| Literature DB >> 25381065 |
Changhoon Jeong, Jae Young Lee, Jiyeon Kim, Hyojin Chae, Hae-Il Park, Myungshin Kim1, Ok-Hwa Kim, Paul Kim, Young Kee Lee, Jongsun Jung.
Abstract
BACKGROUND: Multiple epiphyseal dysplasia is a common skeletal dysplasia characterized by mild short stature, early-onset osteoarthritis mainly involving the hip and knee joints, and abnormally small and/or irregular epiphyses. Multiple epiphyseal dysplasia is clinically and genetically heterogeneous and six genes are associated with the phenotype of multiple epiphyseal dysplasia. CASEEntities:
Mesh:
Substances:
Year: 2014 PMID: 25381065 PMCID: PMC4236474 DOI: 10.1186/1471-2474-15-371
Source DB: PubMed Journal: BMC Musculoskelet Disord ISSN: 1471-2474 Impact factor: 2.362
Figure 1Radiographs of proband at the age of 12 years. Anteroposterior view of knee joint showed shortening, fragmentation, and joint surface irregularity of distal femoral and proximal tibial epiphysis (A, B). Anteroposterior view of distal tibial epiphysis showed a lateral wedging and fragmentation (C, D). The tarsal navicular and cuneiform bone showed irregular ossification (E). The epiphysis of distal radius was wedge shaped and the epiphyses of the distal ulnae were relatively small and the carpal bone shows dysplasia and flattening (F). The epiphyses of proximal femur were spared (G).
Figure 2Radiographs of the proband’s father at the age of 41 years. Anteroposterior view of knee joints revealed early osteoarthritis with findings including of medial joint space narrowing and joint surface irregularity (A). The capital femoral epiphysis of the proband’s father has no evidence of dysplasia (B).
PCR primer sequences for and
| Primer sequences | |||
|---|---|---|---|
|
| Tm (°C) | Product size (bp) | |
| Exon 8-10 | F - CCGATGTGCTCCACTAACCT | 56 | 824 |
| R - GGCCAAGTTTAGAGCCACAG | |||
|
| |||
| Exon 2 | F - CAGCTTCCTGCACTGTCTGA | 56 | 241 |
| R - GACGAGGGGCACTACATCTC | |||
| Exon 3-4 | F - TGAGCCGTAGTGTGCTGTCT | 56 | 278 |
| R - CTGGAGGTCAATTGGCAGAG | |||
|
| |||
| Exon 2 | F - TTTGGGTCTCACCGAGGA | 56 | 293 |
| R - GCCTGGTTTTCTCTCCATCA | |||
| Exon 3 | F - CTTGAGGGACCCCTGATTTT | 56 | 152 |
| R - TGTTCTGAGTTCCCCCTTTC | |||
| Exon 4 | F - GCATTTTGCTTCATTGCTGA | 56 | 222 |
| R - AATTAGGGCCGGACTCCTC | |||
|
| |||
| Exon 8-9 | F - TTGAGGCGGGGTTGGGTG | 64 | 413 |
| R - ACCGTGCCGAGCCGTAGAT | |||
| Exon 10 | F - AGGAGTGTGACCTTTGCCTTCT | 64 | 334 |
| R - CTAGTCCAGCTTACCCCATCC | |||
| Exon 11-12 | F - GAAGTCATTCTGGCCTGGTC | 64 | 518 |
| R - AGCGTTTTGTCAAAGGCTACC | |||
| Exon 13 | F - CGGGTAGCCTTTGACAAAACG | 62 | 331 |
| R - GCCCGCCCACCGTAGAC | |||
| Exon 14-15 | F - GGCGGGCCCTGACTTTAG | 64 | 546 |
| R - ATAACCCCGCCCCTCTGT | |||
| Exon 16 | F - GTTCTGGGTGCCAGGTTC | 64 | 335 |
| R - AAGGGTTTTACGGAGGGTCAT | |||
| Exon 17 | F - TGCTCCCAACTGTCTCTCCA | 64 | 312 |
| R - ACCTGGGCCTGTGTGTCC | |||
| Exon 18-19 | F - TCTGAGAGGGAAGGGTCTGG | 64 | 443 |
| R - CCCTTCTCACTTCCCCCTCA | |||
|
| |||
| Exon 3 | F - AAAGGAGCCCAGAGAGCAAT | 59 | 290 |
| R - CAGTCCAAAACCTGGAGCAT | |||
Figure 3MD simulation of wild type and mutant model structure of trimer collagen. Wild type model structure (A), twisted form of the mutant (B), collagen-collagen interaction by a hydrogen bonding in wild type (C), the substitution of glycine to aspartic acid causing an interaction with the self strand (D), C-alpha distance between residues in wild type and mutant trimer (E and F), respectively, and energy plot of wild type and mutant collagen by Amber-GPU (G).