Candidate cell and matrix interaction domains on the collagen fibril, the predominant protein of vertebrates

被引:214
|
作者
Sweeney, Shawn M. [3 ]
Orgel, Joseph P. [4 ]
Fertala, Andrzej [5 ]
McAuliffe, Jon D. [6 ]
Turner, Kevin R. [1 ,2 ]
Di Lullo, Gloria A. [1 ,2 ]
Chen, Steven [7 ]
Antipova, Olga [4 ]
Perumal, Shiamalee [4 ]
Ala-Kokko, Leena [8 ,9 ,10 ]
Forlino, Antonella [11 ,12 ]
Cabral, Wayne A. [12 ]
Barnes, Aileen M. [12 ]
Marini, Joan C. [12 ]
Antonio, James D. San [1 ,2 ]
机构
[1] Thomas Jefferson Univ, Cardeza Fdn Hematol Res, Philadelphia, PA 19107 USA
[2] Thomas Jefferson Univ, Dept Med, Philadelphia, PA 19107 USA
[3] Univ Penn, Cardiovasc Inst, Philadelphia, PA 19104 USA
[4] IIT, Dept Biol Chem & Phys Sci, Ctr Synchrotron Radiat Res & Instrumentat, Chicago, IL 60616 USA
[5] Thomas Jefferson Univ, Dept Dermatol & Cutaneous Biol, Philadelphia, PA 19107 USA
[6] Univ Penn, Wharton Sch, Dept Stat, Philadelphia, PA 19104 USA
[7] Finch Univ Hlth Sci Chicago Med Sch, N Chicago, IL 60064 USA
[8] Univ Oulu, Bioctr, Collagen Res Unit, Oulu, Finland
[9] Univ Oulu, Dept Med Biochem & Mol Biol, Oulu, Finland
[10] Connect Tissue Gene Tests, Allentown, PA 18103 USA
[11] Univ Pavia, Dept Biochem A Castellani, I-27100 Pavia, Italy
[12] Eunice Kennedy Shriver Natl Inst Child Hlth & Hum, Bone & Extracellular Matrix Branch, Natl Inst Hlth, Bethesda, MD 20892 USA
关键词
D O I
10.1074/jbc.M709319200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Type I collagen, the predominant protein of vertebrates, polymerizes with type III and V collagens and non-collagenous molecules into large cable-like fibrils, yet how the fibril interacts with cells and other binding partners remains poorly understood. To help reveal insights into the collagen structure-function relationship, a data base was assembled including hundreds of type I collagen ligand binding sites and mutations on a two-dimensional model of the fibril. Visual examination of the distribution of functional sites, and statistical analysis of mutation distributions on the fibril suggest it is organized into two domains. The "cell interaction domain" is proposed to regulate dynamic aspects of collagen biology, including integrin-mediated cell interactions and fibril remodeling. The "matrix interaction domain" may assume a structural role, mediating collagen cross-linking, proteoglycan interactions, and tissue mineralization. Molecular modeling was used to superimpose the positions of functional sites and mutations from the two-dimensional fibril map onto a three-dimensional x-ray diffraction structure of the collagen microfibril in situ, indicating the existence of domains in the native fibril. Sequence searches revealed that major fibril domain elements are conserved in type I collagens through evolution and in the type II/XI collagen fibril predominant in cartilage. Moreover, the fibril domain model provides potential insights into the genotype-phenotype relationship for several classes of human connective tissue diseases, mechanisms of integrin clustering by fibrils, the polarity of fibril assembly, heterotypic fibril function, and connective tissue pathology in diabetes and aging.
引用
收藏
页码:21187 / 21197
页数:11
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