T-cell immunoglobulin and mucin-domain containing-3 (TIM-3): Solving a key puzzle in autoimmune diseases

被引:20
作者
Chen, Huihui [1 ,2 ]
Zha, Jie [3 ,4 ]
Tang, Runyan [3 ,4 ]
Chen, Guochun [2 ,3 ,4 ]
机构
[1] Cent South Univ, Dept Ophthalmol, Xiangya Hosp 2, Changsha, Peoples R China
[2] Cent South Univ, Clin Immunol Res Ctr, Changsha, Peoples R China
[3] Cent South Univ, Dept Nephrol, Xiangya Hosp 2, Changsha, Peoples R China
[4] Cent South Univ, Hunan Key Lab Kidney Dis & Blood Purificat, Xiangya Hosp 2, Changsha, Peoples R China
基金
中国国家自然科学基金;
关键词
T cell immunoglobulin and mucin domain; containing protein 3; Ligand; T cells; Autoimmune diseases; Systemic lupus erythematosus; Rheumatoid arthritis; Multiple sclerosis; Inflammation; CONTAINING MOLECULE-3 TIM-3; GROUP BOX 1; TIM-3/GALECTIN-9; PATHWAY; AIRWAY INFLAMMATION; MULTIPLE-SCLEROSIS; APOPTOTIC CELLS; RECEPTOR TIM-3; EXPRESSION; IG; PHOSPHATIDYLSERINE;
D O I
10.1016/j.intimp.2023.110418
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Dysfunctional immune cells participate in the pathogenesis of a variety of autoimmune diseases, although the specific mechanisms remain elusive and effective clinical interventions are lacking. Recent research on immune checkpoint molecules has revealed significant expression of T cell immunoglobulin and mucin domaincontaining protein 3 (TIM-3) on the surfaces of various immune cells. These include different subsets of T cells, macrophages, dendritic cells, natural killer cells, and mast cells. Further investigation into its protein structure, ligands, and intracellular signaling pathway activation mechanisms has found that TIM-3, by binding with different ligands, is involved in the regulation of crucial biological processes such as proliferation, apoptosis, phenotypic transformation, effector protein synthesis, and cellular interactions of various immune cells. The TIM-3-ligand axis plays a pivotal role in the pathogenesis of numerous conditions, including autoimmune diseases, infections, cancers, transplant rejection, and chronic inflammation. This article primarily focuses on the research findings of TIM-3 in the field of autoimmune diseases, with a special emphasis on the structure and signaling pathways of TIM-3, its types of ligands, and the potential mechanisms implicated in systemic lupus erythematosus, multiple sclerosis, rheumatoid arthritis, as well as other autoimmune diseases and chronic inflammation. The latest research results in the field of immunology suggest that TIM-3 dysfunction affects various immune cells and participates in the pathogenesis of diseases. Monitoring the activity of its receptor-ligand axis can serve as a novel biological marker for disease clinical diagnosis and prognosis evaluation. More importantly, the TIM-3-ligand axis and the downstream signaling pathway molecules may become key targets for targeted intervention treatment of autoimmune-related diseases.
引用
收藏
页数:9
相关论文
共 96 条
[1]   The role of immune regulatory molecules in multiple sclerosis [J].
Afshar, Boshra ;
Khalifehzadeh-Esfahani, Zahra ;
Seyfizadeh, Narges ;
Danbaran, Gholamreza Rezaei ;
Hemmatzadeh, Maryam ;
Mohammadi, Hamed .
JOURNAL OF NEUROIMMUNOLOGY, 2019, 337
[2]   Immunophenotyping of Cerebrospinal Fluid Cells in Multiple Sclerosis In Search of Biomarkers [J].
Alvermann, Sascha ;
Hennig, Christian ;
Stueve, Olaf ;
Wiendl, Heinz ;
Stangel, Martin .
JAMA NEUROLOGY, 2014, 71 (07) :905-912
[3]   Promotion of tissue inflammation by the immune receptor Tim-3 expressed on innate immune cells [J].
Anderson, Ana C. ;
Anderson, David E. ;
Bregoli, Lisa ;
Hastings, William D. ;
Kassam, Nasim ;
Lei, Charles ;
Chandwaskar, Rucha ;
Karman, Jozsef ;
Su, Ee W. ;
Hirashima, Mitsuomi ;
Bruce, Jeffrey N. ;
Kane, Lawrence P. ;
Kuchroo, Vijay K. ;
Hafler, David A. .
SCIENCE, 2007, 318 (5853) :1141-1143
[4]   mTOR regulates T cell exhaustion and PD-1-targeted immunotherapy response during chronic viral infection [J].
Ando, Satomi ;
Perkins, Charles M. ;
Sajiki, Yamato ;
Chastain, Chase ;
Valanparambil, Rajesh M. ;
Wieland, Andreas ;
Hudson, William H. ;
Hashimoto, Masao ;
Ramalingam, Suresh S. ;
Freeman, Gordon J. ;
Ahmed, Rafi ;
Araki, Koichi .
JOURNAL OF CLINICAL INVESTIGATION, 2023, 133 (02)
[5]   Inhibitory receptors and ligands beyond PD-1, PD-L1 and CTLA-4: breakthroughs or backups [J].
Andrews, Lawrence P. ;
Yano, Hiroshi ;
Vignali, Dario A. A. .
NATURE IMMUNOLOGY, 2019, 20 (11) :1425-1434
[6]   Type 17 T helper cells-origins, features and possible roles in rheumatic disease [J].
Annunziato, Francesco ;
Cosmi, Lorenzo ;
Liotta, Francesco ;
Maggi, Enrico ;
Romagnani, Sergio .
NATURE REVIEWS RHEUMATOLOGY, 2009, 5 (06) :325-331
[7]   Targeting cell signaling in allergic asthma [J].
Athari, Seyyed Shamsadin .
SIGNAL TRANSDUCTION AND TARGETED THERAPY, 2019, 4 (1)
[8]   Tim-3 co-stimulation promotes short-lived effector T cells, restricts memory precursors, and is dispensable for T cell exhaustion [J].
Avery, Lyndsay ;
Filderman, Jessica ;
Szymczak-Workman, Andrea L. ;
Kane, Lawrence P. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2018, 115 (10) :2455-2460
[9]   Tim-3 is dispensable for allergic inflammation and respiratory tolerance in experimental asthma [J].
Boehne, Carolin ;
Behrendt, Ann-Kathrin ;
Meyer-Bahlburg, Almut ;
Boettcher, Martin ;
Drube, Sebastian ;
Kamradt, Thomas ;
Hansen, Gesine .
PLOS ONE, 2021, 16 (04)
[10]   Tumor-infiltrating DCs suppress nucleic acid-mediated innate immune responses through interactions between the receptor TIM-3 and the alarmin HMGB1 [J].
Chiba, Shigeki ;
Baghdadi, Muhammad ;
Akiba, Hisaya ;
Yoshiyama, Hironori ;
Kinoshita, Ichiro ;
Dosaka-Akita, Hirotoshi ;
Fujioka, Yoichiro ;
Ohba, Yusuke ;
Gorman, Jacob V. ;
Colgan, John D. ;
Hirashima, Mitsuomi ;
Uede, Toshimitsu ;
Takaoka, Akinori ;
Yagita, Hideo ;
Jinushi, Masahisa .
NATURE IMMUNOLOGY, 2012, 13 (09) :832-842