In Situ D-periodic Molecular Structure of Type II Collagen

被引:57
作者
Antipova, Olga [1 ]
Orgel, Joseph P. R. O.
机构
[1] IIT, BioCAT, Chicago, IL 60616 USA
基金
美国国家科学基金会;
关键词
CROSS-LINKING; CONFORMATIONAL-ANALYSIS; EXTRACELLULAR-MATRIX; DIFFRACTION PATTERN; FIBRIL STRUCTURE; C-TELOPEPTIDES; SEQUENCE DATA; CARTILAGE; SPECTROSCOPY; LAMPREY;
D O I
10.1074/jbc.M109.060400
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
Collagens are essential components of extracellular matrices in multicellular animals. Fibrillar type II collagen is the most prominent component of articular cartilage and other cartilage-like tissues such as notochord. Its in situ macromolecular and packing structures have not been fully characterized, but an understanding of these attributes may help reveal mechanisms of tissue assembly and degradation (as in osteo- and rheumatoid arthritis). In some tissues such as lamprey notochord, the collagen fibrillar organization is naturally crystalline and may be studied by x-ray diffraction. We used diffraction data from native and derivative notochord tissue samples to solve the axial, D-periodic structure of type II collagen via multiple isomorphous replacement. The electron density maps and heavy atom data revealed the conformation of the nonhelical telopeptides and the overall D-periodic structure of collagen type II in native tissues, data that were further supported by structure prediction and transmission electron microscopy. These results help to explain the observed differences in collagen type I and type II fibrillar architecture and indicate the collagen type II cross-link organization, which is crucial for fibrillogenesis. Transmission electron microscopy data show the close relationship between lamprey and mammalian collagen fibrils, even though the respective larger scale tissue architecture differs.
引用
收藏
页码:7087 / 7096
页数:10
相关论文
共 55 条
[1]   Defective collagen crosslinking in bone, but not in ligament or cartilage, in Bruck syndrome: Indications for a bone-specific telopeptide lysyl hydroxylase on chromosome 17 [J].
Bank, RA ;
Robins, SP ;
Wijmenga, C ;
Breslau-Siderius, LJ ;
Bardoel, AFJ ;
Van der Sluijs, HA ;
Pruijs, HEH ;
TeKoppele, JM .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (03) :1054-1058
[2]   High-flux hard X-ray microbeam using a single-bounce capillary with doubly focused undulator beam [J].
Barrea, Raul A. ;
Huang, Rong ;
Cornaby, Sterling ;
Bilderback, Donald H. ;
Irving, Thomas C. .
JOURNAL OF SYNCHROTRON RADIATION, 2009, 16 :76-82
[3]   Axial structure of the heterotypic collagen fibrils of vitreous humour and cartilage [J].
Bos, KJ ;
Holmes, DF ;
Kadler, KE ;
McLeod, D ;
Morris, NP ;
Bishop, PN .
JOURNAL OF MOLECULAR BIOLOGY, 2001, 306 (05) :1011-1022
[4]   PHASING THE MERIDIONAL DIFFRACTION PATTERN OF TYPE-I COLLAGEN USING ISOMORPHOUS DERIVATIVES [J].
BRADSHAW, JP ;
MILLER, A ;
WESS, TJ .
JOURNAL OF MOLECULAR BIOLOGY, 1989, 205 (04) :685-694
[5]   Molecular structure of the collagen triple helix [J].
Brodsky, B ;
Persikov, AV .
FIBROUS PROTEINS: COILED-COILS, COLLAGEN AND ELASTOMERS, 2005, 70 :301-+
[6]   COLLAGEN FIBRIL STRUCTURE IN LAMPREY [J].
BRODSKY, B ;
BELBRUNO, KC ;
HARDT, TA ;
EIKENBERRY, EF .
JOURNAL OF MOLECULAR BIOLOGY, 1994, 243 (01) :38-47
[7]   PREDICTION OF PROTEIN CONFORMATION [J].
CHOU, PY ;
FASMAN, GD .
BIOCHEMISTRY, 1974, 13 (02) :222-245
[8]   Algorithms for finding the axis of a helix: Fast rotational and parametric least-squares methods [J].
Christopher, NA ;
Swanson, R ;
Baldwin, TO .
COMPUTERS & CHEMISTRY, 1996, 20 (03) :339-345
[9]   CRYSTALLINE FIBRIL STRUCTURE OF TYPE-II COLLAGEN IN LAMPREY NOTOCHORD SHEATH [J].
EIKENBERRY, EF ;
CHILDS, B ;
SHEREN, SB ;
PARRY, DAD ;
CRAIG, AS ;
BRODSKY, B .
JOURNAL OF MOLECULAR BIOLOGY, 1984, 176 (02) :261-277
[10]   CROSS-LINKING IN COLLAGEN AND ELASTIN [J].
EYRE, DR ;
PAZ, MA ;
GALLOP, PM .
ANNUAL REVIEW OF BIOCHEMISTRY, 1984, 53 :717-748