TY - JOUR
T1 - Growth and muscle defects in mice lacking adult myosin heavy chain genes
AU - Acakpo-Satchivi, Leslie J R
AU - Edelmann, Winfried
AU - Sartorius, Carol
AU - Lu, Brian D.
AU - Wahr, Philip A.
AU - Watkins, Simon C.
AU - Metzger, Joseph M.
AU - Leinwand, Leslie
AU - Kucherlapati, Raju
PY - 1997/12/1
Y1 - 1997/12/1
N2 - The three adult fast myosin heavy chains (MyHCs) constitute the vast majority of the myosin in adult skeletal musculature, and are >92% identical. We describe mice carrying null mutations in each of two predominant adult fast MyHC genes, lib and IId/x. Both null strains exhibit growth and muscle defects, but the defects are different between the two strains and do not correlate with the abundance or distribution of each gene product. For example, despite the fact that MyHC-IIb accounts for >70% of the myosin in skeletal muscle and shows the broadest distribution of expression, the phenotypes of IIb null mutants are generally milder than in the MyHC-IId/x null strain. In addition, in a muscle which expresses both lib and IId/x MyHC in wild-type mice, the histological defects are completely different for null expression of the two genes. Most striking is that while both null strains exhibit physiological defects in isolated muscles, the defects are distinct. Muscle from IIb null mice has significantly reduced ability to generate force while IId null mouse muscle generates normal amounts of force, but has altered kinetic properties. Many of the phenotypes demonstrated by these mice are typical in human muscle disease and should provide insight into their etiology.
AB - The three adult fast myosin heavy chains (MyHCs) constitute the vast majority of the myosin in adult skeletal musculature, and are >92% identical. We describe mice carrying null mutations in each of two predominant adult fast MyHC genes, lib and IId/x. Both null strains exhibit growth and muscle defects, but the defects are different between the two strains and do not correlate with the abundance or distribution of each gene product. For example, despite the fact that MyHC-IIb accounts for >70% of the myosin in skeletal muscle and shows the broadest distribution of expression, the phenotypes of IIb null mutants are generally milder than in the MyHC-IId/x null strain. In addition, in a muscle which expresses both lib and IId/x MyHC in wild-type mice, the histological defects are completely different for null expression of the two genes. Most striking is that while both null strains exhibit physiological defects in isolated muscles, the defects are distinct. Muscle from IIb null mice has significantly reduced ability to generate force while IId null mouse muscle generates normal amounts of force, but has altered kinetic properties. Many of the phenotypes demonstrated by these mice are typical in human muscle disease and should provide insight into their etiology.
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U2 - 10.1083/jcb.139.5.1219
DO - 10.1083/jcb.139.5.1219
M3 - Article
C2 - 9382868
AN - SCOPUS:0030729730
SN - 0021-9525
VL - 139
SP - 1219
EP - 1229
JO - Journal of Cell Biology
JF - Journal of Cell Biology
IS - 5
ER -