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Volumn 194, Issue 9, 2015, Pages 4277-4286

Survival of effector CD8+ T cells during influenza infection is dependent on autophagy

Author keywords

[No Author keywords available]

Indexed keywords

ACETYLCYSTEINE; AUTOPHAGY PROTEIN 5; PROTEIN P53; REACTIVE OXYGEN METABOLITE; ATG5 PROTEIN, MOUSE; MICROTUBULE ASSOCIATED PROTEIN;

EID: 84928485429     PISSN: 00221767     EISSN: 15506606     Source Type: Journal    
DOI: 10.4049/jimmunol.1402571     Document Type: Article
Times cited : (58)

References (57)
  • 1
    • 84859140799 scopus 로고    scopus 로고
    • Metabolic pathways in T cell fate and function
    • Gerriets, V. A., and J. C. Rathmell. 2012. Metabolic pathways in T cell fate and function. Trends Immunol. 33: 168-173.
    • (2012) Trends Immunol , vol.33 , pp. 168-173
    • Gerriets, V.A.1    Rathmell, J.C.2
  • 3
    • 77951670712 scopus 로고    scopus 로고
    • Once a killer, always a killer: From cytotoxic T cell to memory cell
    • Lefrançois, L., and J. J. Obar. 2010. Once a killer, always a killer: from cytotoxic T cell to memory cell. Immunol. Rev. 235: 206-218.
    • (2010) Immunol. Rev. , vol.235 , pp. 206-218
    • Lefrançois, L.1    Obar, J.J.2
  • 4
    • 84865285455 scopus 로고    scopus 로고
    • Metabolic switching and fuel choice during T-cell differentiation and memory development
    • van der Windt, G. J., and E. L. Pearce. 2012. Metabolic switching and fuel choice during T-cell differentiation and memory development. Immunol. Rev. 249: 27-42.
    • (2012) Immunol. Rev. , vol.249 , pp. 27-42
    • Van Der Windt, G.J.1    Pearce, E.L.2
  • 5
    • 84866562625 scopus 로고    scopus 로고
    • Metabolic checkpoints in activated T cells
    • Wang, R., and D. R. Green. 2012. Metabolic checkpoints in activated T cells. Nat. Immunol. 13: 907-915.
    • (2012) Nat. Immunol. , vol.13 , pp. 907-915
    • Wang, R.1    Green, D.R.2
  • 7
    • 84874271196 scopus 로고    scopus 로고
    • mTOR, linking metabolism and immunity
    • Xu, X., L. Ye, K. Araki, and R. Ahmed. 2012. mTOR, linking metabolism and immunity. Semin. Immunol. 24: 429-435.
    • (2012) Semin. Immunol. , vol.24 , pp. 429-435
    • Xu, X.1    Ye, L.2    Araki, K.3    Ahmed, R.4
  • 8
    • 84896905991 scopus 로고    scopus 로고
    • Metabolic regulation of immune responses
    • Ganeshan, K., and A. Chawla. 2014. Metabolic regulation of immune responses. Annu. Rev. Immunol. 32: 609-634.
    • (2014) Annu. Rev. Immunol. , vol.32 , pp. 609-634
    • Ganeshan, K.1    Chawla, A.2
  • 9
    • 84904264964 scopus 로고    scopus 로고
    • Immune memory-boosting dose of rapamycin impairs macrophage vesicle acidification and curtails glycolysis in effector CD8 cells, impairing defense against acute infections
    • Goldberg, E. L., M. J. Smithey, L. K. Lutes, J. L. Uhrlaub, and J. Nikolich-Žugich. 2014. Immune memory-boosting dose of rapamycin impairs macrophage vesicle acidification and curtails glycolysis in effector CD8 cells, impairing defense against acute infections. J. Immunol. 193: 757-763.
    • (2014) J. Immunol. , vol.193 , pp. 757-763
