C末端)末端。我们从C端开始连续截短STIM1的结果支持了先前的证据,即CRAC激活域(CAD / SOAR,人类序列342–448)是STIM1的低聚物促进片段,它们显示了在CAD / SOAR之后截短(1–448)导致基底细胞质Ca 2 + 显着升高和自发STIM1聚类。我们发现,在CAD / SOAR的C末端(449-462)的14个氨基酸序列可防止COS7细胞中自发簇集和STIM1激活。为了响应存储耗尽,没有CAD / SOAR的C末端标记的STIM1与包含CAD / SOAR的STIM1构建体一起簇集。但是,这些供体-受体对并未经历FRET的刺激增加,而是表现出FRET的减少与全长STIM1中刺激的构象延伸相一致。我们发现14个氨基酸序列在此过程中起调节作用。总体而言,我们的FRET结果在活细胞中提供了证据,表明Ca 2 + 存储耗尽会刺激STIM1伴随其寡聚化的胞质区段中的构象延伸。

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