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Molecular characterization of two monoclonal antibodies specific for the LDL receptor-binding site of human

R Raffai1, R Maurice, K Weisgraber

  • 1Lipoprotein and Atherosclerosis Group, University of Ottawa Heart Institute, Canada.

Journal of Lipid Research
|September 1, 1995
PubMed

Insights

Researchers developed monoclonal antibodies (mAbs) to probe the low-density lipoprotein receptor (LDLr) binding site of apolipoprotein E (apoE). These mAbs, 1D7 and 2E8, target overlapping epitopes within the LDLr-binding region, aiding in understanding apoE conformation and receptor interaction.

Area of Science:

  • Biochemistry
  • Immunology
  • Molecular Biology

Background:

  • Apolipoprotein E (apoE) is crucial for lipoprotein metabolism and interacts with the low-density lipoprotein receptor (LDLr).
  • The LDLr-binding site of apoE involves basic amino acids between residues 136 and 150.
  • ApoE exhibits conformational heterogeneity, influencing its interaction with cell surface receptors.

Purpose of the Study:

  • To generate monoclonal antibodies (mAbs) that function as conformational probes for the LDLr binding site of apoE.
  • To identify the specific epitopes of anti-human apoE mAbs 1D7 and 2E8 that inhibit apoE-LDLr binding.
  • To investigate the structural basis for the differential reactivity of mAbs and LDLr with apoE variants.

Main Methods:

  • Production and characterization of anti-human apoE mAbs (1D7 and 2E8).
  • Utilized apoE variants with amino acid substitutions to map antibody epitopes and assess LDLr binding.
  • Cloning and primary sequence analysis of mAb cDNAs, focusing on complementarity determining regions (CDRs).

Main Results:

  • Both mAbs 1D7 and 2E8 bind to epitopes overlapping the LDLr-binding site of apoE (residues 143-150).
  • mAb 2E8, similar to LDLr, showed reduced reactivity with apoE (Arg158 → Cys), suggesting indirect conformational effects.
  • Primary sequence analysis revealed distinct CDRs for 1D7 and 2E8, indicating recognition of different epitopes or topologies within the apoE binding site.

Conclusions:

  • Monoclonal antibodies 1D7 and 2E8 serve as valuable conformational probes for the apoE LDLr-binding site.
  • The study elucidates the epitope mapping of mAbs and their relationship to apoE-LDLr interactions.
  • Structural analysis suggests mAb 2E8 may share interaction modes with LDLr, potentially involving charged residues in its CDRs.

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