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Items: 1 to 20 of 124

1.

TROSY-NMR reveals interaction between ERp57 and the tip of the calreticulin P-domain.

Frickel EM, Riek R, Jelesarov I, Helenius A, Wuthrich K, Ellgaard L.

Proc Natl Acad Sci U S A. 2002 Feb 19;99(4):1954-9. Epub 2002 Feb 12.

2.

Identification and characterization of structural domains of human ERp57: association with calreticulin requires several domains.

Silvennoinen L, Myllyharju J, Ruoppolo M, Orrù S, Caterino M, Kivirikko KI, Koivunen P.

J Biol Chem. 2004 Apr 2;279(14):13607-15. Epub 2004 Jan 19.

3.

ERp57 functions as a subunit of specific complexes formed with the ER lectins calreticulin and calnexin.

Oliver JD, Roderick HL, Llewellyn DH, High S.

Mol Biol Cell. 1999 Aug;10(8):2573-82.

4.

NMR structures of 36 and 73-residue fragments of the calreticulin P-domain.

Ellgaard L, Bettendorff P, Braun D, Herrmann T, Fiorito F, Jelesarov I, Güntert P, Helenius A, Wüthrich K.

J Mol Biol. 2002 Sep 27;322(4):773-84.

PMID:
12270713
5.

Identification by mutational analysis of amino acid residues essential in the chaperone function of calreticulin.

Martin V, Groenendyk J, Steiner SS, Guo L, Dabrowska M, Parker JM, Müller-Esterl W, Opas M, Michalak M.

J Biol Chem. 2006 Jan 27;281(4):2338-46. Epub 2005 Nov 16.

6.

ERp57 binds competitively to protein disulfide isomerase and calreticulin.

Kimura T, Imaishi K, Hagiwara Y, Horibe T, Hayano T, Takahashi N, Urade R, Kato K, Kikuchi M.

Biochem Biophys Res Commun. 2005 May 27;331(1):224-30.

PMID:
15845382
7.

Enhanced catalysis of ribonuclease B folding by the interaction of calnexin or calreticulin with ERp57.

Zapun A, Darby NJ, Tessier DC, Michalak M, Bergeron JJ, Thomas DY.

J Biol Chem. 1998 Mar 13;273(11):6009-12.

8.
9.

Association of ERp57 with mouse MHC class I molecules is tapasin dependent and mimics that of calreticulin and not calnexin.

Harris MR, Lybarger L, Yu YY, Myers NB, Hansen TH.

J Immunol. 2001 Jun 1;166(11):6686-92.

10.

The transient association of ERp57 with N-glycosylated proteins is regulated by glucose trimming.

Van der Wal FJ, Oliver JD, High S.

Eur J Biochem. 1998 Aug 15;256(1):51-9.

11.

Specific interaction of ERp57 and calnexin determined by NMR spectroscopy and an ER two-hybrid system.

Pollock S, Kozlov G, Pelletier MF, Trempe JF, Jansen G, Sitnikov D, Bergeron JJ, Gehring K, Ekiel I, Thomas DY.

EMBO J. 2004 Mar 10;23(5):1020-9. Epub 2004 Feb 26.

12.

Crystal structure of the bb' domains of the protein disulfide isomerase ERp57.

Kozlov G, Maattanen P, Schrag JD, Pollock S, Cygler M, Nagar B, Thomas DY, Gehring K.

Structure. 2006 Aug;14(8):1331-9.

13.

The DNA-binding activity of protein disulfide isomerase ERp57 is associated with the a(') domain.

Grillo C, Coppari S, Turano C, Altieri F.

Biochem Biophys Res Commun. 2002 Jul 5;295(1):67-73.

PMID:
12083768
14.

Delineation of the lectin site of the molecular chaperone calreticulin.

Thomson SP, Williams DB.

Cell Stress Chaperones. 2005 Autumn;10(3):242-51.

15.

The thiol-dependent reductase ERp57 interacts specifically with N-glycosylated integral membrane proteins.

Elliott JG, Oliver JD, High S.

J Biol Chem. 1997 May 23;272(21):13849-55. Erratum in: J Biol Chem 1997 Aug 8;272(32):20312.

16.

The primary substrate binding site in the b' domain of ERp57 is adapted for endoplasmic reticulum lectin association.

Russell SJ, Ruddock LW, Salo KE, Oliver JD, Roebuck QP, Llewellyn DH, Roderick HL, Koivunen P, Myllyharju J, High S.

J Biol Chem. 2004 Apr 30;279(18):18861-9. Epub 2004 Feb 10.

17.

ERp57 is a multifunctional thiol-disulfide oxidoreductase.

Frickel EM, Frei P, Bouvier M, Stafford WF, Helenius A, Glockshuber R, Ellgaard L.

J Biol Chem. 2004 Apr 30;279(18):18277-87. Epub 2004 Feb 10.

18.

Calnexin, calreticulin, and ERp57: teammates in glycoprotein folding.

Ellgaard L, Frickel EM.

Cell Biochem Biophys. 2003;39(3):223-47. Review.

PMID:
14716078
20.

Ca2+-dependent redox modulation of SERCA 2b by ERp57.

Li Y, Camacho P.

J Cell Biol. 2004 Jan 5;164(1):35-46. Epub 2003 Dec 29.

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