Structural and functional correlation of the human complement receptor type 1

W W Wong1

  • 1Department of Rheumatology & Immunology, Brigham & Women's Hospital, Boston, Massachusetts 02115.

Insights

Human complement receptor 1 (CR1) plays key roles in immune responses. Genetic variations in CR1 influence its structure and function, affecting immune complex binding capacity.

Area of Science:

  • Immunology
  • Molecular Biology
  • Genetics

Background:

  • Human complement receptor 1 (CR1) is a crucial cell surface and soluble plasma protein.
  • CR1 mediates phagocytosis and regulates the complement cascade, vital immune functions.
  • Its structure comprises short consensus repeats (SCR), common in complement regulatory proteins.

Purpose of the Study:

  • To elucidate the structural organization of human CR1.
  • To understand the genetic basis of CR1 structural variations.
  • To explore how CR1 structural differences impact its function in immune complex binding.

Main Methods:

  • CR1 gene cloning and primary structure analysis.
  • Genomic structure analysis of CR1.
  • Comparative sequence homology analysis of CR1 repeats.

Main Results:

  • CR1 is an integral membrane protein with an extracellular portion made of 30 SCRs.
  • The amino-terminal 28 SCRs form four long homologous repeats (LHR), with high sequence homology.
  • Genomic analysis indicates LHRs arose from intragenic DNA duplications, explaining CR1 allotypes with varying C3b/C4b binding sites.

Conclusions:

  • CR1's structure is characterized by tandem LHRs, derived from gene duplications.
  • Allelic variations in LHR number lead to different CR1 allotypes.
  • These structural differences likely result in varied capacities for binding immune complexes and modulating complement activity.

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