Citations for
1EDEM1, EDEM2, TXNDC11
Mannosidase activity of EDEM1 and EDEM2 depends on an unfolded state of their glycoprotein substrates.
Shenkman M, Ron E, Yehuda R, Benyair R, Khalaila I, Lederkremer GZ.
Commun Biol. Oct 18;1:172. doi: 10.1038/s42003-018-0174-8. 2018
2EDEM1, EDEM2
The role of EDEM2 compared with EDEM1 in ricin transport from the endoplasmic reticulum to the cytosol.
Słomińska-Wojewódzka M, Pawlik A, Sokołowska I, Antoniewicz J, Węgrzyn G, Sandvig K.
Biochem J 457(3):485-96. doi: 10.1042/BJ20130155. 2014
3EDEM1
A shared endoplasmic reticulum-associated degradation pathway involving the EDEM1 protein for glycosylated and nonglycosylated proteins.
Shenkman M, Groisman B, Ron E, Avezov E, Hendershot LM, Lederkremer GZ.
J Biol Chem 288(4):2167-78. doi: 10.1074/jbc.M112.438275. Epub 2012 Dec 11. 2013
4EDEM1
Tyrosinase degradation is prevented when EDEM1 lacks the intrinsically disordered region.
Marin MB, Ghenea S, Spiridon LN, Chiritoiu GN, Petrescu AJ, Petrescu SM.
PLoS One 7(8):e42998. doi: 10.1371/journal.pone.0042998. Epub 2012 Aug 8. 2012
5EDEM1, ERLEC1
Mannose trimming is required for delivery of a glycoprotein from EDEM1 to XTP3-B and to late endoplasmic reticulum-associated degradation steps.
Groisman B, Shenkman M, Ron E, Lederkremer GZ.
J Biol Chem 286(2):1292-300. Epub 2010 Nov 9. 2011
6EDEM1
Characterization of early EDEM1 protein maturation events and their functional implications.
Tamura T, Cormier JH, Hebert DN.
J Biol Chem 286(28):24906-15. Epub 2011 Jun 1. 2011
7DNAJC10, EDEM1
Structural basis of an ERAD pathway mediated by the ER-resident protein disulfide reductase ERdj5.
Hagiwara M, Maegawa K, Suzuki M, Ushioda R, Araki K, Matsumoto Y, Hoseki J, Nagata K, Inaba K.
Mol Cell 41(4):432-44. doi: 10.1016/j.molcel.2011.01.021. 2011
8EDEM1
EDEM1 accelerates the trimming of alpha1,2-linked mannose on the C branch of N-glycans.
Hosokawa N, Tremblay LO, Sleno B, Kamiya Y, Wada I, Nagata K, Kato K, Herscovics A.
Glycobiology 20(5):567-75. Epub 2010 Jan 11. 2010
9EDEM1
A dual role for EDEM1 in the processing of rod opsin.
Kosmaoglou M, Kanuga N, Aguilą M, Garriga P, Cheetham ME.
J Cell Sci 122(Pt 24):4465-72. Epub 2009 Nov 24. 2009
10EDEM1
EDEM1 recognition and delivery of misfolded proteins to the SEL1L-containing ERAD complex.
Cormier JH, Tamura T, Sunryd JC, Hebert DN.
Mol Cell 34(5):627-33. 2009
11DNAJC10, EDEM1, HSPA5
ERdj5 is required as a disulfide reductase for degradation of misfolded proteins in the ER.
Ushioda R, Hoseki J, Araki K, Jansen G, Thomas DY, Nagata K.
Science 321(5888):569-72. 2008
12EDEM1
EDEM1 reveals a quality control vesicular transport pathway out of the endoplasmic reticulum not involving the COPII exit sites.
Zuber C, Cormier JH, Guhl B, Santimaria R, Hebert DN, Roth J.
Proc Natl Acad Sci U S A 104(11):4407-12. Epub 2007 Mar 6. 2007
13EDEM1, EDEM2, EDEM3
Glycoprotein folding and the role of EDEM1, EDEM2 and EDEM3 in degradation of folding-defective glycoproteins.
Olivari S, Molinari M.
FEBS Lett 581(19):3658-64. Epub 2007 May 4. Review. 2007
14EDEM1
EDEM1 regulates ER-associated degradation by accelerating de-mannosylation of folding-defective polypeptides and by inhibiting their covalent aggregation.
Olivari S, Cali T, Salo KE, Paganetti P, Ruddock LW, Molinari M.
Biochem Biophys Res Commun 349(4):1278-84. Epub 2006 Sep 12. 2006
15DERL2, DERL3, EDEM1
Derlin-2 and Derlin-3 are regulated by the mammalian unfolded protein response and are required for ER-associated degradation.
Oda Y, Okada T, Yoshida H, Kaufman RJ, Nagata K, Mori K.
J Cell Biol 172(3):383-93. 2006
16EDEM2, EDEM1, EDEM3
A novel stress-induced EDEM variant regulating endoplasmic reticulum-associated glycoprotein degradation.
Olivari S, Galli C, Alanen H, Ruddock L, Molinari M.
J Biol Chem 280(4):2424-8. Epub 2004 Dec 3. 2005
17EDEM1
Role of EDEM in the release of misfolded glycoproteins from the calnexin cycle.
Molinari M, Calanca V, Galli C, Lucca P, Paganetti P.
Science 299(5611):1397-400. 2003
18EDEM1
A novel ER alpha-mannosidase-like protein accelerates ER-associated degradation.
Hosokawa N, Wada I, Hasegawa K, Yorihuzi T, Tremblay LO, Herscovics A, Nagata K.
EMBO Rep 2(5):415-22. 2001
19ANKS1A, BCL2L2, DCUN1D4, DHX38, DHX38, DVL3, EDEM1, FAM38A, FIG4, GCN1L1, HSPH1, IHPK1, KIAA0232, KIAA0240, KIAA0247, LARP4B, LPGAT1, LRRC8B, MFN2, MRPS27, NCSTN, NUP205, PHF15, PHF16, PHYHIP, PIEZO1, PUM2, RAPGEF5, RGP1, RIMS3, RNF10, RTF1, RUBCN, SNX19, SPOCK2, STAB1, TATDN2, TBC1D5, TIAF1, TM9SF4, TOPBP1, WAPL, WASF1, ZNF516, ZNF516, ZNF592
Prediction of the coding sequences of unidentified human genes. VI. the coding sequences of 80 new genes (KIAA0201-KIAA0280) deduced by analysis of cDNA clones from cell line KG-1 and brain.
Nagase T, et al.
DNA Res 3 : 321-329,341-54. 1996