    • Goldberg, E.L.1    Smithey, M.J.2    Lutes, L.K.3    Uhrlaub, J.L.4    Nikolich-Žugich, J.5
  • 13
    • 12944303650 scopus 로고    scopus 로고
    • Growth factor regulation of autophagy and cell survival in the absence of apoptosis
    • Lum, J. J., D. E. Bauer, M. Kong, M. H. Harris, C. Li, T. Lindsten, and C. B. Thompson. 2005. Growth factor regulation of autophagy and cell survival in the absence of apoptosis. Cell 120: 237-248.
    • (2005) Cell , vol.120 , pp. 237-248
    • Lum, J.J.1    Bauer, D.E.2    Kong, M.3    Harris, M.H.4    Li, C.5    Lindsten, T.6    Thompson, C.B.7
  • 14
    • 84880376355 scopus 로고    scopus 로고
    • Emerging regulation and functions of autophagy
    • Boya, P., F. Reggiori, and P. Codogno. 2013. Emerging regulation and functions of autophagy. Nat. Cell Biol. 15: 713-720.
    • (2013) Nat. Cell Biol. , vol.15 , pp. 713-720
    • Boya, P.1    Reggiori, F.2    Codogno, P.3
  • 15
    • 84872348186 scopus 로고    scopus 로고
    • Macroautophagy in T lymphocyte development and function
    • He, M. X., I. X. McLeod, W. Jia, and Y. W. He. 2012. Macroautophagy in T lymphocyte development and function. Front. Immunol. 3: 22.
    • (2012) Front. Immunol. , vol.3 , pp. 22
    • He, M.X.1    McLeod, I.X.2    Jia, W.3    He, Y.W.4
  • 16
    • 78650643194 scopus 로고    scopus 로고
    • Macroautophagy regulates energy metabolism during effector T cell activation
    • Hubbard, V. M., R. Valdor, B. Patel, R. Singh, A. M. Cuervo, and F. Macian. 2010. Macroautophagy regulates energy metabolism during effector T cell activation. J. Immunol. 185: 7349-7357.
    • (2010) J. Immunol. , vol.185 , pp. 7349-7357
    • Hubbard, V.M.1    Valdor, R.2    Patel, B.3    Singh, R.4    Cuervo, A.M.5    Macian, F.6
  • 17
    • 84883718410 scopus 로고    scopus 로고
    • Autophagy, a novel pathway to regulate calcium mobilization in T lymphocytes
    • Jia, W., M. X. He, I. X. McLeod, and Y. W. He. 2013. Autophagy, a novel pathway to regulate calcium mobilization in T lymphocytes. Front. Immunol. 4: 179.
    • (2013) Front. Immunol. , vol.4 , pp. 179
    • Jia, W.1    He, M.X.2    McLeod, I.X.3    He, Y.W.4
  • 18
    • 79955540204 scopus 로고    scopus 로고
    • Temporal regulation of intracellular organelle homeostasis in T lymphocytes by autophagy
    • Jia, W., and Y. W. He. 2011. Temporal regulation of intracellular organelle homeostasis in T lymphocytes by autophagy. J. Immunol. 186: 5313-5322.
    • (2011) J. Immunol. , vol.186 , pp. 5313-5322
    • Jia, W.1    He, Y.W.2
  • 20
    • 84862976890 scopus 로고    scopus 로고
    • Selective autophagy of the adaptor protein Bcl10 modulates T cell receptor activation of NF-κB
    • Paul, S., A. K. Kashyap, W. Jia, Y. W. He, and B. C. Schaefer. 2012. Selective autophagy of the adaptor protein Bcl10 modulates T cell receptor activation of NF-κB. Immunity 36: 947-958.
    • (2012) Immunity , vol.36 , pp. 947-958
    • Paul, S.1    Kashyap, A.K.2    Jia, W.3    He, Y.W.4    Schaefer, B.C.5
  • 21
    • 33846461678 scopus 로고    scopus 로고
    • A critical role for the autophagy gene Atg5 in T cell survival and proliferation
