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Citations to this article

Sprouty-2 regulates HIV-specific T cell polyfunctionality
Yen-Ling Chiu, … , Diane E. Griffin, Jonathan P. Schneck
Yen-Ling Chiu, … , Diane E. Griffin, Jonathan P. Schneck
Published December 2, 2013
Citation Information: J Clin Invest. 2014;124(1):198-208. https://doi.org/10.1172/JCI70510.
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Research Article Virology Article has an altmetric score of 17

Sprouty-2 regulates HIV-specific T cell polyfunctionality

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Abstract

The ability of individual T cells to perform multiple effector functions is crucial for protective immunity against viruses and cancer. This polyfunctionality is frequently lost during chronic infections; however, the molecular mechanisms driving T cell polyfunctionality are poorly understood. We found that human T cells stimulated by a high concentration of antigen lacked polyfunctionality and expressed a transcription profile similar to that of exhausted T cells. One specific pathway implicated by the transcription profile in control of T cell polyfunctionality was the MAPK/ERK pathway. This pathway was altered in response to different antigen concentrations, and polyfunctionality correlated with upregulation of phosphorylated ERK. T cells that were stimulated with a high concentration of antigen upregulated sprouty-2 (SPRY2), a negative regulator of the MAPK/ERK pathway. The clinical relevance of SPRY2 was confirmed by examining SPRY2 expression in HIV-specific T cells, where high levels of SPRY2 were seen in HIV-specific T cells and inhibition of SPRY2 expression enhanced the HIV-specific polyfunctional response independently of the PD-1 pathway. Our findings indicate that increased SPRY2 expression during chronic viral infection reduces T cell polyfunctionality and identify SPRY2 as a potential target for immunotherapy.

Authors

Yen-Ling Chiu, Liang Shan, Hailiang Huang, Carl Haupt, Catherine Bessell, David H. Canaday, Hao Zhang, Ya-Chi Ho, Jonathan D. Powell, Mathias Oelke, Joseph B. Margolick, Joel N. Blankson, Diane E. Griffin, Jonathan P. Schneck

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Year: 2025 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 Total
Citations: 1 2 2 3 3 3 5 5 5 4 1 34
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Citations to this article (34)

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Alzheimer's & dementia (Amsterdam, Netherlands) 2025
Deletion of SNX9 alleviates CD8 T cell exhaustion for effective cellular cancer immunotherapy
Trefny MP, Kirchhammer N, Auf der Maur P, Natoli M, Schmid D, Germann M, Fernandez Rodriguez L, Herzig P, Lötscher J, Akrami M, Stinchcombe JC, Stanczak MA, Zingg A, Buchi M, Roux J, Marone R, Don L, Lardinois D, Wiese M, Jeker LT, Bentires-Alj M, Rossy J, Thommen DS, Griffiths GM, Läubli H, Hess C, Zippelius A
Nature Communications 2023
T cell-mediated curation and restructuring of tumor tissue coordinates an effective immune response.
Hickey JW, Haist M, Horowitz N, Caraccio C, Tan Y, Rech AJ, Baertsch MA, Rovira-Clavé X, Zhu B, Vazquez G, Barlow G, Agmon E, Goltsev Y, Sunwoo JB, Covert M, Nolan GP
Cell Reports 2023
Wnt Activation Promotes Memory T cell Polyfunctionality via Epigenetic Regulator PRMT1
Bo-Yi Sung, Yi-Hsin Lin, Qiongman Kong, Pali D Shah, Joan Glick Bieler, Scott Palmer, Kent J. Weinhold, Hong-Ru Chang, Hailiang Huang, Robin Avery, Jonathan Schneck, Yen-Ling Chiu
Journal of Clinical Investigation 2022
Fluctuations in T cell receptor and pMHC interactions regulate T cell activation
J Egan, E Abu-Shah, O Dushek, T Elliott, B MacArthur
Journal of The Royal Society Interface 2022
Sprouty2 positively regulates T cell function and airway inflammation through regulation of CSK and LCK kinases
A Sripada, K Sirohi, L Michalec, L Guo, JT McKay, S Yadav, M Verma, J Good, D Rollins, MM Gorska, R Alam, A Bhandoola
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A Draghi, CA Chamberlain, S Khan, K Papp, M Lauss, S Soraggi, HD Radic, M Presti, K Harbst, A Gokuldass, A Kverneland, M Nielsen, MC Westergaard, MH Andersen, I Csabai, G Jönsson, Z Szallasi, IM Svane, M Donia
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