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Citations to this article

Proteasome activity regulates CD8+ T lymphocyte metabolism and fate specification
Christella E. Widjaja, … , Huib Ovaa, John T. Chang
Christella E. Widjaja, … , Huib Ovaa, John T. Chang
Published August 28, 2017
Citation Information: J Clin Invest. 2017;127(10):3609-3623. https://doi.org/10.1172/JCI90895.
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Research Article Immunology Article has an altmetric score of 102

Proteasome activity regulates CD8+ T lymphocyte metabolism and fate specification

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Abstract

During an immune response, CD8+ T lymphocytes can undergo asymmetric division, giving rise to daughter cells that exhibit distinct tendencies to adopt terminal effector and memory cell fates. Here we show that “pre-effector” and “pre-memory” cells resulting from the first CD8+ T cell division in vivo exhibited low and high rates of endogenous proteasome activity, respectively. Pharmacologic reduction of proteasome activity in CD8+ T cells early during differentiation resulted in acquisition of terminal effector cell characteristics, whereas enhancement of proteasome activity conferred attributes of memory lymphocytes. Transcriptomic and proteomic analyses revealed that modulating proteasome activity in CD8+ T cells affected cellular metabolism. These metabolic changes were mediated, in part, through differential expression of Myc, a transcription factor that controls glycolysis and metabolic reprogramming. Taken together, these results demonstrate that proteasome activity is an important regulator of CD8+ T cell fate and raise the possibility that increasing proteasome activity may be a useful therapeutic strategy to enhance the generation of memory lymphocytes.

Authors

Christella E. Widjaja, Jocelyn G. Olvera, Patrick J. Metz, Anthony T. Phan, Jeffrey N. Savas, Gerjan de Bruin, Yves Leestemaker, Celia R. Berkers, Annemieke de Jong, Bogdan I. Florea, Kathleen Fisch, Justine Lopez, Stephanie H. Kim, Daniel A. Garcia, Stephen Searles, Jack D. Bui, Aaron N. Chang, John R. Yates III, Ananda W. Goldrath, Hermen S. Overkleeft, Huib Ovaa, John T. Chang

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 Total
Citations: 1 7 5 5 3 5 3 3 1 33
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article in year 2022 (5)

Title and authors Publication Year
Lymphocyte Polarization During Immune Synapse Assembly: Centrosomal Actin Joins the Game
C Cassioli, C Baldari
Frontiers in immunology 2022
Protein synthesis, degradation, and energy metabolism in T cell immunity
JM Marchingo, DA Cantrell
Cellular and Molecular Immunology 2022
Cellular metabolic basis of altered immunity in the lungs of patients with COVID-19
S Li, F Zhao, J Ye, K Li, Q Wang, Z Du, Q Yue, S Wang, Q Wu, H Chen
Medical Microbiology and Immunology 2022
Proteasome complexes experience profound structural and functional rearrangements throughout mammalian spermatogenesis
Živković D, Sanchez Dafun A, Menneteau T, Schahl A, Lise S, Kervarrec C, Toste Rêgo A, da Fonseca PC, Chavent M, Pineau C, Burlet-Schiltz O, Marcoux J, Bousquet MP
Proceedings of the National Academy of Sciences 2022
Stress-mediated attenuation of translation undermines T-cell activity in cancer
Riesenberg BP, Hunt EG, Tennant MD, Hurst KE, Andrews AM, Leddy LR, Neskey DM, Hill EG, Rivera GO, Paulos CM, Gao P, Thaxton JE
Cancer research 2022

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