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A rostrocaudal muscular dystrophy caused by a defect in choline kinase beta, the first enzyme in phosphatidylcholine biosynthesis

  • Roger B. Sher
  • , Chieko Aoyama
  • , Kimberly A. Huebsch
  • , Shaonin Ji
  • , Janos Kerner
  • , Yan Yang
  • , Wayne N. Frankel
  • , Charles L. Hoppel
  • , Philip A. Wood
  • , Dennis E. Vance
  • , Gregory A. Cox
  • University of Alberta
  • Government of Alberta
  • Jackson Laboratory
  • University of Alabama at Birmingham
  • Case Western Reserve University
  • Louis Stokes VA Medical Center

Research output: Contribution to journalArticlepeer-review

100 Scopus citations

Abstract

Muscular dystrophies include a diverse group of genetically heterogeneous disorders that together affect 1 in 2000 births worldwide. The diseases are characterized by progressive muscle weakness and wasting that lead to severe disability and often premature death. Rostrocaudal muscular dystrophy (rmd) is a new recessive mouse mutation that causes a rapidly progressive muscular dystrophy and a neonatal forelimb bone deformity. The rmd mutation is a 1.6-kb intragenic deletion within the choline kinase beta (Chkb) gene, resulting in a complete loss of CHKB protein and enzymatic activity. CHKB is one of two mammalian choline kinase (CHK) enzymes (α and β) that catalyze the phosphorylation of choline to phosphocholine in the biosynthesis of the major membrane phospholipid phosphatidylcholine. While mutant rmd mice show a dramatic decrease of CHK activity in all tissues, the dystrophy is only evident in skeletal muscle tissues in an unusual rostral-to-caudal gradient. Minor membrane disruption similar to dysferlinopathies suggest that membrane fusion defects may underlie this dystrophy, because severe membrane disruptions are not evident as determined by creatine kinase levels, Evans Blue infiltration, and unaltered levels of proteins in the dystrophin-glycoprotein complex. The rmd mutant mouse offers the first demonstration of a defect in a phospholipid biosynthetic enzyme causing muscular dystrophy, representing a unique model for understanding mechanisms of muscle degeneration.

Original languageEnglish
Pages (from-to)4938-4948
Number of pages11
JournalJournal of Biological Chemistry
Volume281
Issue number8
DOIs
StatePublished - Feb 24 2006

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