Evidence map›Paper›PMID 42166002›Full record

ArticleMolecular and cellular biochemistry2026

N-glycosylation of ERLIN2 promotes hepatocellular carcinoma progression by enhancing CCNB1 stability.

Sijie Li, Huanhuan Huang, Jiahui Feng, Qiang Gu, Daquan Sun

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Article in Molecular and cellular biochemistry, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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4 · The record

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5 · Who and what money

Authors and funding

5 authors.

Sijie LiDepartment of Biochemistry and Molecular Biology & Research Center for Basic Medical Sciences, Guizhou Medical University, Guiyang, 550025, Guizhou Province, China.
Huanhuan HuangDepartment of Biochemistry and Molecular Biology & Research Center for Basic Medical Sciences, Guizhou Medical University, Guiyang, 550025, Guizhou Province, China.
Jiahui FengDepartment of Biochemistry and Molecular Biology & Research Center for Basic Medical Sciences, Guizhou Medical University, Guiyang, 550025, Guizhou Province, China.
Qiang GuDepartment of Biochemistry and Molecular Biology & Research Center for Basic Medical Sciences, Guizhou Medical University, Guiyang, 550025, Guizhou Province, China.
Daquan SunDepartment of Biochemistry and Molecular Biology & Research Center for Basic Medical Sciences, Guizhou Medical University, Guiyang, 550025, Guizhou Province, China. sundq05@126.com.

Funding

Basic Research Project of Science and Technology Department of Guizhou Province ZK [2024] General 136National Natural Science Foundation of China 81560390
6 · The paper itself

Abstract

Hepatocellular carcinoma (HCC) ranks among the most lethal cancers, and its dismal prognosis underscores the urgent need to elucidate the underlying carcinogenic mechanisms. Endoplasmic reticulum lipid rafts associated protein 2 (ERLIN2), an endoplasmic reticulum protein, has been implicated in various malignant tumors. However, its functional role in HCC remains poorly understood. Here, we found elevated ERLIN2 expression and N-glycosylation modification at asparagine 106 (N106) in HCC. We identify site-specific N-glycosylation as a crucial advantage of ERLIN2 that may result in aberrant cancer cell growth. Overexpression of either N-glycosylated ERLIN2 (wild-type, WT) or an asparagine-to-glutamine mutant (N106Q) in HCC cell lines indicated that N106 N-glycosylation of ERLIN2 acts as an important advantage in the tumorigenesis and triggers aberrant cell proliferation, migration, and invasion. Furthermore, we found that E3 ubiquitin ligase membrane-associated ring-CH-type finger protein 6 (MARCHF6) can mediate the ubiquitination degradation of ERLIN2, and this effect is more significant after the N-glycosylation at the N106 site is inhibited. In addition, excessive N-glycosylation at this site enhanced the interaction between ERLIN2 and cyclin B1 (CCNB1), leading to dysregulated CCNB1 expression and further accelerating the progression of HCC. Comprehensive studies confirm that N-glycosylation is a significant post-translational modification of ERLIN2 in HCC, and elucidating this mechanism may pave the way for the development of novel therapeutic strategies in the future.

Indexed as

Carcinoma, HepatocellularCyclin B1Liver NeoplasmsMembrane ProteinsNeoplasm ProteinsCell Line, TumorCell ProliferationDisease ProgressionGlycosylationHumansProtein StabilityCCNB1 protein, humanCyclin B1ERLIN2 protein, humanMembrane ProteinsNeoplasm ProteinsCCNB1ERLIN2HCCMARCHF6N-glycosylation

Identifiers

PMID42166002

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.