The emerging role of the branched chain aminotransferases, BCATc and BCATm, for anti-tumor T-cell immunity

被引:6
作者
Wetzel, Tanner J. [1 ]
Erfan, Sheila C. [1 ]
Ananieva, Elitsa A. [1 ]
机构
[1] Des Moines Univ, Dept Biochem & Nutr, 3200 Grand Ave, Des Moines, IA 50312 USA
关键词
BCATc; BCATm; BCAA; leucine; immunotherapy; TME; AMINO-ACID-METABOLISM; MTOR; DIFFERENTIATION; ACTIVATION; LEUCINE; EXPRESSION; SURVIVAL; TUMOR; FATE; IMMUNOTHERAPY;
D O I
10.1097/IN9.0000000000000014
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Challenges regarding successful immunotherapy are associated with the heterogeneity of tumors and the complex interactions within the surrounding tumor microenvironment (TME), particularly those between immune and tumor cells. Of interest, T cells receive a myriad of environmental signals to elicit differentiation to effector subtypes, which is accompanied by metabolic reprogramming needed to satisfy the high energy and biosynthetic demands of their activated state. However, T cells are subjected to immunosuppressive signals and areas of oxygen and nutrient depletion in the TME, which causes T-cell exhaustion and helps tumor cells escape immune detection. The cytosolic and mitochondrial branched chain amino transferases, BCATc and BCATm, respectively, are responsible for the first step of the branched chain amino acid (BCAA) degradation, of which, metabolites are shunted into various metabolic processes. In recent years, BCAT isoenzymes have been investigated for their role in a variety of cancers found throughout the body; however, a gap of knowledge exists regarding the role BCAT isoenzymes play within immune cells of the TME. The aim of this review is to summarize recent findings about BCAAs and their catabolism at the BCAT step during T-cell metabolic reprogramming and to discuss the BCAT putative role in the anti-tumor immunity of T cells. Not only does this review acknowledges gaps pertaining to BCAA metabolism in the TME but it also identifies the practical application of BCAA metabolism in T cells in response to cancer and spotlights a potential target for pharmacological intervention.
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页数:11
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共 95 条
  • [1] Mice deficient in the mitochondrial branched-chain aminotransferase (BCATm) respond with delayed tumour growth to a challenge with EL-4 lymphoma
    Ananieva, Elitsa A.
    Bostic, Joshua N.
    Torres, Ashley A.
    Glanz, Hannah R.
    McNitt, Sean M.
    Brenner, Michelle K.
    Boyer, Michael P.
    Addington, Adele K.
    Hutson, Susan M.
    [J]. BRITISH JOURNAL OF CANCER, 2018, 119 (08) : 1009 - 1017
  • [2] Branched-chain amino acid metabolism in cancer
    Ananieva, Elitsa A.
    Wilkinson, Adam C.
    [J]. CURRENT OPINION IN CLINICAL NUTRITION AND METABOLIC CARE, 2018, 21 (01) : 64 - 70
  • [3] Leucine Metabolism in T Cell Activation: mTOR Signaling and Beyond
    Ananieva, Elitsa A.
    Powell, Jonathan D.
    Hutson, Susan M.
    [J]. ADVANCES IN NUTRITION, 2016, 7 (04) : 798S - 805S
  • [4] Cytosolic Branched Chain Aminotransferase (BCATc) Regulates mTORC1 Signaling and Glycolytic Metabolism in CD4+ T Cells
    Ananieva, Elitsa A.
    Patel, Chirag H.
    Drake, Charles H.
    Powell, Jonathan D.
    Hutson, Susan M.
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2014, 289 (27) : 18793 - 18804
  • [5] mTOR regulates memory CD8 T-cell differentiation
    Araki, Koichi
    Turner, Alexandra P.
    Shaffer, Virginia Oliva
    Gangappa, Shivaprakash
    Keller, Susanne A.
    Bachmann, Martin F.
    Larsen, Christian P.
    Ahmed, Rafi
    [J]. NATURE, 2009, 460 (7251) : 108 - U124
  • [6] Tumor Microenvironment
    Arneth, Borros
    [J]. MEDICINA-LITHUANIA, 2020, 56 (01):
  • [7] Mitochondrial Respiration Controls Lysosomal Function during Inflammatory T Cell Responses
    Baixauli, Francesc
    Acin-Perez, Rebeca
    Villarroya-Beltri, Carolina
    Mazzeo, Carla
    Nunez-Andrade, Norman
    Gabande-Rodriguez, Enrique
    Dolores Ledesma, Maria
    Blazquez, Alberto
    Angel Martin, Miguel
    Manuel Falcon-Perez, Juan
    Miguel Redondo, Juan
    Antonio Enriquez, Jose
    Mittelbrunn, Maria
    [J]. CELL METABOLISM, 2015, 22 (03) : 485 - 498
  • [8] Interferon-γ derived from cytotoxic lymphocytes directly enhances their motility and cytotoxicity
    Bhat, Purnima
    Leggatt, Graham
    Waterhouse, Nigel
    Frazer, Ian H.
    [J]. CELL DEATH & DISEASE, 2017, 8 : e2836 - e2836
  • [9] Mitochondrial Dynamics Controls T Cell Fate through Metabolic Programming
    Buck, Michael D.
    O'Sullivan, David
    Geltink, Ramon I. Klein
    Curtis, Jonathan D.
    Chang, Chih-Hao
    Sanin, David E.
    Qiu, Jing
    Kretz, Oliver
    Braas, Daniel
    van der Windt, Gerritje J. W.
    Chen, Qiongyu
    Huang, Stanley Ching-Cheng
    O'Neill, Christina M.
    Edelson, Brian T.
    Pearce, Edward J.
    Sesaki, Hiromi
    Huber, Tobias B.
    Rambold, Angelika S.
    Pearce, Erika L.
    [J]. CELL, 2016, 166 (01) : 63 - 76
  • [10] Glutamine Uptake and Metabolism Are Coordinately Regulated by ERK/MAPK during T Lymphocyte Activation
    Carr, Erikka L.
    Kelman, Alina
    Wu, Glendon S.
    Gopaul, Ravindra
    Senkevitch, Emilee
    Aghvanyan, Anahit
    Turay, Achmed M.
    Frauwirth, Kenneth A.
    [J]. JOURNAL OF IMMUNOLOGY, 2010, 185 (02) : 1037 - 1044