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PREX1 improves homeostatic proliferation to maintain a naive CD4+ T cell compartment in older age
Huimin Zhang, Hirohisa Okuyama, Abhinav Jain, Rohit R. Jadhav, Bowen Wu, Ines Sturmlechner, Jose Morales, Shozo Ohtsuki, Cornelia M. Weyand, Jӧrg J. Goronzy
Huimin Zhang, Hirohisa Okuyama, Abhinav Jain, Rohit R. Jadhav, Bowen Wu, Ines Sturmlechner, Jose Morales, Shozo Ohtsuki, Cornelia M. Weyand, Jӧrg J. Goronzy
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Research Article Aging Immunology

PREX1 improves homeostatic proliferation to maintain a naive CD4+ T cell compartment in older age

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Abstract

The human adult immune system maintains normal T cell counts and compensates for T cell loss throughout life, mainly through peripheral homeostatic proliferation after the ability of the thymus to generate new T cells has rapidly declined at adolescence. This process is mainly driven by STAT5-activating cytokines, most importantly IL-7, and is very effective in maintaining a large naive CD4+ T cell compartment into older age. Here, we describe that naive CD4+ T cells undergo adaptations to optimize IL-7 responses by upregulating the guanine-nucleotide exchange factor PREX1 in older age. PREX1 promotes nuclear translocation of phosphorylated STAT5, thereby supporting homeostatic proliferation in response to IL-7. Through the same mechanism, increased expression of PREX1 also biases naive cells to differentiate into effector T cells. These findings are consistent with the concept that primarily beneficial adaptations during aging, i.e., improved homeostasis, account for unfavorable functions of the aged immune system, in this case biased differentiation.

Authors

Huimin Zhang, Hirohisa Okuyama, Abhinav Jain, Rohit R. Jadhav, Bowen Wu, Ines Sturmlechner, Jose Morales, Shozo Ohtsuki, Cornelia M. Weyand, Jӧrg J. Goronzy

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Figure 2

PREX1 upregulates cell cycle gene programs through facilitating STAT5 nuclear translocation.

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PREX1 upregulates cell cycle gene programs through facilitating STAT5 nu...
(A) RAC1-GTP and STAT5 phosphorylation of naive CD4+ T cells from 4 older adults cultured in the presence or absence of IL-7 (5 ng/mL) for 15 minutes. Representative of 2 experiments. Statistical comparison was done by 1-tailed, paired Student’s t test. *P < 0.05. (B) Naive CD4+ T cells from 7 older adults were transfected with either control or PREX1 siRNA and assayed for STAT5 phosphorylation and RAC1-GTP. Statistical comparison was done by 1-tailed, paired Student’s t test. *P < 0.05. (C) Immunofluorescence microscopy images of p-STAT5 (green), nuclei (blue), and merged staining (left panel). Scale bars: 20 μm. Cells from 2 donors were assayed. Data depicted as violin plots showing median and quartiles. Statistical comparison was done for each donor by 2-tailed, unpaired Student’s t test. **P < 0.01. (D) STAT5 ChIP-seq (32) genome tracks of PREX1 and indicated cell cycle genes after IL-2 stimulation. (E) Relative gene expression of PREX1 and cell cycle genes after PREX1 silencing of naive CD4+ T cells from 3 older adults and after 12 days of incubation with IL-7 (5 ng/mL). Statistical comparison was done by 1-tailed, unpaired Student’s t test. *P < 0.05. **P < 0.01.

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