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锁定并装载:调节自然杀伤细胞裂解颗粒发生和释放的机制。

Locked and Loaded: Mechanisms Regulating Natural Killer Cell Lytic Granule Biogenesis and Release.

机构信息

Division of Oncology Research, Mayo Clinic, Rochester, MN, United States.

Department of Immunology College of Medicine, Mayo Clinic, Rochester, MN, United States.

出版信息

Front Immunol. 2022 Apr 26;13:871106. doi: 10.3389/fimmu.2022.871106. eCollection 2022.

Abstract

NK cell-mediated cytotoxicity is a critical element of our immune system required for protection from microbial infections and cancer. NK cells bind to and eliminate infected or cancerous cells direct secretion of cytotoxic molecules toward the bound target cells. In this review, we summarize the current understanding of the molecular regulations of NK cell cytotoxicity, focusing on lytic granule development and degranulation processes. NK cells synthesize apoptosis-inducing proteins and package them into specialized organelles known as lytic granules (LGs). Upon activation of NK cells, LGs converge with the microtubule organizing center through dynein-dependent movement along microtubules, ultimately polarizing to the cytotoxic synapse where they subsequently fuse with the NK plasma membrane. From LGs biogenesis to degranulation, NK cells utilize several strategies to protect themselves from their own cytotoxic molecules. Additionally, molecular pathways that enable NK cells to perform serial killing are beginning to be elucidated. These advances in the understanding of the molecular pathways behind NK cell cytotoxicity will be important to not only improve current NK cell-based anti-cancer therapies but also to support the discovery of additional therapeutic opportunities.

摘要

自然杀伤细胞介导的细胞毒性是我们免疫系统的一个关键组成部分,对于防止微生物感染和癌症至关重要。自然杀伤细胞通过直接向结合的靶细胞分泌细胞毒性分子来结合和消除感染或癌变的细胞。在这篇综述中,我们总结了对自然杀伤细胞细胞毒性的分子调控的现有认识,重点介绍了溶酶体颗粒的发育和脱颗粒过程。自然杀伤细胞合成诱导细胞凋亡的蛋白质,并将它们包装到称为溶酶体颗粒(LGs)的专门细胞器中。自然杀伤细胞激活后,LG 通过沿着微管的动力蛋白依赖性运动与微管组织中心汇聚,最终向细胞毒性突触极化,随后与自然杀伤细胞的质膜融合。从 LG 的发生到脱颗粒,自然杀伤细胞利用几种策略来保护自己免受自身细胞毒性分子的侵害。此外,使自然杀伤细胞能够进行连续杀伤的分子途径也开始被阐明。对自然杀伤细胞细胞毒性背后的分子途径的理解的这些进展不仅对于改进当前基于自然杀伤细胞的抗癌疗法很重要,而且对于支持发现其他治疗机会也很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d77/9088006/8bdee803e2a7/fimmu-13-871106-g001.jpg

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