Citations for
1F5, F8, LMAN1
Structural characterization of carbohydrate binding by LMAN1 protein provides new insight into the endoplasmic reticulum export of factors V (FV) and VIII (FVIII).
Zheng C, Page RC, Das V, Nix JC, Wigren E, Misra S, Zhang B.
J Biol Chem 288(28):20499-509. doi: 10.1074/jbc.M113.461434. 2013
2LMAN1, LMAN2, LMAN2L
Subcellular localization of ERGIC-53 under endoplasmic reticulum stress condition.
Qin SY, Kawasaki N, Hu D, Tozawa H, Matsumoto N, Yamamoto K.
Glycobiology 22(12):1709-20. doi: 10.1093/glycob/cws114. Epub 2012 Jul 20. 2012
3FMFD1, FMFD2, LMAN1, MCFD2
Crystal structure of the LMAN1-CRD/MCFD2 transport receptor complex provides insight into combined deficiency of factor V and factor VIII.
Wigren E, Bourhis JM, Kursula I, Guy JE, Lindqvist Y.
FEBS Lett 584(5):878-82. Epub 2010 Feb 9. 2010
4LMAN1, MCFD2
EF-hand domains of MCFD2 mediate interactions with both LMAN1 and coagulation factor V or VIII.
Zheng C, Liu HH, Zhou J, Zhang B.
Blood 115(5):1081-7. Epub 2009 Dec 9. 2010
5LMAN1, MCFD2
Molecular basis of LMAN1 in coordinating LMAN1-MCFD2 cargo receptor formation and ER-to-Golgi transport of FV/FVIII.
Zheng C, Liu HH, Yuan S, Zhou J, Zhang B.
Blood 116(25):5698-706. Epub 2010 Sep 3. 2010
6LMAN2, LMAN2L, LMAN1
Molecular Basis of Sugar Recognition by the Human L-type Lectins ERGIC-53, VIPL, and VIP36.
Kamiya Y, Kamiya D, Yamamoto K, Nyfeler B, Hauri HP, Kato K.
J Biol Chem 283(4):1857-61. Epub 2007 Nov 19. 2008
7ERP44, LMAN1, PDIA2, SUMF1
Multistep, sequential control of the trafficking and function of the multiple sulfatase deficiency gene product, SUMF1 by PDI, ERGIC-53 and ERp44.
Fraldi A, Zito E, Annunziata F, Lombardi A, Cozzolino M, Monti M, Spampanato C, Ballabio A, Pucci P, Sitia R, Cosma MP.
Hum Mol Genet 17(17):2610-21. Epub 2008 May 28. 2008
8LMAN1, SERPINA1
Identification of ERGIC-53 as an intracellular transport receptor of alpha1-antitrypsin.
Nyfeler B, Reiterer V, Wendeler MW, Stefan E, Zhang B, Michnick SW, Hauri HP.
J Cell Biol 180(4):705-12. Epub 2008 Feb 18.PMID: 18283111 2008
9LMAN1, MCFD2
The sugar-binding ability of ERGIC-53 is enhanced by its interaction with MCFD2.
Kawasaki N, Ichikawa Y, Matsuo I, Totani K, Matsumoto N, Ito Y, Yamamoto K.
Blood 111(4):1972-9. Epub 2007 Dec 3. 2008
10LMAN1
Regulation of ERGIC-53 gene transcription in response to endoplasmic reticulum stress.
Renna M, Caporaso MG, Bonatti S, Kaufman RJ, Remondelli P.
J Biol Chem 282(31):22499-512. Epub 2007 May 29. 2007
11APH1A, APH1B, LMAN1, NCSTN, PSENEN
N-glycosylation of human nicastrin is required for interaction with the lectins from the secretory pathway calnexin and ERGIC-53.
Morais VA, Brito C, Pijak DS, Crystal AS, Fortna RR, Li T, Wong PC, Doms RW, Costa J.
Biochim Biophys Acta 1762(9):802-10. Epub 2006 Jul 26. 2006
12LMAN1
The cargo receptor ERGIC-53 is a target of the unfolded protein response.
Nyfeler B, Nufer O, Matsui T, Mori K, Hauri HP.
Biochem Biophys Res Commun 304(4):599-604. 2003
13LMAN1, LMAN2, LMAN2L
VIPL, a VIP36-like membrane protein with a putative function in the export of glycoproteins from the endoplasmic reticulum.
Neve EP, Svensson K, Fuxe J, Pettersson RF.
Exp Cell Res 288(1):70-83. 2003
14FMFD2, LMAN1
Molecular characterization of the ERGIC-53 gene in two Japanese patients with combined factor V-factor VIII deficiency.
Dansako H, Ishimaru F, Takai Y, Tomoda J, Nakase K, Fujii K, Ogama Y, Kozuka T, Sezaki N, Honda K, Harada M.
Ann Hematol 80(5):292-4. 2001
15FMFD2, LMAN1
ERGIC-53 gene structure and mutation analysis in 19 combined factors V and VIII deficiency families.
Nichols WC, et al.
Blood 93(7):2261-6. 1999
16FMFD2, LMAN1
From the ER to the golgi: insights from the study of combined factors V and VIII deficiency.
Nichols WC, et al.
Am J Hum Genet 64(6):1493-8. No abstract available 1999
17LMAN1
Mapping of structural determinants for the oligomerization of p58, a lectin-like protein of the intermediate compartment and cis-Golgi.
Lahtinen U, et al.
Eur J Biochem 260(2):392-7. 1999
18LMAN1
Molecular analysis of the ERGIC-53 gene in 35 families with combined factor V-factor VIII deficiency.
Neerman-Arbez M, et al.
Blood 93(7):2253-60. 1999
19FMFD2, LMAN1
Mutations in the ER-Golgi intermediate compartment protein ERGIC-53 cause combined deficiency of coagulation factors V and VIII.
Nichols WC, et al.
Cell 93 : 61-70. 1998
20LMAN1
Mutation analysis of the ERGIC53 gene in 39 families with combined deficiency of coagulation factors V and VIII (F5F8D). (abstr)
Neerman-Arbez M, et al.
Eur J Hum Genet 6 : C201. 1998
21LMAN1
The locus for combined factor V-factor VIII deficiency (F5F8D) maps to 18q21, between D18S849 and D18S1103.
Neerman-Arbez M, Antonarakis SE, Blouin JL, Zeinali S, Akhtari M, Afshar Y, Tuddenham EG.
Am J Hum Genet 61(1):143-50. 1997
22LMAN1
Linkage of combined factors V and VIII deficiency to chromosome 18q by homozygosity mapping.
Nichols WC, et al.
J Clin Invest 99(4):596-601. 1997
23LMAN1
Mapping of the MR60/ERGIC-53 gene to human chromosome 18q21.3-18q22 by in situ hybridization.
Arar C, et al.
Mamm Genome 7 : 791-792. 1996