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Biochemistry|January 10, 1998
Effects of clusterin overexpression on TNFalpha- and TGFbeta-mediated death of L929 cellsD Humphreys, T T Hochgrebe, S B Easterbrook-Smith, et al.FEBS Letters|March 3, 1986
Inhibition of serum complement haemolytic activity by lipid vesicles containing phosphatidylserineA Comis, S B Easterbrook-SmithFEBS Letters|June 3, 1985
C1q binding to mitochondria: a possible artefact?A Comis, S B Easterbrook-SmithMolecular Immunology|August 1, 1985
Binding of complement component C1q by rat adipocyte membranesA Comis, S B Easterbrook-SmithBiochimica Et Biophysica Acta|September 27, 1985
Evidence for arginine residues in the immunoglobulin-binding sites of human ClqA Comis, S B Easterbrook-SmithBiochimica Et Biophysica Acta|April 22, 1986
Binding of complement component C1q by spectrinA Comis, S B Easterbrook-SmithFEBS Letters|October 27, 1986
Conformational changes in C1q upon binding to IgG oligomersR J Vandenberg, S B Easterbrook-SmithBiochimica Et Biophysica Acta|October 17, 1996
C1q is a nucleotide binding protein and is responsible for the ability of clusterin preparations to promote immune complex formationP J Roeth, S B Easterbrook-SmithMolecular Immunology|March 1, 1990
Carbodiimide crosslinking of human C1q and rabbit IgGB D Wines, S B Easterbrook-SmithBiochimica Et Biophysica Acta|March 18, 1987
The presence of histidine residues at or near the C1q binding site of rabbit immunoglobulin GM N McCall, S B Easterbrook-SmithPageof 25