CDB15:0000333 COL1A2 — ITGA2

Experimentally validated in Human, Mixed species; Orthology-inferred in Human, Mouse, Rat, Frog, Zebrafish, Chicken, Macaque, Pig, Dog, Cow, Chimp, Horse, Marmoset, Sheep

Title

Journal:; Year Published:

Abstract

A novel binding site in collagen type III for integrins alpha1beta1 and alpha2beta1.

The Journal of biological chemistry, 2005; PubMed, Bos taurus COL1A2 — Homo sapiens ITGA2
ABSTRACT: Previously identified high affinity integrin-binding motifs in collagens, GFOGER and GLOGER, are not present in type III collagen. Here, we first characterized the binding of recombinant I domains from integrins alpha(1) and alpha(2) (alpha(1)I and alpha(2)I) to fibrillar collagen types I-III and showed that each I domain bound to the three types of collagens with similar affinities. Using rotary shadowing followed by electron microscopy, we identified a high affinity binding region in human type III collagen recognized by alpha(1)I and alpha(2)I. Examination of the region revealed the presence of two sequences that contain the critical GER motif, GROGER and GAOGER. Collagen-like peptides containing these two motifs were synthesized, and their triple helical nature was confirmed by circular dichroism spectroscopy. Experiments show that the GROGER-containing peptide was able to bind both alpha(1)I and alpha(2)I with high affinity and effectively inhibit the binding of alpha(1)I and alpha(2)I to type III and I collagens, whereas the GAOGER-containing peptide was considerably less effective. Furthermore, the GROGER-containing peptide supported adhesion of human lung fibroblast cells when coated on a culture dish. Thus, we have identified a novel high affinity binding sequence for the collagen-binding integrin I domains.

Collagen-rich omentum is a premetastatic niche for integrin α2-mediated peritoneal metastasis.

eLife, 2020; PubMed, Homo sapiens COL1A2 — Homo sapiens ITGA2
ABSTRACT: The extracellular matrix (ECM) plays critical roles in tumor progression and metastasis. However, the contribution of ECM proteins to early metastatic onset in the peritoneal cavity remains unexplored. Here, we suggest a new route of metastasis through the interaction of integrin alpha 2 (ITGA2) with collagens enriched in the tumor coinciding with poor outcome in patients with ovarian cancer. Using multiple gene-edited cell lines and patient-derived samples, we demonstrate that ITGA2 triggers cancer cell adhesion to collagen, promotes cell migration, anoikis resistance, mesothelial clearance, and peritoneal metastasis in vitro and in vivo. Mechanistically, phosphoproteomics identify an ITGA2-dependent phosphorylation of focal adhesion kinase and mitogen-activated protein kinase pathway leading to enhanced oncogenic properties. Consequently, specific inhibition of ITGA2-mediated cancer cell-collagen interaction or targeting focal adhesion signaling may present an opportunity for therapeutic intervention of metastatic spread in ovarian cancer.
Basic Information on COL1A2
Ligand Name: collagen type I alpha 2 chain
Other Symbols: OI4
Ligand Location: secreted based on hpa, perplexity, uniprot
HGNC Gene Symbol Report: COL1A2
GeneCards: COL1A2
HGNC Gene Group: Collagens
Basic Information on ITGA2
Receptor Name: integrin subunit alpha 2
Other Symbols: CD49B, GPIa, VLAA2, HPA-5
Receptor Location: cell membrane based on perplexity
HGNC Gene Symbol Report: ITGA2
GeneCards: ITGA2
HGNC Gene Group: CD molecules, Integrins