Cullin 4B-RING E3 ligase negatively regulates the immunosuppressive capacity of mesenchymal stem cells by suppressing iNOS.

IF 13.7 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Ruiqi Yu, Hong Han, Shuxian Chu, Liping Qin, Mengying Du, Yanyan Ma, Yufeng Wang, Wei Jiang, Yu Song, Yongxin Zou, Molin Wang, Qiao Liu, Baichun Jiang, Yaoqin Gong, Gongping Sun
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Abstract

Mesenchymal stem cells (MSCs) are multipotent stem cells that can exert immunomodulatory capacity upon stimulation with pro-inflammatory cytokines. Our previous work has identified Cullin 4B (CUL4B), a scaffold protein in the CUL4B-RING E3 ligase (CRL4B) complex, as a key regulator in the differentiation of MSCs. Here, we demonstrate the critical role of CUL4B in regulating the immunosuppressive function of MSCs. When stimulated with pro-inflammatory cytokines, MSCs lacking CUL4B display enhanced immunosuppressive capacity, which is mediated by the elevated inducible nitric oxide synthase (iNOS). TGF-β signaling can suppress iNOS by inhibiting its transcription as well as promoting its protein degradation. We show that the CRL4B complex cooperates with PRC2 complex and HDACs to repress transcription of Dlx1 and Pmepa1, two inhibitors of TGF-β signaling, leading to decreased expression and accelerated degradation of iNOS. Our study unveils the CRL4B complex as a potential therapeutic target in promoting the immunosuppressive capacity of MSCs.

Abstract Image

Cullin 4B-RING E3连接酶通过抑制iNOS负向调节间充质干细胞的免疫抑制能力。
间充质干细胞(MSCs)是一种多能干细胞,在促炎细胞因子的刺激下可发挥免疫调节能力。我们之前的研究发现,CUL4B-RING E3连接酶(CRL4B)复合物中的支架蛋白Cullin 4B(CUL4B)是间充质干细胞分化过程中的关键调控因子。在这里,我们证明了 CUL4B 在调节间充质干细胞免疫抑制功能中的关键作用。当受到促炎细胞因子刺激时,缺乏 CUL4B 的间充质干细胞显示出更强的免疫抑制能力,这种能力是由诱导型一氧化氮合酶(iNOS)的升高介导的。TGF-β 信号可通过抑制 iNOS 的转录和促进其蛋白降解来抑制 iNOS。我们的研究表明,CRL4B复合物与PRC2复合物和HDACs合作抑制Dlx1和Pmepa1(TGF-β信号转导的两种抑制因子)的转录,从而导致iNOS的表达减少和降解加速。我们的研究揭示了 CRL4B 复合物是促进间充质干细胞免疫抑制能力的潜在治疗靶点。
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来源期刊
Cell Death and Differentiation
Cell Death and Differentiation 生物-生化与分子生物学
CiteScore
24.70
自引率
1.60%
发文量
181
审稿时长
3 months
期刊介绍: Mission, vision and values of Cell Death & Differentiation: To devote itself to scientific excellence in the field of cell biology, molecular biology, and biochemistry of cell death and disease. To provide a unified forum for scientists and clinical researchers It is committed to the rapid publication of high quality original papers relating to these subjects, together with topical, usually solicited, reviews, meeting reports, editorial correspondence and occasional commentaries on controversial and scientifically informative issues.
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