Endoplasmic reticulum stress in T cell-mediated diseases.

IF 5.5 3区 材料科学 Q2 CHEMISTRY, PHYSICAL ACS Applied Energy Materials Pub Date : 2023-09-01 Epub Date: 2023-06-27 DOI:10.1111/sji.13307
Shaodan Chen, Qiulei Wang, Hui Wang, Sheng Xia
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Abstract

T cells synthesize a large number of proteins during their development, activation, and differentiation. The build-up of misfolded and unfolded proteins in the endoplasmic reticulum, however, causes endoplasmic reticulum (ER) stress. Thus, T cells can maintain ER homeostasis via endoplasmic reticulum-associated degradation, unfolded protein response, and autophagy. In T cell-mediated diseases, such as rheumatoid arthritis, systemic lupus erythematosus, Sjogren's syndrome, type 1 diabetes and vitiligo, ER stress caused by changes in the internal microenvironment can cause disease progression by affecting T cell homeostasis. This review discusses ER stress in T cell formation, activation, differentiation, and T cell-mediated illnesses, and may offer new perspectives on the involvement of T cells in autoimmune disorders and cancer.

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内质网应激在T细胞介导疾病中的作用
T细胞在发育、激活和分化过程中合成大量蛋白质。然而,内质网中错误折叠和未折叠蛋白质的积累会引起内质网(ER)应激。因此,T细胞可以通过内质网相关降解、未折叠蛋白反应和自噬来维持内质网稳态。在T细胞介导的疾病中,如类风湿关节炎、系统性红斑狼疮、干燥综合征、1型糖尿病和白癜风,由内部微环境变化引起的内质网应激可通过影响T细胞稳态导致疾病进展。这篇综述讨论了内质网应激在T细胞形成、激活、分化和T细胞介导的疾病中的作用,并可能为T细胞参与自身免疫性疾病和癌症提供新的视角。
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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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