Bejsovec A, Anderson P
Department of Genetics, University of Wisconsin, Madison 53706.
Genes Dev. 1988 Oct;2(10):1307-17. doi: 10.1101/gad.2.10.1307.
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.
我们研究了秀丽隐杆线虫突变体,其中改变的unc-54肌球蛋白重链蛋白会干扰粗肌丝的组装。这些突变体具有显性的肌肉缺陷表型,因为unc-54基因的产物——改变的肌球蛋白重链B(MHC B)会破坏野生型MHC B的组装。突变的MHC B还会干扰野生型肌球蛋白重链A(MHC A)的组装,MHC A是体壁肌肉细胞中表达的另一个MHC基因的产物。由于MHC A组装被破坏,显性unc-54突变体也表现出隐性致死表型。显性unc-54突变是错义等位基因,粗丝组装缺陷是由分子量正常的突变蛋白导致的。突变的MHC B积累量低至野生型水平的2%就足以破坏野生型MHC A和MHC B的组装。在甲磺酸乙酯(EMS)诱变后,显性unc-54突变以极高的频率出现;其频率与隐性功能丧失突变的频率大致相等。这种异常高的功能获得频率意味着肌球蛋白重链B蛋白中许多不同的氨基酸取代都可能破坏粗丝组装。