mLST8 is essential for coronavirus replication and regulates its replication through the mTORC1 pathway

被引:6
作者
Fu, Yanan [1 ,2 ]
Fu, Zhen [1 ,2 ]
Su, Zhelin [1 ,2 ]
Li, Lisha [1 ,2 ]
Yang, Yilin [1 ,2 ]
Tan, Yubei [1 ,2 ]
Xiang, Yixin [1 ,2 ]
Shi, Yuejun [1 ,2 ]
Xie, Shengsong [3 ,4 ]
Sun, Limeng [1 ,2 ]
Peng, Guiqing [1 ,2 ,5 ,6 ]
机构
[1] Huazhong Agr Univ, Coll Vet Med, State Key Lab Agr Microbiol, Wuhan, Peoples R China
[2] Cooperat Innovat Ctr Sustainable Pig Prod, Key Lab Prevent Vet Med Hubei Prov, Wuhan, Peoples R China
[3] Huazhong Agr Univ, Key Lab Agr Anim Genet Breeding & Reprod, Minist Educ, Wuhan, Peoples R China
[4] Huazhong Agr Univ, Key Lab Swine Genet & Breeding, Minist Agr & Rural Affairs, Wuhan, Peoples R China
[5] Minist Agr & Rural Affairs, Key Lab Prevent & Control African Swine Fever & Ot, Wuhan, Peoples R China
[6] Frontiers Sci Ctr Anim Breeding & Sustainable Prod, Hubei Hongshan Lab, Wuhan, Peoples R China
来源
MBIO | 2023年 / 14卷 / 04期
基金
中国国家自然科学基金;
关键词
mLST8; coronavirus; replication; mTORC1; autophagy; CELL-GROWTH; AUTOPHAGY; COMPLEX; RAPTOR; PHOSPHORYLATION; INHIBITION; COMPONENTS; TARGET; MICE;
D O I
10.1128/mbio.00899-23
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Coronaviruses (CoVs), which pose a serious threat to human and animal health worldwide, need to hijack host factors to complete their replicative cycles. However, the current study of host factors involved in CoV replication remains unknown. Here, we identified a novel host factor, mammalian lethal with sec-13 protein 8 (mLST8), which is a common subunit of mTOR complex 1 (mTORC1) and mTOR complex 2 (mTORC2), and is critical for CoV replication. Inhibitor and knockout (KO) experiments revealed that mTORC1, but not mTORC2, is essential for transmissible gastroenteritis virus replication. Furthermore, mLST8 KO reduced the phosphorylation of unc-51-like kinase 1 (ULK1), a factor downstream of the mTORC1 signaling pathway, and mechanistic studies revealed that decreased phosphorylation of the mTORC1 downstream factor ULK1 promoted the activation of autophagy, which is responsible for antiviral replication in mLST8 KO cells. Then, transmission electron microscopy indicated that both mLST8 KO and autophagy activator inhibited the formation of double-membrane vesicles in early viral replication. Finally, mLST8 KO and autophagy activator treatment could also inhibit the replication of other CoVs, indicating a conserved relationship between autophagy activation and CoV replication. In summary, our work reveals that mLST8 is a novel host regulator of CoV replication, which provides new insights into the mechanism of CoV replication and can facilitate the development of broad-spectrum antiviral drugs. IMPORTANCECoVs are highly variable, and existing CoV vaccines are still limited in their ability to address mutations in CoVs. Therefore, the need to improve our understanding of the interaction of CoVs with the host during viral replication and to find targets for drugs against CoVs is urgent. Here, we found that a novel host factor, mLST8, is critical for CoV infection. Further studies showed that mLST8 KO inhibited the mTORC1 signaling pathway, and we found that autophagy activation downstream of mTORC1 was the main cause of antiviral replication in mLST8 KO cells. Autophagy activation impaired the formation of DMVs and inhibited early viral replication. These findings deepen our understanding of the CoV replication process and provide insights into potential therapeutic applications. CoVs are highly variable, and existing CoV vaccines are still limited in their ability to address mutations in CoVs. Therefore, the need to improve our understanding of the interaction of CoVs with the host during viral replication and to find targets for drugs against CoVs is urgent. Here, we found that a novel host factor, mLST8, is critical for CoV infection. Further studies showed that mLST8 KO inhibited the mTORC1 signaling pathway, and we found that autophagy activation downstream of mTORC1 was the main cause of antiviral replication in mLST8 KO cells. Autophagy activation impaired the formation of DMVs and inhibited early viral replication. These findings deepen our understanding of the CoV replication process and provide insights into potential therapeutic applications.
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页数:19
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