PD-1 blockade increases the self-renewal of stem-like CD8 T cells to compensate for their accelerated differentiation into effectors

被引:27
作者
Gill, Amanda L. [1 ,2 ]
Wang, Peter H. [3 ]
Lee, Judong [1 ,2 ]
Hudson, William H. [1 ,2 ,9 ]
Ando, Satomi [4 ,5 ]
Araki, Koichi [4 ,5 ]
Hu, Yinghong [1 ,2 ]
Wieland, Andreas [6 ]
Im, Sejin [7 ]
Gavora, Autumn [1 ,2 ]
Medina, Christopher B. [1 ,2 ]
Freeman, Gordon J. [8 ]
Hashimoto, Masao [1 ,2 ]
Reiner, Steven L. [3 ]
Ahmed, Rafi [1 ,2 ]
机构
[1] Emory Univ, Sch Med, Emory Vaccine Ctr, Atlanta, GA 30329 USA
[2] Emory Univ, Sch Med, Dept Microbiol & Immunol, Atlanta, GA 30329 USA
[3] Columbia Univ, Irving Med Ctr, Vagelos Coll Phys & Surg, Dept Microbiol & Immunol, New York, NY 10032 USA
[4] Univ Cincinnati, Cincinnati Childrens Hosp Med Ctr, Div Infect Dis, Ctr Inflammat & Tolerance, Cincinnati, OH 45229 USA
[5] Univ Cincinnati, Coll Med, Dept Pediat, Cincinnati, OH 45229 USA
[6] Ohio State Univ, Dept Otolaryngol Head & Neck Surg, Columbus, OH 43210 USA
[7] Sungkyunkwan Univ, Sch Med, Dept Immunol, Suwon, South Korea
[8] Harvard Med Sch, Dana Farber Canc Inst, Dept Med Oncol, Boston, MA 02215 USA
[9] Baylor Coll Med, Dept Mol & Cellular Biol, Houston, TX 77030 USA
关键词
PERSISTENCE; ACTIVATION; INFECTION; RESPONSES; RAPAMYCIN; MAINTAIN; TARGET; SAFETY;
D O I
10.1126/sciimmunol.adg0539
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
PD-1(+)TCF-1(+) stem-like CD8 T cells act as critical resource cells for maintaining T cell immunity in chronic viral infections and cancer. In addition, they provide the proliferative burst of effector CD8 T cells after programmed death protein 1 (PD-1)-directed immunotherapy. However, it is not known whether checkpoint blockade diminishes the number of these stem-like progenitor cells as effector cell differentiation increases. To investigate this, we used the mouse model of chronic lymphocytic choriomeningitis virus (LCMV) infection. Treatment of chronically infected mice with either alpha PD-1 or alpha PD-L1 antibody not only increased effector cell differentiation from the virus-specific stem-like CD8 T cells but also increased their proliferation so their numbers were maintained. The increased self-renewal of LCMV-specific stem-like CD8 T cells was mTOR dependent. We used microscopy to understand the division of these progenitor cells and found that after PD-1 blockade, an individual dividing cell could give rise to a differentiated TCF-1(-) daughter cell alongside a self-renewing TCF-1(+) sister cell. This asymmetric division helped to preserve the number of stem-like cells. Moreover, we found that the PD-1(+)TCF-1(+) stem-like CD8 T cells retained their transcriptional program and their in vivo functionality in terms of responding to viral infection and to repeat PD-1 blockade. Together, our results demonstrate that PD-1 blockade does not deplete the stem-like population despite increasing effector differentiation. These findings have implications for PD-1-directed immunotherapy in humans.
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页数:13
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[1]   Phenotypic analysis of antigen-specific T lymphocytes [J].
Altman, JD ;
Moss, PAH ;
Goulder, PJR ;
Barouch, DH ;
McHeyzerWilliams, MG ;
Bell, JI ;
McMichael, AJ ;
Davis, MM .
SCIENCE, 1996, 274 (5284) :94-96
[2]   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)
[3]   Restoring function in exhausted CD8 T cells during chronic viral infection [J].
Barber, DL ;
Wherry, EJ ;
Masopust, D ;
Zhu, BG ;
Allison, JP ;
Sharpe, AH ;
Freeman, GJ ;
Ahmed, R .
NATURE, 2006, 439 (7077) :682-687
[4]   Safety and Activity of Anti-PD-L1 Antibody in Patients with Advanced Cancer [J].
Brahmer, Julie R. ;
Tykodi, Scott S. ;
Chow, Laura Q. M. ;
Hwu, Wen-Jen ;
Topalian, Suzanne L. ;
Hwu, Patrick ;
Drake, Charles G. ;
Camacho, Luis H. ;
Kauh, John ;
Odunsi, Kunle ;
Pitot, Henry C. ;
Hamid, Omid ;
Bhatia, Shailender ;
Martins, Renato ;
Eaton, Keith ;
Chen, Shuming ;
Salay, Theresa M. ;
Alaparthy, Suresh ;
Grosso, Joseph F. ;
Korman, Alan J. ;
Parker, Susan M. ;
Agrawal, Shruti ;
Goldberg, Stacie M. ;
Pardoll, Drew M. ;
Gupta, Ashok ;
Wigginton, Jon M. .
