胸腺Bmi-1阻碍γδT17的产生及其衍生的rorr - γt- il - 17a信号传导,延缓心脏衰老。

IF 9.4 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Qiuyi Wang,Yue Wang,Yujie Lin,Jiawen Zhou,Zhiyuan Mao,Xin Gu,Haiyun Chen,Jiyu Li,Ao Chen,Jin'ge Zhang,Rong Wang,Yingming Zhao,Mufeng Gu,Qing Li,Yongjie Zhang,Jianliang Jin
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引用次数: 0

摘要

预防衰老相关病理性心肌肥厚(SA-PCH)的新免疫衰老靶点有待探索。在本研究中,在生理性衰老的人和小鼠样本中,IL-17A水平随着生理性衰老、心力衰竭(HF)和SA-PCH而升高,并与胸腺Bmi-1表达呈负相关。生成Bmi-1f/fLckCre+小鼠和Bmi-1f/f幼崽,以确定Bmi-1是否通过维持胸腺T细胞发育来延缓T细胞衰老,从而预防SA-PCH。结果表明,Bmi-1通过上调Notch信号通路促进胸腺T细胞发育,并通过下调γδT17细胞分化信号通路阻止DN1 T细胞向γδT17细胞分化。Bmi-1通过抑制p53介导的- 1863 ~ - 1849 Ikzf1启动子区域的Ikzf1转录,上调Notch信号。Bmi-1-RING1B促进rorr γ - t泛素化和蛋白酶体降解,抑制γδT17细胞IL-17A的产生。Bmi-1还通过在- 1511至- 1497 Rorc启动子区域三甲基化H3K27,下调c-Maf转录的Rorc。随后,浸润心脏组织的外周γδT17细胞数量减少,同时缓解il - 17a依赖性心脏老化、肥大、功能障碍、衰老相关分泌表型(SASP)和巨噬细胞-肌成纤维细胞转化,最终改善SA-PCH。RORγt抑制剂SR1001和IL-17A中和抗体ixekizumab可预防胸腺RORγt-IL-17A依赖性SA-PCH。此外,rorγ - t通过ARG237与Bmi-1结合,通过GLU235与RING1B结合,可以作为SA-PCH的治疗策略,构建促进Bmi-1-RING1B与rorγ - t结合并降解rorγ - t的结合肽,抑制γδT17细胞分化和IL-17A的产生。因此,胸腺Bmi-1通过降低γδT17细胞数量来阻止il - 17a依赖性SA-PCH。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thymic Bmi-1 hampers γδT17 generation and its derived RORγt-IL-17A signaling to delay cardiac aging.
New immunosenescence targets for preventing senescence-associated pathological cardiac hypertrophy (SA-PCH) need to be explored. In the present study, with physiologically aged human and mouse samples, the IL-17A level increased with physiological aging, heart failure (HF), and SA-PCH and was negatively correlated with thymic Bmi-1 expression. Bmi-1f/fLckCre+ mice and Bmi-1f/f littermates were generated to determine whether Bmi-1 delayed T cell aging by maintaining thymic T cell development to prevent SA-PCH. As a result, Bmi-1 promoted thymic T cell development by upregulating Notch signaling and prevented DN1 T cells from differentiating into γδT17 cells by downregulating γδT17 cell differentiation signaling. Bmi-1 upregulated Notch signaling by inhibiting p53-mediated Ikzf1 transcription at the -1,863 to -1,849 Ikzf1 promoter region. Bmi-1-RING1B promoted RORγt ubiquitination and degradation by proteasome to inhibit the production of IL-17A in γδT17 cells. Bmi-1 also downregulated Rorc transcribed by c-Maf by trimethylating H3K27 at the -1,511 to -1,497 Rorc promoter region. Subsequently, the number of peripheral γδT17 cells infiltrating the heart tissues was reduced, while alleviating IL-17A-dependent cardiac aging, hypertrophy, dysfunction, senescence-associated secretory phenotype (SASP), and macrophage-myofibroblast transition, ultimately improving SA-PCH. The RORγt inhibitor SR1001 and IL-17A neutralizing antibody ixekizumab prevented thymic RORγt-IL-17A-dependent SA-PCH. Furthermore, RORγt bound to Bmi-1 through ARG237 and to RING1B through GLU235, which could be used as a therapeutic strategy for SA-PCH to construct binding peptides promoting Bmi-1-RING1B binding to RORγt and degrading RORγt for inhibiting γδT17 cell differentiation and IL-17A production. Thus, thymic Bmi-1 prevented IL-17A-dependent SA-PCH by decreasing γδT17 cell numbers.
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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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