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组织驻留肥大细胞的多效性作用的调节。

Regulation of the pleiotropic effects of tissue-resident mast cells.

机构信息

Institute of Biochemistry and Molecular Immunology, Medical Faculty, RWTH Aachen University, Aachen, Germany.

Karlsruhe Institute of Technology, Institute of Toxicology and Genetics, Eggenstein-Leopoldshafen, Germany.

出版信息

J Allergy Clin Immunol. 2019 Oct;144(4S):S31-S45. doi: 10.1016/j.jaci.2019.02.004. Epub 2019 Feb 15.

Abstract

Mast cells (MCs), which are best known for their detrimental role in patients with allergic diseases, act in a diverse array of physiologic and pathologic functions made possible by the plurality of MC types. Their various developmental avenues and distinct sensitivity to (micro-) environmental conditions convey extensive heterogeneity, resulting in diverse functions. We briefly summarize this heterogeneity, elaborate on molecular determinants that allow MCs to communicate with their environment to fulfill their tasks, discuss the protease repertoire stored in secretory lysosomes, and consider different aspects of MC signaling. Furthermore, we describe key MC governance mechanisms (ie, the high-affinity receptor for IgE [FcεRI]), the stem cell factor receptor KIT, the IL-4 system, and both Ca- and phosphatase-dependent mechanisms. Finally, we focus on distinct physiologic functions, such as chemotaxis, phagocytosis, host defense, and the regulation of MC functions at the mucosal barriers of the lung, gastrointestinal tract, and skin. A deeper knowledge of the pleiotropic functions of MC mediators, as well as the molecular processes of MC regulation and communication, should enable us to promote beneficial MC traits in physiology and suppress detrimental MC functions in patients with disease.

摘要

肥大细胞(MCs),以其在过敏性疾病患者中的有害作用而闻名,在多种 MC 类型的作用下,在各种生理和病理功能中发挥作用。它们不同的发育途径和对(微)环境条件的不同敏感性传达了广泛的异质性,导致不同的功能。我们简要总结了这种异质性,阐述了允许 MC 与环境进行通信以完成其任务的分子决定因素,讨论了储存在分泌溶酶体中的蛋白酶谱,并考虑了 MC 信号转导的不同方面。此外,我们描述了关键的 MC 治理机制(即 IgE 的高亲和力受体[FcεRI])、干细胞因子受体 KIT、IL-4 系统以及 Ca 和磷酸酶依赖性机制。最后,我们专注于不同的生理功能,如趋化性、吞噬作用、宿主防御以及肺、胃肠道和皮肤粘膜屏障中 MC 功能的调节。深入了解 MC 介质的多功能性以及 MC 调节和通信的分子过程,应该使我们能够在生理学中促进有益的 MC 特性,并抑制疾病患者中有害的 MC 功能。

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