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甘氨酸抑制 NINJ1 膜聚集以抑制细胞死亡中的质膜破裂。

Glycine inhibits NINJ1 membrane clustering to suppress plasma membrane rupture in cell death.

机构信息

Program in Neuroscience and Mental Health, Hospital for Sick Children, Toronto, Canada.

Centre of Molecular Inflammation Research, Department of Clinical and Molecular Medicine, Faculty of Medicine and Health Sciences, Norwegian University of Science and Technology, Trondheim, Norway.

出版信息

Elife. 2022 Dec 5;11:e78609. doi: 10.7554/eLife.78609.

Abstract

First recognized more than 30 years ago, glycine protects cells against rupture from diverse types of injury. This robust and widely observed effect has been speculated to target a late downstream process common to multiple modes of tissue injury. The molecular target of glycine that mediates cytoprotection, however, remains elusive. Here, we show that glycine works at the level of NINJ1, a newly identified executioner of plasma membrane rupture in pyroptosis, necrosis, and post-apoptosis lysis. NINJ1 is thought to cluster within the plasma membrane to cause cell rupture. We demonstrate that the execution of pyroptotic cell rupture is similar for human and mouse NINJ1 and that NINJ1 knockout functionally and morphologically phenocopies glycine cytoprotection in macrophages undergoing lytic cell death. Next, we show that glycine prevents NINJ1 clustering by either direct or indirect mechanisms. In pyroptosis, glycine preserves cellular integrity but does not affect upstream inflammasome activities or accompanying energetic cell death. By positioning NINJ1 clustering as a glycine target, our data resolve a long-standing mechanism for glycine-mediated cytoprotection. This new understanding will inform the development of cell preservation strategies to counter pathologic lytic cell death.

摘要

三十多年前首次被发现,甘氨酸可保护细胞免受多种类型损伤导致的破裂。这种强大且广泛观察到的效应被推测针对多种组织损伤模式共有的晚期下游过程。然而,介导细胞保护作用的甘氨酸的分子靶标仍然难以捉摸。在这里,我们表明甘氨酸在 NINJ1 水平起作用,NINJ1 是细胞焦亡、坏死和细胞凋亡后溶酶体破裂中新发现的执行者。NINJ1 被认为在质膜内聚集以引起细胞破裂。我们证明,人类和小鼠 NINJ1 的细胞焦亡执行破裂相似,并且 NINJ1 敲除在经历溶酶体死亡的巨噬细胞中在功能和形态上模拟甘氨酸的细胞保护作用。接下来,我们表明甘氨酸通过直接或间接机制防止 NINJ1 聚集。在细胞焦亡中,甘氨酸保持细胞完整性,但不影响上游炎性小体活性或伴随的能量细胞死亡。通过将 NINJ1 聚集定位为甘氨酸的靶标,我们的数据解决了甘氨酸介导的细胞保护的长期机制。这一新认识将为对抗病理性溶酶体死亡的细胞保存策略的发展提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc27/9754625/d82ac2108209/elife-78609-fig1.jpg

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