Id1 expression in CD4 T cells promotes differentiation and function of follicular helper T cells and upregulation of related functional molecules

Author:

Liu Chen1ORCID,Zeng Xingyue1,Xiong Ziqi1,Bahabayi Ayibaota1,Hasimu Ainizati1,Liu Tianci1,Zheng Mohan2,Ren Liwei3,Alimu Xiayidan1,Lu Songsong1

Affiliation:

1. Department of Clinical Laboratory Peking University People's Hospital Beijing China

2. School of Basic Medical Sciences Peking University Health Science Center Beijing China

3. Department of Immunology, School of Basic Medical Sciences Peking University Health Science Center Beijing China

Abstract

AbstractAlthough the roles of E proteins and inhibitors of DNA‐binding (Id) in T follicular helper (TFH) and T follicular regulatory (TFR) cells have been previously reported, direct models demonstrating the impact of multiple E protein members have been lacking. To suppress all E proteins including E2A, HEB and E2‐2, we overexpressed Id1 in CD4 cells using a CD4‐Id1 mouse model, to observe any changes in TFH and TFR cell differentiation. Our objective was to gain better understanding of the roles that E proteins and Id molecules play in the differentiation of TFH and TFR cells. The CD4‐Id1 transgenic (TG) mice that we constructed overexpressed Id1 in CD4 cells, inhibiting E protein function. Our results showed an increase in the proportion and absolute numbers of Treg, TFH and TFR cells in the spleen of TG mice. Additionally, the expression of surface characterisation molecules PD‐1 and ICOS was significantly upregulated in TFH and TFR cells. The study also revealed a downregulation of the marginal zone B cell precursor and an increase in the activation and secretion of IgG1 in spleen B cells. Furthermore, the peripheral TFH cells of TG mice enhanced the function of assisting B cells. RNA sequencing results indicated that a variety of TFH‐related functional molecules were upregulated in TFH cells of Id1 TG mice. In conclusion, E proteins play a crucial role in regulating TFH/TFR cell differentiation and function and suppressing E protein activity promotes germinal centre humoral immunity, which has important implications for immune regulation and treating related diseases.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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