Myosin heavy-chain mutations that disrupt Caenorhabditis elegans thick filament assembly.

Author:

Bejsovec A,Anderson P

Abstract

We have investigated Caenorhabditis elegans mutants in which altered unc-54 myosin heavy-chain protein interferes with assembly of thick myofilaments. These mutants have a dominant, muscle-defective phenotype, because altered myosin heavy-chain B (MHC B), the product of the unc-54 gene, disrupts assembly of wild-type MHC B. The mutant MHC B also interferes with assembly of wild-type myosin heavy-chain A (MHC A), the product of another MHC gene expressed in body-wall muscle cells. Because of disrupted MHC A assembly, dominant unc-54 mutants also exhibit a recessive-lethal phenotype. Dominant unc-54 mutations are missense alleles, and the defects in thick filament assembly result from mutant protein that is of normal molecular weight. Accumulation of mutant MHC B in amounts as little as 2% of wild-type levels is sufficient to disrupt assembly of both wild-type MHC A and MHC B. Dominant unc-54 mutations occur at remarkably high frequency following ethylmethane sulfonate (EMS) mutagenesis; their frequency is approximately equal to that of recessive, loss-of-function mutations. This unusually high gain-of-function frequency implies that many different amino acid substitutions in the myosin heavy-chain B protein can disrupt thick filament assembly.

Publisher

Cold Spring Harbor Laboratory

Subject

Developmental Biology,Genetics

Reference65 articles.

1. A selection for myosin heavy chain mutants in the nematode Caenorhabditis elegans.

2. Identification of a cytoplasmic tropomyosin gene linked to two muscle tropomyosin genes in Drosophila.

3. Bejsovec, A., D. Eide, and P. Anderson. 1984. Genetic techniques for analysis of nematode muscle. In Molecular biology of the cytoskeleton (ed. G.G. Borisy, D.W. Cleveland, and D.B. Murphy), pp. 267–273. Cold Spring Harbor Laboratory, Cold Spring Harbor, New York.

4. The ultrastructural location of C-protein, X-protein and H-protein in rabbit muscle

5. C. elegans: des neurones et des gènes

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