Beclin 1 prevents ISG15-mediated cytokine storms to secure fetal hematopoiesis and survival.

IF 13.3 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL Journal of Clinical Investigation Pub Date : 2024-11-26 DOI:10.1172/JCI177375
Wen Wei, Xueqin Gao, Jiawei Qian, Lei Li, Chen Zhao, Li Xu, Yanfei Zhu, Zhenzhen Liu, Nengrong Liu, Xueqing Wang, Zhicong Jin, Bowen Liu, Lan Xu, Jin Dong, Suping Zhang, Jiarong Wang, Yumu Zhang, Yao Yu, Zhanjun Yan, Yanjun Yang, Jie Lu, Yixuan Fang, Na Yuan, Jianrong Wang
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Abstract

Proper control of inflammatory responses is essential for embryonic development, but the underlying mechanism is poorly understood. Here, we show that under physiological conditions, inactivation of ISG15, an inflammation amplifier, is associated with the interaction of Beclin 1 (Becn1), via its ECD domain, with STAT3 in the major fetal hematopoietic organ of mice. Conditional loss of Becn1 caused sequential dysfunction and exhaustion of fetal liver hematopoietic stem cells, leading to lethal inflammatory cell-biased hematopoiesis in the fetus. Molecularly, the absence of Becn1 resulted in the release of STAT3 from Becn1 tethering and subsequent phosphorylation and translocation to the nucleus, which in turn directly activated the transcription of ISG15 in fetal liver hematopoietic cells, coupled with increased ISGylation and production of inflammatory cytokines, whereas inactivating STAT3 reduced ISG15 transcription and inflammation but improved hematopoiesis potential, and further silencing ISG15 mitigated the above collapse in the Becn1 null hematopoietic lineage. The Becn1-STAT3-ISG15 axis remains functional in autophagy-disrupted fetal hematopoietic organs. These results suggest that Becn1, in an autophagy-independent manner, secures hematopoiesis and survival of the fetus by directly inhibiting STAT3-ISG15 activation to prevent cytokine storms. Our findings highlight a previously undocumented role of Becn1 in governing ISG15 to safeguard the fetus.

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Beclin 1 可防止 ISG15 介导的细胞因子风暴,从而确保胎儿的造血和存活。
适当控制炎症反应对胚胎发育至关重要,但对其潜在机制却知之甚少。在这里,我们发现在生理条件下,炎症放大器 ISG15 的失活与小鼠胎儿主要造血器官中 Beclin 1(Becn1)通过其 ECD 结构域与 STAT3 的相互作用有关。Becn1的条件性缺失会导致胎儿肝脏造血干细胞相继出现功能障碍和衰竭,从而导致胎儿出现致命的炎症细胞偏型造血。分子上,Becn1 的缺失导致 STAT3 从 Becn1 的系链中释放,随后磷酸化并转位到细胞核,进而直接激活胎儿肝脏造血细胞中 ISG15 的转录、而使 STAT3 失活则会减少 ISG15 的转录和炎症反应,但会改善造血潜能。在自噬破坏的胎儿造血器官中,Becn1-STAT3-ISG15轴仍具有功能。这些结果表明,Becn1 以一种不依赖自噬的方式,通过直接抑制 STAT3-ISG15 的激活来防止细胞因子风暴,从而确保胎儿的造血和存活。我们的研究结果突显了Becn1在管理ISG15以保护胎儿方面以前未被记录的作用。
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来源期刊
Journal of Clinical Investigation
Journal of Clinical Investigation 医学-医学:研究与实验
CiteScore
24.50
自引率
1.30%
发文量
1034
审稿时长
2 months
期刊介绍: The Journal of Clinical Investigation, established in 1924 by the ASCI, is a prestigious publication that focuses on breakthroughs in basic and clinical biomedical science, with the goal of advancing the field of medicine. With an impressive Impact Factor of 15.9 in 2022, it is recognized as one of the leading journals in the "Medicine, Research & Experimental" category of the Web of Science. The journal attracts a diverse readership from various medical disciplines and sectors. It publishes a wide range of research articles encompassing all biomedical specialties, including Autoimmunity, Gastroenterology, Immunology, Metabolism, Nephrology, Neuroscience, Oncology, Pulmonology, Vascular Biology, and many others. The Editorial Board consists of esteemed academic editors who possess extensive expertise in their respective fields. They are actively involved in research, ensuring the journal's high standards of publication and scientific rigor.
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