Genetic and orthopedic aspects of collagen disorders

被引:45
作者
Carter, Erin M. [1 ]
Raggio, Cathleen L. [1 ]
机构
[1] Hosp Special Surg, Kathryn O & Alan C Greenberg Ctr Skeletal Dysplas, New York, NY 11238 USA
关键词
cartilage; collagen; skeletal dysplasia; WEISSENBACHER-ZWEYMULLER-SYNDROME; PLATYSPONDYLIC SKELETAL DYSPLASIA; MULTIPLE EPIPHYSEAL DYSPLASIA; STICKLER-SYNDROME; COL2A1; MUTATION; CZECH DYSPLASIA; C-PROPEPTIDE; OTOSPONDYLOMEGAEPIPHYSEAL DYSPLASIA; FIBRILLAR COLLAGEN; MARSHALL-SYNDROME;
D O I
10.1097/MOP.0b013e32832185c5
中图分类号
R72 [儿科学];
学科分类号
100202 [儿科学];
摘要
Purpose of review 'Collagens' are a family of structurally related proteins that play a wide variety of roles in the extracellular matrix. To date, there are at least 29 known types of collagen. Accordingly, abnormality in the various collagens produces a large category of diseases with heterogeneous symptoms. This review presents genetic and orthopedic aspects of type II, IX, and XI collagen disorders. Recent findings Although a diverse group of conditions, mutation of collagens affecting the articular cartilage typically produces an epiphyseal skeletal dysplasia phenotype. Often, the ocular or auditory systems or both are also involved. Treatment of these collagenopathies is symptomatic and individualized. Study of tissue from animal models allows examination of mutation effects on the abnormal protein structure and function. Summary The collagen superfamily comprises an important structural protein in mammalian connective tissue. Mutation of collagens produces a wide variety of genetic disorders, and those mutations affecting types II, IX, and XI collagens produce an overlapping spectrum of skeletal dysplasias. Findings range from lethal to mild, depending on the mutation of the collagen gene and its subsequent effect on the structure and/or metabolism of the resultant procollagen and/or collagen protein and its function in the body.
引用
收藏
页码:46 / 54
页数:9
相关论文
共 81 条
[1]
STICKLER-SYNDROME - A MUTATION IN THE NONHELICAL 3'-END OF TYPE-II PROCOLLAGEN GENE [J].
AHMAD, NN ;
DIMASCIO, J ;
KNOWLTON, RG ;
TASMAN, WS .
ARCHIVES OF OPHTHALMOLOGY, 1995, 113 (11) :1454-1457
[2]
AHMAD NN, 1993, AM J HUM GENET, V52, P39
[3]
ANDERSON IJ, 1990, AM J HUM GENET, V46, P896
[4]
Splicing mutations of 54-bp exons in the COL11A1 gene cause Marshall syndrome, but other mutations cause overlapping Marshall/Stickler phenotypes [J].
Annunen, S ;
Körkkö, J ;
Czarny, M ;
Warman, ML ;
Brunner, HG ;
Kääriäinen, H ;
Mulliken, JB ;
Tranebjaerg, L ;
Brooks, DG ;
Cox, GF ;
Cruysberg, JR ;
Curtis, MA ;
Davenport, SLH ;
Friedrich, CA ;
Kaitila, I ;
Krawczynski, MR ;
Latos-Bielenska, A ;
Mukai, S ;
Olsen, BR ;
Shinno, N ;
Somer, M ;
Vikkula, M ;
Zlotogora, J ;
Prockop, DJ ;
Ala-Kokko, L .
AMERICAN JOURNAL OF HUMAN GENETICS, 1999, 65 (04) :974-983
[5]
THE MARSHALL AND STICKLER SYNDROMES - OBJECTIVE REJECTION OF LUMPING [J].
AYME, S ;
PREUS, M .
JOURNAL OF MEDICAL GENETICS, 1984, 21 (01) :34-38
[6]
The genetic basis of the osteochondrodysplasias [J].
Baitner, AC ;
Maurer, SG ;
Gruen, MB ;
Di Cesare, PE .
JOURNAL OF PEDIATRIC ORTHOPAEDICS, 2000, 20 (05) :594-605
[7]
Bateman J.F., 1996, Extracellular Matrix, P22
[8]
Collagen XI nucleates self-assembly and limits lateral growth of cartilage fibrils [J].
Blaschke, UK ;
Eikenberry, EF ;
Hulmes, DJS ;
Galla, HJ ;
Bruckner, P .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (14) :10370-10378
[9]
BOGAERT R, 1992, J BIOL CHEM, V267, P22522
[10]
Fibrillar collagen: the key to vertebrate evolution? A tale of molecular incest [J].
Boot-Handford, RP ;
Tuckwell, DS .
BIOESSAYS, 2003, 25 (02) :142-151