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RIPK3 promotes hantaviral replication by restricting JAK-STAT signaling without triggering necroptosis
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作者 Yue Si Haijun Zhang +14 位作者 Ziqing Zhou Xudong Zhu Yongheng Yang He Liu Liang Zhang Linfeng Cheng Kerong Wang Wei Ye Xin Lv Xijing Zhang wugang hou Gang Zhao Yingfeng Lei Fanglin Zhang Hongwei Ma 《Virologica Sinica》 SCIE CAS CSCD 2023年第5期741-754,共14页
Hantaan virus(HTNV)is a rodent-borne virus that causes hemorrhagic fever with renal syndrome(HFRS),resulting in a high mortality rate of 15%.Interferons(IFNs)play a critical role in the anti-hantaviral immune response... Hantaan virus(HTNV)is a rodent-borne virus that causes hemorrhagic fever with renal syndrome(HFRS),resulting in a high mortality rate of 15%.Interferons(IFNs)play a critical role in the anti-hantaviral immune response,and IFN pretreatment efficiently restricts HTNV infection by triggering the expression of a series of IFNstimulated genes(ISGs)through the Janus kinase-signal transducer and activator of transcription 1(JAK-STAT)pathway.However,the tremendous amount of IFNs produced during late infection could not restrain HTNV replication,and the mechanism remains unclear.Here,we demonstrated that receptor-interacting protein kinase 3(RIPK3),a crucial molecule that mediates necroptosis,was activated by HTNV and contributed to hantavirus evasion of IFN responses by inhibiting STAT1 phosphorylation.RNA-seq analysis revealed the upregulation of multiple cell death-related genes after HTNV infection,with RIPK3 identified as a key modulator of viral replication.RIPK3 ablation significantly enhanced ISGs expression and restrained HTNV replication,without affecting the expression of pattern recognition receptors(PRRs)or the production of type I IFNs.Conversely,exogenously expressed RIPK3 compromised the host's antiviral response and facilitated HTNV replication.RIPK3^(-/-)mice also maintained a robust ability to clear HTNV with enhanced innate immune responses.Mechanistically,we found that RIPK3 could bind STAT1 and inhibit STAT1 phosphorylation dependent on the protein kinase domain(PKD)of RIPK3 but not its kinase activity.Overall,these observations demonstrated a noncanonical function of RIPK3 during viral infection and have elucidated a novel host innate immunity evasion strategy utilized by HTNV. 展开更多
关键词 Hantaan virus(HTNV) RIPK3 INTERFERONS IFN-stimulated genes STAT1 Innate immune response
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Brain Glycogen:An Angel or a Devil for Ischemic Stroke?
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作者 Haiyun Guo Yumeng Li +1 位作者 wugang hou Yanhui Cai 《Neuroscience Bulletin》 SCIE CAS CSCD 2023年第4期690-694,共5页
Brain Glycogen Works as an Angel Under Physiological Condition Glycogen Metabolism in the Brain One of the unique characteristics of the brain is its diversity in neural cell types,and neurons and astrocytes exhibit d... Brain Glycogen Works as an Angel Under Physiological Condition Glycogen Metabolism in the Brain One of the unique characteristics of the brain is its diversity in neural cell types,and neurons and astrocytes exhibit different metabolic patterns[1].Glycogen mainly exists in astrocytes,not in neurons[2].Glycogen metabolism is conservative throughout the body.Similar to the liver and muscle,the astrocytic glycogen level is controlled by glycogenesis and glycogenolysis[3]. 展开更多
关键词 metabolism CONSERVATIVE BRAIN
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