NEW ENGLAND JOURNAL OF MEDICINE, 2012, 366 (26) :2455-2465
[5]   High-dimensional single cell analysis identifies stem-like cytotoxic CD8+ T cells infiltrating human tumors [J].
Brummelman, Jolanda ;
Mazza, Emilia M. C. ;
Alvisi, Giorgia ;
Colombo, Federico S. ;
Grilli, Andrea ;
Mikulak, Joanna ;
Mavilio, Domenico ;
Alloisio, Marco ;
Ferrari, Francesco ;
Lopci, Egesta ;
Novellis, Pierluigi ;
Veronesi, Giulia ;
Lugli, Enrico .
JOURNAL OF EXPERIMENTAL MEDICINE, 2018, 215 (10) :2520-2535
[6]   Integrating single-cell transcriptomic data across different conditions, technologies, and species [J].
Butler, Andrew ;
Hoffman, Paul ;
Smibert, Peter ;
Papalexi, Efthymia ;
Satija, Rahul .
NATURE BIOTECHNOLOGY, 2018, 36 (05) :411-+
[7]   Sirolimus (rapamycin, Rapamune®) and combination therapy with cyclosporin A in the rat developing adjuvant arthritis model:: Correlation with blood levels and the effects of different oral formulations [J].
Carlson, RP ;
Hartman, DA ;
Ochalski, SJ ;
Zimmerman, JL ;
Glaser, KB .
INFLAMMATION RESEARCH, 1998, 47 (08) :339-344
[8]   TCF-1-Centered Transcriptional Network Drives an Effector versus Exhausted CD8 T Cell-Fate Decision [J].
Chen, Zeyu ;
Ji, Zhicheng ;
Ngiow, Shin Foong ;
Manne, Sasikanth ;
Cai, Zhangying ;
Huang, Alexander C. ;
Johnson, John ;
Staupe, Ryan P. ;
Bengsch, Bertram ;
Xu, Caiyue ;
Yu, Sixiang ;
Kurachi, Makoto ;
Herati, Ramin S. ;
Vella, Laura A. ;
Baxter, Amy E. ;
Wu, Jennifer E. ;
Khan, Omar ;
Beltra, Jean-Christophe ;
Giles, Josephine R. ;
Stelekati, Erietta ;
McLane, Laura M. ;
Lau, Chi Wai ;
Yang, Xiaolu ;
Berger, Shelley L. ;
Vahedi, Golnaz ;
Ji, Hongkai ;
Wherry, E. John .
IMMUNITY, 2019, 51 (05) :840-+
[9]   Ensembl 2022 [J].
Cunningham, Fiona ;
Allen, James E. ;
Allen, Jamie ;
Alvarez-Jarreta, Jorge ;
Amode, M. Ridwan ;
Armean, Irina M. ;
Austine-Orimoloye, Olanrewaju ;
Azov, Andrey G. ;
Barnes, If ;
Bennett, Ruth ;
Berry, Andrew ;
Bhai, Jyothish ;
Bignell, Alexandra ;
Billis, Konstantinos ;
Boddu, Sanjay ;
Brooks, Lucy ;
Charkhchi, Mehrnaz ;
Cummins, Carla ;
Fioretto, Luca Da Rin ;
Davidson, Claire ;
Dodiya, Kamalkumar ;
Donaldson, Sarah ;
El Houdaigui, Bilal ;
El Naboulsi, Tamara ;
Fatima, Reham ;
Giron, Carlos Garcia ;
Genez, Thiago ;
Martinez, Jose Gonzalez ;
Guijarro-Clarke, Cristina ;
Gymer, Arthur ;
Hardy, Matthew ;
Hollis, Zoe ;
Hourlier, Thibaut ;
Hunt, Toby ;
Juettemann, Thomas ;
Kaikala, Vinay ;
Kay, Mike ;
Lavidas, Ilias ;
Le, Tuan ;
Lemos, Diana ;
Marugan, Jose Carlos ;
Mohanan, Shamika ;
Mushtaq, Aleena ;
Naven, Marc ;
Ogeh, Denye N. ;
Parker, Anne ;
Parton, Andrew ;
Perry, Malcolm ;
Pilizota, Ivana ;
Prosovetskaia, Irina .
NUCLEIC ACIDS RESEARCH, 2022, 50 (D1) :D988-D995
[10]   Type 1 conventional dendritic cells maintain and guide the differentiation of precursors of exhausted T cells in distinct cellular niches [J].
Daehling, Sabrina ;
Mansilla, Ana Maria ;
Knoepper, Konrad ;
Grafen, Anika ;
Utzschneider, Daniel T. ;
Ugur, Milas ;
Whitney, Paul G. ;
Bachem, Annabell ;
Arampatzi, Panagiota ;
Imdahl, Fabian ;
Kaisho, Tsuneyasu ;
Zehn, Dietmar ;
Klauschen, Frederick ;
Garbi, Natalio ;
Kallies, Axel ;
Saliba, Antoine-Emmanuel ;
Gasteiger, Georg ;
Bedoui, Sammy ;
Kastenmueller, Wolfgang .
IMMUNITY, 2022, 55 (04) :656-+