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A splice-site mutation leads to haploinsufficiency of EXT2 mRNA for a dominant trait in a large family with multiple osteochondromas.

Abstract
Multiple osteochondromas (MO) is an autosomal-dominant disorder and mutations in EXT1 and EXT2 account up to 78% of the cases studied, including missense, nonsense, frameshift, and splice-site mutations. EXT1 and EXT2 encode glycosyltransferases required for the synthesis of heparan sulfate (HS) chains. The molecular pathogenesis underlying these mutations is still largely unknown. A heterozygous c.1173 + 1G > T (EXT2) mutation was identified in a three-generation 34-member MO family and is present in all 19 affected members. The consequence of this mutation is exon 7 being spliced out, and the result is a shift in the codon-reading frame from position 360 (R360) of the amino acid sequence leading to a premature termination codon, and the mutant mRNA is degraded to an undetectable level. Interestingly, HS glycosaminoglycans were also undetectable in the cartilage cap of the tumors by immunostaining. Full penetrance of this mutation in all affected members ranging from 5 to 70 years of age suggests this primary defect in EXT2 mRNA level, in conjunction with other cellular changes such as enhanced heparanase expression, can produce profound effect on the synthesis of HS chains in cartilage, the consequence of which impacts on the regulation of chondrocyte proliferation and differentiation.
AuthorsLiu Yang, Wing Sum Hui, Wilson C W Chan, Vivian C W Ng, Teresa H Y Yam, Helen C M Leung, Jian-Dong Huang, Daisy K Y Shum, Qiang Jie, Kenneth M C Cheung, Kathryn S E Cheah, Zhoujing Luo, Danny Chan
JournalJournal of orthopaedic research : official publication of the Orthopaedic Research Society (J Orthop Res) Vol. 28 Issue 11 Pg. 1522-30 (Nov 2010) ISSN: 1554-527X [Electronic] United States
PMID20872591 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't)
Copyright© 2010 Orthopaedic Research Society.
Chemical References
  • RNA, Messenger
  • Heparitin Sulfate
  • N-Acetylglucosaminyltransferases
  • exostosin-2
  • heparanase
  • Glucuronidase
Topics
  • Adolescent
  • Adult
  • Aged
  • Cell Differentiation
  • Child
  • Child, Preschool
  • Chondrocytes (cytology)
  • Exostoses, Multiple Hereditary (genetics)
  • Female
  • Glucuronidase (genetics)
  • Heparitin Sulfate (analysis)
  • Humans
  • Male
  • Middle Aged
  • Mutation
  • N-Acetylglucosaminyltransferases (genetics)
  • RNA Splicing
  • RNA, Messenger (metabolism)

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