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Syntaxin11缺陷抑制CRAC通道引发,以抑制FHLH4患者T淋巴细胞的细胞毒性和基因表达。

Syntaxin11 Deficiency Inhibits CRAC Channel Priming To Suppress Cytotoxicity And Gene Expression In FHLH4 Patient T Lymphocytes.

作者信息

Datta Sritama, Gupta Abhikarsh, Jagetiya Kunal Mukesh, Tiwari Vikas, Yamashita Megumi, Ammann Sandra, Shahrooei Mohammad, Yande Atharva Rahul, Sowdhamini Ramanathan, Dani Adish, Prakriya Murali, Vig Monika

机构信息

Tata Institute of Fundamental Research, Hyderabad, India.

National Centre for Biological Sciences, Bangalore, India.

出版信息

bioRxiv. 2024 Oct 25:2024.10.25.620144. doi: 10.1101/2024.10.25.620144.

Abstract

CRAC channels enable calcium entry from the extracellular space in response to a variety of stimuli and are crucial for gene expression and granule exocytosis in lymphocytes. Here we find that Syntaxin11, a Q-SNARE, associated with FHLH4 disease in human patients, directly binds Orai1, the pore forming subunit of CRAC channels. Syntaxin11 depletion strongly inhibited SOCE, CRAC currents, IL-2 expression and cytotoxicity in cell lines and FHLH4 patient T lymphocytes. Constitutively active H134 Orai1 mutant completely reconstituted calcium entry in Syntaxin11 depleted cells and the defects of granule exocytosis as well as gene expression could be bypassed by ionomycin induced calcium influx in FHLH4 T lymphocytes. Our data reveal a Syntaxin11 induced pre-activation state of Orai which is necessary for its subsequent coupling and gating by the endoplasmic reticulum resident Stim protein. We propose that ion channel regulation by specific SNAREs is a primary and conserved function which may have preceded their role in vesicle fusion.

摘要

CRAC通道能够响应多种刺激,使钙离子从细胞外空间进入细胞内,对淋巴细胞中的基因表达和颗粒胞吐作用至关重要。在此,我们发现Syntaxin11(一种Q-SNARE蛋白,与人类患者的FHLH4疾病相关)直接结合CRAC通道的孔形成亚基Orai1。Syntaxin11的缺失强烈抑制了细胞系以及FHLH4患者T淋巴细胞中的SOCE、CRAC电流、IL-2表达和细胞毒性。组成型激活的H134 Orai1突变体完全恢复了Syntaxin11缺失细胞中的钙内流,并且在FHLH4 T淋巴细胞中,离子霉素诱导的钙内流可以绕过颗粒胞吐作用和基因表达的缺陷。我们的数据揭示了Syntaxin11诱导的Orai预激活状态,这是其随后被内质网驻留的Stim蛋白偶联和门控所必需的。我们提出,特定SNARE蛋白对离子通道的调节是一种主要的保守功能,可能早于它们在囊泡融合中的作用。

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