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超越 CRAC:B 细胞中离子信号的多样化。

Beyond the CRAC: Diversification of ion signaling in B cells.

机构信息

Department of Cell & Systems Biology, University of Toronto, Toronto, Ontario, Canada.

Department of Biological Sciences, University of Toronto Scarborough, Toronto, Ontario, Canada.

出版信息

Immunol Rev. 2019 Sep;291(1):104-122. doi: 10.1111/imr.12770.

Abstract

Although calcium signaling and the important role of calcium release-activated calcium channels is well recognized in the context of immune cell signaling, there is a vast diversity of ion channels and transporters that regulate the entry of ions beyond calcium, including magnesium, zinc, potassium, sodium, and chloride. These ions play a critical role in numerous metabolic and cellular processes. The importance of ions in human health and disease is illustrated by the identification of primary immunodeficiencies in patients with mutations in genes encoding ion channels and transporters, as well as the immunological defects observed in individuals with nutritional ion deficiencies. Despite progress in identifying the important role of ions in immune cell development and activation, we are still in the early stages of exploring the diversity of ion channels and transporters and mechanistically understanding the role of these ions in immune cell biology. Here, we review the biology of ion signaling in B cells and the identification of critical ion channels and transporters in B-cell development, activation, and differentiation into effector cells. Elucidating the role of ion channels and transporters in immune cell signaling is critical for expanding the repertoire of potential therapeutics for the treatment of immune disorders. Moreover, increased understanding of the role of ions in immune cell function will enhance our understanding of the potentially serious consequences of ion deficiencies in human health and disease.

摘要

尽管钙信号转导和钙释放激活钙通道在免疫细胞信号转导中具有重要作用,但调节钙以外离子进入的离子通道和转运体种类繁多,包括镁、锌、钾、钠和氯。这些离子在许多代谢和细胞过程中起着关键作用。离子在人类健康和疾病中的重要性体现在患者基因突变导致编码离子通道和转运体的基因出现原发性免疫缺陷,以及营养离子缺乏导致个体出现免疫缺陷的现象中。尽管在确定离子在免疫细胞发育和激活中的重要作用方面取得了进展,但我们仍处于探索离子通道和转运体多样性以及从机制上理解这些离子在免疫细胞生物学中作用的早期阶段。在这里,我们综述了 B 细胞中离子信号转导的生物学,以及鉴定出在 B 细胞发育、激活和分化为效应细胞过程中起关键作用的离子通道和转运体。阐明离子通道和转运体在免疫细胞信号转导中的作用对于扩展免疫紊乱治疗的潜在治疗方法的范围至关重要。此外,增加对离子在免疫细胞功能中的作用的理解将增强我们对人类健康和疾病中离子缺乏可能产生严重后果的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af45/6851625/606508a82c70/IMR-291-104-g001.jpg

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