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RNF122 targets STING for ubiquitination at residues K95,K117,and K155 to regulate antiviral responses in a teleost fish
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作者 Xiao-Wei Qin Chuan-Rui Li +5 位作者 Min-Cong Liang Tian-Hao Li Yan-Lin You Shao-Ping Weng Chang-Jun Guo Jian-Guo He 《Zoological Research》 2025年第4期750-760,共11页
Ring finger protein 122(RNF122),an E3 ubiquitin ligase,orchestrates antiviral immune responses in mammals by targeting retinoic acid-inducible gene 1 and melanoma differentiation-associated gene 5 for ubiquitination.H... Ring finger protein 122(RNF122),an E3 ubiquitin ligase,orchestrates antiviral immune responses in mammals by targeting retinoic acid-inducible gene 1 and melanoma differentiation-associated gene 5 for ubiquitination.However,its functional relevance in teleosts has yet to be clearly defined,particularly regarding the identification of substrate-specific regulatory sites.This study characterized RNF122 from mandarin fish(Siniperca chuatsi),termed scRNF122,and investigated its regulatory impact on stimulator of interferon genes(STING)-mediated antiviral signaling.Results showed that scRNF122 expression was up-regulated in response to mandarin fish ranavirus(MRV)infection,and its overexpression suppressed scSTING-mediated interferon(IFN)production and enhanced MRV replication.Co-immunoprecipitation confirmed a direct interaction between scRNF122 and scSTING.Functional assays demonstrated that scRNF122 facilitated scSTING degradation through the ubiquitin-proteasome pathway,a process impeded by MG132 treatment.Ubiquitination analyses of various scSTING mutants revealed that scRNF122 catalyzed scSTING ubiquitination at K95,K117,and K155 residues.Moreover,scRNF122 significantly impaired scSTING-dependent antiviral responses by engaging negative regulatory elements within the signaling cascade.Overall,scRNF122 was identified as a negative modulator of STING-mediated IFN signaling in mandarin fish,diminishing STING-dependent antiviral activity and promoting its degradation via the ubiquitin-proteasome pathway at lysine residues K95,K117,and K155.These findings provide mechanistic insight into the post-translational control of STING in teleosts and establish a foundation for future investigations into antiviral immune regulation. 展开更多
关键词 rnf122 STING UBIQUITINATION INTERFERON Innate immunity
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RNF122诱导细胞凋亡功能依赖于其RING结构域 被引量:2
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作者 彭智 吉兆宁 +1 位作者 石太平 马大龙 《生物化学与生物物理进展》 SCIE CAS CSCD 北大核心 2011年第9期816-820,共5页
人类功能基因RNF122能够明显抑制细胞生长,导致细胞凋亡.RNF122含有RING-H2结构域.为了研究RNF122的RING结构域和凋亡的相互关系,构建了RING结构域突变体.MTT和凋亡实验发现,RNF122与细胞存活的密切关系依赖于其RING结构域.进一步的实... 人类功能基因RNF122能够明显抑制细胞生长,导致细胞凋亡.RNF122含有RING-H2结构域.为了研究RNF122的RING结构域和凋亡的相互关系,构建了RING结构域突变体.MTT和凋亡实验发现,RNF122与细胞存活的密切关系依赖于其RING结构域.进一步的实验提示,RNF122能够负向调节ERK通路,而RING结构域突变型RNF122则能够增强ERK的磷酸化,提示RNF122可能通过ERK通路调节细胞的存活.总之,RING结构域对于RNF122发挥功能起至关重要的作用. 展开更多
关键词 RING结构域 rnf122 细胞凋亡 ERK通路
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