Related Experiment Video
Updated: Feb 15, 2026

A Pipeline to Investigate the Structures and Signaling Pathways of Sphingosine 1-Phosphate Receptors
Published on: June 8, 2022
Structural and functional correlation of the human complement receptor type 1
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.
Abstract:
Human CR1 is widely distributed in the circulation as a surface receptor as well as in soluble form in the plasma. It mediates a variety of functions that include phagocytosis and regulation of the complement cascade. This receptor has been cloned and the primary structure reveals that the cell-bound molecule is an integral membrane protein with typical transmembrane and cytoplasmic domains. Its extracellular portion is composed entirely of 30 short consensus repeats (SCR) each having 60 to 70 amino acids. This type of motif is the common structural element of the superfamily of complement regulatory and receptor proteins on chromosome 1. The amino-terminal 28 SCR of CR1 is uniquely organized into four tandem long homologous repeats (LHR) with sequence homologies among corresponding SCR as high as 99%. Each LHR encodes approximately 45 kD and each except the one that is proximal to the cell surface contains a separate binding site for C3b or C4b. Analysis of the genomic structure of CR1 reveals that these LHR are results of intragenic duplication of 20- to 30-kb segments of DNA. The structural allotypes of CR1 that vary in the lengths of the polypeptides are encoded by alleles that contain different numbers of LHR. Their predicted structures would have different numbers of C3b binding sites, perhaps resulting in molecules with different capacities to bind immune complexes.
Related Concept Videos
Types of Functions I
Types of Functions II
Structural Protein Function
Collagen, the most abundant protein in mammals, is found throughout the body. In connective tissue, such as skin, ligaments, and tendons, it provides tensile strength and elasticity. In bones and teeth, it mineralizes to...
Types of Receptors: Internal Receptors
Similar to membrane-bound receptors, the binding of a ligand to the intracellular receptor of causes a conformational change in the...
Types of Receptors: Cell Surface Receptors
Correlations

