Type IX collagen proteoglycan from cartilage is covalently cross-linked to type II collagen.

Michel van der Rest, Richard Mayne

Journal of Biological Chemistry · 1988 · 265 citations · 28 references

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Concepts

TL;DR

Type IX collagen is a recently identified nonfibrillar cartilage component composed of three helical and four nonhelical domains, serving as the core protein for a single glycosaminoglycan side chain. The study aimed to elucidate the spatial relationship of type IX collagen with other matrix components by isolating and sequencing a lysine‑derived cross‑linked peptide. A cross‑linked peptide was isolated, sequenced, and modeled, revealing that type IX collagen resides on the fibril surface with its COL3 and NC4 domains projecting outward and its glycosaminoglycan chain positioned in the fibril gap region. The analysis showed that type IX collagen is covalently linked to type II collagen via a hydroxypyridinium cross‑link between the COL2 domain of an α2(IX) chain and the amino telopeptides of two α1(II) chains, a linkage situated near the glycosaminoglycan attachment site in the NC3 domain, and that the NC4 domain may serve as a binding site for other matrix constituents.

Abstract

Type IX collagen is a recently described component of cartilage. This nonfibril-forming molecule is composed of three helical (COL1-COL3) and four nonhelical domains (NC1-NC4) and also serves as a core protein for a single glycosaminoglycan side chain. To understand its spatial relationship with other matrix constituents, a peptide containing a lysine-derived cross-link was isolated and subjected to amino acid sequencing. The results show that type IX collagen is linked to type II collagen by a hydroxypyridinium cross-link. This cross-link connects the central triple helical (COL2) domain of one alpha 2(IX) chain to the amino telopeptides of two alpha 1(II) chains. The cross-link is very close to the glycosaminoglycan attachment site found in the nonhelical NC3 domain of the alpha 2(IX) chain. A model of the resulting assembly suggests that type IX collagen is located at the surface of the fibril with the short COL 3 domain and the basic globular NC4 domain projecting out from the surface of the fibril. The NC4 domain could, therefore, serve as a binding site for other matrix constituents. In this model, the glycosaminoglycan chain of type IX collagen would be located at the gap region of the fibril.

References

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