Separate roles of LMAN1 and MCFD2 in ER-to-Golgi trafficking of FV and FVIII

被引:7
|
作者
Zhang, Yuan [1 ]
Liu, Zhigang [1 ]
Zhang, Bin [1 ,2 ]
机构
[1] Genom Med Inst, Lerner Res Inst Cleveland Clin, Cleveland, OH USA
[2] Genom Med Inst, Cleveland Clin Lerner Res Inst, 9500 Euclid Ave, Cleveland, OH 44195 USA
关键词
COAGULATION-FACTOR VIII; COMBINED FACTOR-V; COMBINED DEFICIENCY; TRANSPORT RECEPTOR; CARGO RECEPTOR; ENDOPLASMIC-RETICULUM; LECTIN ERGIC-53; PROTEIN; SECRETION; DOMAIN;
D O I
10.1182/bloodadvances.2022008788
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Mutations in lectin, mannose-binding 1 (LMAN1) and multiple coagulation factor deficiency protein 2 (MCFD2) cause the combined deficiency of factor V (FV) and FVIII (F5F8D). LMAN1 and MCFD2 form a protein complex that transports FV and FVIII from the endoplasmic reticulum (ER) to the Golgi. Although both proteins are required for the cargo receptor function, little is known about the specific roles of LMAN1 and MCFD2 in transporting FV/FVIII. We used different LMAN1 and MCFD2 deficient cell lines to investigate the LMAN1/MCFD2-dependent FV/FVIII secretion pathway. LMAN1 deficiency led to more profound decreases in FV/FVIII secretion in HEK293T and HepG2 cells than in HCT116 cells, suggesting that regulation of cargo transport by the LMAN1/MCFD2 pathway varies in different cell types. Using these cell lines, we developed functional assays to accurately assess the pathogenicity of recently reported potential LMAN1 and MCFD2 missense mutations. LMAN1 with mutations abolishing carbohydrate binding can still partially rescue FV/FVIII secretion, suggesting that N-glycan binding is not essential for FV/FVIII transport. Surprisingly, overexpression of either wild-type or mutant MCFD2 is sufficient to rescue FV/FVIII secretion defects in LMAN1 deficient cells. These results suggest that cargo binding and transport are carried out by MCFD2 and that LMAN1 primarily serves as a shuttling carrier of MCFD2. Finally, overexpression of both LMAN1 and MCFD2 does not further increase FV/FVIII secretion, suggesting that the amount of the LMAN1-MCFD2 receptor complex is not a rate-limiting factor in ER-Golgi transport of FV/FVIII. This study provides new insight into the molecular mechanism of F5F8D and the intracellular trafficking of FV and FVIII.
引用
收藏
页码:1286 / 1296
页数:11
相关论文
共 36 条
  • [1] Molecular basis of LMAN1 in coordinating LMAN1-MCFD2 cargo receptor formation and ER-to-Golgi transport of FV/FVIII
    Zheng, Chunlei
    Liu, Hui-Hui
    Yuan, Shuguang
    Zhou, Jiahai
    Zhang, Bin
    [J]. BLOOD, 2010, 116 (25) : 5698 - 5706
  • [2] Critical Role of Calcium in the Regulation of the ER-to-Golgi Transport of FV and FVIII by the LMAN1-MCFD2 Cargo Receptor
    Zheng, Chunlei
    Liu, Huihui
    Ginsburg, David
    Zhang, Bin
    [J]. BLOOD, 2009, 114 (22) : 842 - 842
  • [3] Combined deficiency of factor V and factor VIII is due to mutations in either LMAN1 or MCFD2
    Zhang, B
    McGee, B
    Yamaoka, JS
    Guglielmone, H
    Downes, KA
    Minoldo, S
    Jarchum, G
    Peyvandi, F
    de Bosch, NB
    Ruiz-Saez, A
    Chatelain, B
    Olpinski, M
    Bockenstedt, P
    Sperl, W
    Kaufman, RJ
    Nichols, WC
    Tuddenham, EGD
    Ginsburg, D
    [J]. BLOOD, 2006, 107 (05) : 1903 - 1907
  • [4] EF-hand domains of MCFD2 mediate interactions with both LMAN1 and coagulation factor V or VIII
    Zheng, Chunlei
    Liu, Hui-hui
    Zhou, Jiahai
    Zhang, Bin
    [J]. BLOOD, 2010, 115 (05) : 1081 - 1087
  • [5] Mutations in the MCFD2 gene and a novel mutation in the LMAN1 gene in Indian families with combined deficiency of factor v and VIII
    Mohanty, D
    Ghosh, K
    Shetty, S
    Spreafico, M
    Garagiola, I
    Peyvandi, F
    [J]. AMERICAN JOURNAL OF HEMATOLOGY, 2005, 79 (04) : 262 - 266
  • [6] LMAN1 and MCFD2 form a cargo receptor complex and interact with coagulation factor VIII in the early secretory pathway
    Zhang, B
    Kaufman, RJ
    Ginsburg, D
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (27) : 25881 - 25886
  • [7] Mutations in LMAN1 and MCFD2 may account for all cases of combined deficiency of factor V and factor VIII.
    Zhang, B
    McGee, B
    Nichols, WC
    Guglielmone, H
    Downes, K
    Peyvandi, F
    de Bosch, NB
    Ruiz-Saez, A
    Chatelain, B
    Olpinski, M
    Bockenstedt, P
    Sperl, W
    Kaufman, RJ
    Ginsburg, D
    [J]. BLOOD, 2005, 106 (11) : 215A - 215A
  • [8] Mice deficient in LMAN1 exhibit FV and FVIII deficiencies and liver accumulation of α1-antitrypsin
    Zhang, Bin
    Zheng, Chunlei
    Zhu, Min
    Tao, Jiayi
    Vasievich, Matthew P.
    Baines, Andrea
    Kim, Jinoh
    Schekman, Randy
    Kaufman, Randal J.
    Ginsburg, David
    [J]. BLOOD, 2011, 118 (12) : 3384 - 3391
  • [9] Combined deficiency of factors V and VIII by chance coinheritance of parahaemophilia and haemophilia A, but not by mutations of either LMAN1 or MCFD2, in a Japanese family
    Suzuki, S.
    Nakamura, Y.
    Suzuki, N.
    Yamazaki, T.
    Takagi, Y.
    Tamura, S.
    Takagi, A.
    Kanematsu, T.
    Matsushita, T.
    Kojima, T.
    [J]. HAEMOPHILIA, 2018, 24 (01) : e13 - e16
  • [10] Novel homozygous mutation in MCFD2 and heterozygous small deletion in LMAN1 genes causing combined factor V and VIII deficiency
    Cetin, M.
    Unal, S.
    Bayhan, T.
    Oldenburg, J.
    Gumruk, F.
    [J]. JOURNAL OF THROMBOSIS AND HAEMOSTASIS, 2015, 13 : 935 - 935