    • Pua, H. H., I. Dzhagalov, M. Chuck, N. Mizushima, and Y. W. He. 2007. A critical role for the autophagy gene Atg5 in T cell survival and proliferation. J. Exp. Med. 204: 25-31.
    • (2007) J. Exp. Med. , vol.204 , pp. 25-31
    • Pua, H.H.1    Dzhagalov, I.2    Chuck, M.3    Mizushima, N.4    He, Y.W.5
  • 22
    • 64249123646 scopus 로고    scopus 로고
    • Autophagy is essential for mitochondrial clearance in mature T lymphocytes
    • Pua, H. H., J. Guo, M. Komatsu, and Y. W. He. 2009. Autophagy is essential for mitochondrial clearance in mature T lymphocytes. J. Immunol. 182: 4046-4055.
    • (2009) J. Immunol. , vol.182 , pp. 4046-4055
    • Pua, H.H.1    Guo, J.2    Komatsu, M.3    He, Y.W.4
  • 24
    • 84902954600 scopus 로고    scopus 로고
    • Essential role for autophagy in the maintenance of immunological memory against influenza infection
    • Chen, M., M. J. Hong, H. Sun, L. Wang, X. Shi, B. E. Gilbert, D. B. Corry, F. Kheradmand, and J. Wang. 2014. Essential role for autophagy in the maintenance of immunological memory against influenza infection. Nat. Med. 20: 503-510.
    • (2014) Nat. Med. , vol.20 , pp. 503-510
    • Chen, M.1    Hong, M.J.2    Sun, H.3    Wang, L.4    Shi, X.5    Gilbert, B.E.6    Corry, D.B.7    Kheradmand, F.8    Wang, J.9
  • 33
    • 77954364953 scopus 로고    scopus 로고
    • Transcription factor regulation can be accurately predicted from the presence of target gene signatures in microarray gene expression data
    • Essaghir, A., F. Toffalini, L. Knoops, A. Kallin, J. van Helden, and J. B. Demoulin. 2010. Transcription factor regulation can be accurately predicted from the presence of target gene signatures in microarray gene expression data. Nucleic Acids Res. 38: e120.
    • (2010) Nucleic Acids Res , vol.38 , pp. e120
    • Essaghir, A.1    Toffalini, F.2    Knoops, L.3    Kallin, A.4    Van Helden, J.5    Demoulin, J.B.6
  • 34
    • 58549112996 scopus 로고    scopus 로고
    • Bioinformatics enrichment tools: Paths toward the comprehensive functional analysis of large gene lists
    • Huang, W., B. T. Sherman, and R. A. Lempicki. 2009. Bioinformatics enrichment tools: paths toward the comprehensive functional analysis of large gene lists. Nucleic Acids Res. 37: 1-13.
    • (2009) Nucleic Acids Res , vol.37 , pp. 1-13
    • Huang, W.1    Sherman, B.T.2    Lempicki, R.A.3
  • 35
    • 84861973567 scopus 로고    scopus 로고
    • Tumor suppression in the absence of p53-mediated cell-cycle arrest, apoptosis, and senescence
    • Li, T., N. Kon, L. Jiang, M. Tan, T. Ludwig, Y. Zhao, R. Baer, and W. Gu. 2012. Tumor suppression in the absence of p53-mediated cell-cycle arrest, apoptosis, and senescence. Cell 149: 1269-1283.
    • (2012) Cell , vol.149 , pp. 1269-1283
    • Li, T.1    Kon, N.2    Jiang, L.3    Tan, M.4    Ludwig, T.5    Zhao, Y.6    Baer, R.7    Gu, W.8
  • 36
    • 0026801075 scopus 로고
    • CD44 can be activated to function as an hyaluronic acid receptor in normal murine T cells
    • Lesley, J., and R. Hyman. 1992. CD44 can be activated to function as an hyaluronic acid receptor in normal murine T cells. Eur. J. Immunol. 22: 2719-2723.
    • (1992) Eur. J. Immunol. , vol.22 , pp. 2719-2723
