Muscular dystrophies include a diverse group of genetically heterogeneous disorders that affect 1:2000 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 causing a progressive muscular dystrophy with a rostral-to-caudal gradient of severity. We have identified the rmd mutation as a 1.6 kb deletion within the choline kinase beta (Chkb) gene, resulting in loss of CHKB protein and enzymatic activity. CHKB is one of two mammalian choline kinase (CHK) enzymes catalyzing the phosphorylation of choline to phosphocholine in the biosynthesis of the major membrane phospholipid phosphatidylcholine (PC). PC is the most abundant phospholipid in eukaryotic cells and it serves not only as a structural foundation for membrane bilayers, but also as a precursor for several lipid messengers. While mutant rmd mice show dramatically decreased CHK activity in all tissues examined, the disease is only evident in skeletal muscle tissues which display a 30% reduction in total PC content. Several muscular dystrophy mutations have been identified in membrane-associated proteins that function at the sarcolemma or nuclear envelope. However, the rmd mutant mouse is the first to demonstrate that alterations in membrane phospholipid composition can result in a progressive muscular dystrophy phenotype.
The aims of our proposal are: 1) To test the hypothesis that rmd muscular dystrophy is due to a cell autonomous loss of CHKB in skeletal muscles. 2) To test the hypothesis that mitochondrial dysfunction underlies the progressive skeletal muscle degeneration in primary mouse myoblast cultures and adult skeletal muscles. 3) To screen a large Brazilian population of congenital muscular dystrophy (CMD) and limb-girdle muscular dystrophy (LGMD) patients for mutations in the orthologous human CHKB gene. In collaboration with Dr. Mayana Zatz, we will test for human CHKB mutations in DNA samples from patients that have previously been screened and eliminated for known molecular causes of muscular dystrophy. The primary goals of this proposal are to use the novel mouse rmd mutation to explore the cell-autonomous nature of this defect in skeletal muscles, to dissect the molecular and genetic mechanisms of muscular degeneration and to determine the range of defects in CHKB that underlie previously unidentified human muscular dystrophies. The rmd mouse offers the first demonstration of a defect in a phospholipid biosynthetic enzyme causing muscular dystrophy and may reveal unique entry points in which to intervene in the disease process. ? ? ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS)
Type
Research Project (R01)
Project #
1R01AR054170-01A2
Application #
7372540
Study Section
Skeletal Muscle and Exercise Physiology Study Section (SMEP)
Program Officer
Nuckolls, Glen H
Project Start
2007-09-14
Project End
2012-08-31
Budget Start
2007-09-14
Budget End
2008-08-31
Support Year
1
Fiscal Year
2007
Total Cost
$411,032
Indirect Cost
Name
Jackson Laboratory
Department
Type
DUNS #
042140483
City
Bar Harbor
State
ME
Country
United States
Zip Code
04609
Morelli, Kathryn H; Seburn, Kevin L; Schroeder, David G et al. (2017) Severity of Demyelinating and Axonal Neuropathy Mouse Models Is Modified by Genes Affecting Structure and Function of Peripheral Nodes. Cell Rep 18:3178-3191
Pennacchietti, Francesca; Gould, Travis J; Hess, Samuel T (2017) The Role of Probe Photophysics in Localization-Based Superresolution Microscopy. Biophys J 113:2037-2054
Burgess, Robert W; Cox, Gregory A; Seburn, Kevin L (2016) Neuromuscular Disease Models and Analysis. Methods Mol Biol 1438:349-94
Curthoys, Nikki M; Parent, Matthew; Mlodzianoski, Michael et al. (2015) Dances with Membranes: Breakthroughs from Super-resolution Imaging. Curr Top Membr 75:59-123
Li, Zhuo; Wu, Gengshu; Sher, Roger B et al. (2014) Choline kinase beta is required for normal endochondral bone formation. Biochim Biophys Acta 1840:2112-22
Hosur, Vishnu; Cox, Melissa L; Burzenski, Lisa M et al. (2013) Retrotransposon insertion in the T-cell acute lymphocytic leukemia 1 (Tal1) gene is associated with severe renal disease and patchy alopecia in Hairpatches (Hpt) mice. PLoS One 8:e53426
Strokin, Mikhail; Seburn, Kevin L; Cox, Gregory A et al. (2012) Severe disturbance in the Ca2+ signaling in astrocytes from mouse models of human infantile neuroaxonal dystrophy with mutated Pla2g6. Hum Mol Genet 21:2807-14
Hosur, Vishnu; Kavirayani, Anoop; Riefler, Jennifer et al. (2012) Dystrophin and dysferlin double mutant mice: a novel model for rhabdomyosarcoma. Cancer Genet 205:232-41
Mitsuhashi, Satomi; Hatakeyama, Hideyuki; Karahashi, Minako et al. (2011) Muscle choline kinase beta defect causes mitochondrial dysfunction and increased mitophagy. Hum Mol Genet 20:3841-51
Mitsuhashi, Satomi; Ohkuma, Aya; Talim, Beril et al. (2011) A congenital muscular dystrophy with mitochondrial structural abnormalities caused by defective de novo phosphatidylcholine biosynthesis. Am J Hum Genet 88:845-51