ArticleThe Biochemical journal2022
LMAN1-MCFD2 complex is a cargo receptor for the ER-Golgi transport of α1-antitrypsin.
Article in The Biochemical journal, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 20 citations in OpenAlex.
- Article
- Clinical, Laboratory, Molecular, and Reproductive Aspects of Combined Deficiency of Factors V and VIII.Seminars in thrombosis and hemostasis · 2025Review
- Identifying dysregulated regions in amyotrophic lateral sclerosis through chromatin accessibility outliers.HGG advances · 2024Article
- Structure of full-length ERGIC-53 in complex with MCFD2 for cargo transport.Nature communications · 2024Article
- Biallelic FBXW7 knockout induces AKAP8-mediated DNA damage in neighbouring wildtype cells.Cell death discovery · 2023Article
- Mammalian cargo receptors for endoplasmic reticulum-to-Golgi transport: mechanisms and interactions.Biochemical Society transactions · 2023Review
- Separate roles of LMAN1 and MCFD2 in ER-to-Golgi trafficking of FV and FVIII.Blood advances · 2023Article
- LMAN1 is a receptor for house dust mite allergens.Cell reports · 2023Article
- Cargo selection in endoplasmic reticulum-to-Golgi transport and relevant diseases.The Journal of clinical investigation · 2023Review
- Secretion of functional α1-antitrypsin is cell type dependent: Implications for intramuscular delivery for gene therapy.Proceedings of the National Academy of Sciences of the United States of America · 2022Article
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Authors and funding
6 authors at 3 institutions in 2 countries.
Funding
Abstract
α1-antitrypsin (AAT) is a serine protease inhibitor synthesized in hepatocytes and protects the lung from damage by neutrophil elastase. AAT gene mutations result in AAT deficiency (AATD), which leads to lung and liver diseases. The AAT Z variant forms polymer within the endoplasmic reticulum (ER) of hepatocytes and results in reduction in AAT secretion and severe disease. Previous studies demonstrated a secretion defect of AAT in LMAN1 deficient cells, and mild decreases in AAT levels in male LMAN1 and MCFD2 deficient mice. LMAN1 is a transmembrane lectin that forms a complex with a small soluble protein MCFD2. The LMAN1-MCFD2 protein complex cycles between the ER and the Golgi. Here, we report that LMAN1 and MCFD2 knockout (KO) HepG2 and HEK293T cells display reduced AAT secretion and elevated intracellular AAT levels due to a delayed ER-to-Golgi transport of AAT. Secretion defects in KO cells were rescued by wild-type LMAN1 or MCFD2, but not by mutant proteins. Elimination of the second glycosylation site of AAT abolished LMAN1 dependent secretion. Co-immunoprecipitation experiment in MCFD2 KO cells suggested that AAT interaction with LMAN1 is independent of MCFD2. Furthermore, our results suggest that secretion of the Z variant, both monomers and polymers, is also LMAN1-dependent. Results provide direct evidence supporting that the LMAN1-MCFD2 complex is a cargo receptor for the ER-to-Golgi transport of AAT and that interactions of LMAN1 with an N-glycan of AAT is critical for this process. These results have implications in production of recombinant AAT and in developing treatments for AATD patients.
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