TY - JOUR
T1 - Disease-associated mutations in human mannose-binding lectin compromise oligomerization and activity of the final protein
AU - Larsen, Flemming
AU - Madsen, Hans O
AU - Sim, Robert B
AU - Koch, Claus
AU - Garred, Peter
PY - 2004/5/14
Y1 - 2004/5/14
N2 - Deficiency of human mannose-binding lectin (MBL) caused by mutations in the coding part of the MBL2 gene is associated with increased risk and severity of infections and autoimmunity. To study the biological consequences of MBL mutations, we expressed wild type MBL and mutated MBL in Chinese hamster ovary cells. The normal MBL cDNA (WT MBL-A) was cloned, and the three known natural and two artificial variants were expressed in Chinese hamster ovary cells. When analyzed, WT MBL-A formed covalently linked higher oligomers with a molecular mass of about 300-450 kDa, corresponding to 12-18 single chains or 4-6 structural units. By contrast, all MBL variants formed a dominant band of about 50 kDa, with increasingly weaker bands at 75, 100, and 125 kDa corresponding to two, three, four, and five chains, respectively. In contrast to WT MBL-A, variant MBL formed noncovalent oligomers containing up to six chains (two structural units). MBL variants bound ligands with a markedly reduced capacity compared with WT MBL-A. Mutations in the collagenous region of human MBL compromise assembly of higher order oligomers, resulting in reduced ligand binding capacity and thus reduced capability to activate complement.
AB - Deficiency of human mannose-binding lectin (MBL) caused by mutations in the coding part of the MBL2 gene is associated with increased risk and severity of infections and autoimmunity. To study the biological consequences of MBL mutations, we expressed wild type MBL and mutated MBL in Chinese hamster ovary cells. The normal MBL cDNA (WT MBL-A) was cloned, and the three known natural and two artificial variants were expressed in Chinese hamster ovary cells. When analyzed, WT MBL-A formed covalently linked higher oligomers with a molecular mass of about 300-450 kDa, corresponding to 12-18 single chains or 4-6 structural units. By contrast, all MBL variants formed a dominant band of about 50 kDa, with increasingly weaker bands at 75, 100, and 125 kDa corresponding to two, three, four, and five chains, respectively. In contrast to WT MBL-A, variant MBL formed noncovalent oligomers containing up to six chains (two structural units). MBL variants bound ligands with a markedly reduced capacity compared with WT MBL-A. Mutations in the collagenous region of human MBL compromise assembly of higher order oligomers, resulting in reduced ligand binding capacity and thus reduced capability to activate complement.
KW - Amino Acid Sequence
KW - Amino Acid Substitution
KW - Animals
KW - CHO Cells
KW - Cloning, Molecular
KW - Codon/genetics
KW - Complement Activation/genetics
KW - Cricetinae
KW - Disease
KW - Genetic Variation
KW - Humans
KW - Macromolecular Substances
KW - Mannose-Binding Lectin/analogs & derivatives
KW - Molecular Sequence Data
KW - Mutagenesis, Site-Directed
KW - Mutation
KW - Protein Structure, Quaternary
KW - Recombinant Proteins/chemistry
KW - Transfection
UR - https://www.scopus.com/pages/publications/2442676733
U2 - 10.1074/jbc.M400520200
DO - 10.1074/jbc.M400520200
M3 - Journal article
C2 - 14764589
SN - 0021-9258
VL - 279
SP - 21302
EP - 21311
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 20
ER -