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Muscle-specific accumulation of Drosophila myosin heavy chains: a splicing mutation in an alternative exon results in an isoform substitution.

机译:果蝇肌球蛋白重链的肌肉特异性积累:替代外显子中的剪接突变导致同种型取代。

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摘要

We show that the molecular lesions in two homozygousviable mutants of the Drosophila muscle myosin heavy chain gene affect an alternative exon (exon 9a) which encodes a portion of the myosin head that is highly conserved among both cytoplasmic and muscle myosins of all organisms. In situ hybridization and Northern blotting analysis in wild-type organisms indicates that exon 9a is used in indirect flight muscles whereas both exons 9a and 9b are utilized in jump muscles. Alternative exons 9b and 9c are used in other larval and adult muscles. One of the mutations in exon 9a is a nonsense allele that greatly reduces myosin RNA stability. It prevents thick filament accumulation in indirect flight muscles and severely reduces the number of thick filaments in a subset of cells of the jump muscles. The second mutation affects the 5' splice site of exon 9a. This results in production of an aberrantly spliced transcript in indirect flight muscles, which prevents thick filament accumulation. Jump muscles of this mutant substitute exon 9b for exon 9a and consequently have normal levels of thick filaments in this muscle type. This isoform substitution does not obviously affect the ultrastructure or function of the jump muscle. Analysis of this mutant illustrates that indirect flight muscles and jump muscles utilize different mechanisms for alternative RNA splicing.
机译:我们显示,果蝇肌肉肌球蛋白重链基因的两个纯合子突变体中的分子损伤会影响一个替代外显子(外显子9a),该外显子编码部分肌球蛋白头部,在所有生物的细胞质和肌肉肌球蛋白中高度保守。在野生型生物体中的原位杂交和Northern印迹分析表明,外显子9a用于间接飞行的肌肉,而外显子9a和9b均用于跳跃肌肉。替代外显子9b和9c用于其他幼虫和成年肌肉。外显子9a中的突变之一是无意义的等位基因,可大大降低肌球蛋白RNA的稳定性。它可以防止粗纤维堆积在间接飞行的肌肉中,并严重减少跳跃肌肉细胞子集中的粗纤维数量。第二个突变影响外显子9a的5'剪接位点。这导致在间接飞行的肌肉中产生异常剪接的转录本,从而阻止了粗丝的积累。该突变体用外显子9b替代外显子9a的跳跃肌,因此在这种肌肉类型中具有正常水平的粗细丝。这种同工型取代显然不会影响跳跃肌的超微结构或功能。对这种突变体的分析表明,间接飞行的肌肉和跳跃肌肉利用不同的机制进行替代性RNA剪接。

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