    • Lesley, J.1    Hyman, R.2
  • 37
    • 0023161452 scopus 로고
    • Distinction of virgin and memory T lymphocytes. Stable acquisition of the Pgp-1 glycoprotein concomitant with antigenic stimulation
    • Budd, R. C., J. C. Cerottini, C. Horvath, C. Bron, T. Pedrazzini, R. C. Howe, and H. R. MacDonald. 1987. Distinction of virgin and memory T lymphocytes. Stable acquisition of the Pgp-1 glycoprotein concomitant with antigenic stimulation. J. Immunol. 138: 3120-3129.
    • (1987) J. Immunol. , vol.138 , pp. 3120-3129
    • Budd, R.C.1    Cerottini, J.C.2    Horvath, C.3    Bron, C.4    Pedrazzini, T.5    Howe, R.C.6    MacDonald, H.R.7
  • 39
    • 61449172037 scopus 로고    scopus 로고
    • Systematic and integrative analysis of large gene lists using DAVID bioinformatics resources
    • Huang, W., B. T. Sherman, and R. A. Lempicki. 2009. Systematic and integrative analysis of large gene lists using DAVID bioinformatics resources. Nat. Protoc. 4: 44-57.
    • (2009) Nat. Protoc. , vol.4 , pp. 44-57
    • Huang, W.1    Sherman, B.T.2    Lempicki, R.A.3
  • 44
    • 77953515701 scopus 로고    scopus 로고
    • Digoxin inhibits retinal ischemia-induced HIF-1α expression and ocular neovascularization
    • Yoshida, T., H. Zhang, T. Iwase, J. Shen, G. L. Semenza, and P. A. Campochiaro. 2010. Digoxin inhibits retinal ischemia-induced HIF-1α expression and ocular neovascularization. FASEB J. 24: 1759-1767.
    • (2010) FASEB J , vol.24 , pp. 1759-1767
    • Yoshida, T.1    Zhang, H.2    Iwase, T.3    Shen, J.4    Semenza, G.L.5    Campochiaro, P.A.6
  • 47
    • 58249093939 scopus 로고    scopus 로고
    • How mitochondria produce reactive oxygen species
    • Murphy, M. P. 2009. How mitochondria produce reactive oxygen species. Biochem. J. 417: 1-13.
    • (2009) Biochem. J. , vol.417 , pp. 1-13
    • Murphy, M.P.1
  • 50
    • 84888029430 scopus 로고    scopus 로고
    • Influenza A virus proteins NS1 and hemagglutinin along with M2 are involved in stimulation of autophagy in infected cells
    • Zhirnov, O. P., and H. D. Klenk. 2013. Influenza A virus proteins NS1 and hemagglutinin along with M2 are involved in stimulation of autophagy in infected cells. J. Virol. 87: 13107-13114.
    • (2013) J. Virol. , vol.87 , pp. 13107-13114
    • Zhirnov, O.P.1    Klenk, H.D.2
  • 51
    • 2942588874 scopus 로고    scopus 로고
    • Regulation of T-cell apoptosis by reactive oxygen species
    • Hildeman, D. A. 2004. Regulation of T-cell apoptosis by reactive oxygen species. Free Radic. Biol. Med. 36: 1496-1504.
    • (2004) Free Radic. Biol. Med. , vol.36 , pp. 1496-1504
    • Hildeman, D.A.1
  • 54
    • 84879610438 scopus 로고    scopus 로고
    • FoxO1 controls effector-to-memory transition and maintenance of functional CD8 T cell memory
    • Tejera, M. M., E. H. Kim, J. A. Sullivan, E. H. Plisch, and M. Suresh. 2013. FoxO1 controls effector-to-memory transition and maintenance of functional CD8 T cell memory. J. Immunol. 191: 187-199.
    • (2013) J. Immunol. , vol.191 , pp. 187-199
    • Tejera, M.M.1    Kim, E.H.2    Sullivan, J.A.3    Plisch, E.H.4    Suresh, M.5


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