首页> 美国卫生研究院文献>Genetics >Mutations in the Unc-52 Gene Responsible for Body Wall Muscle Defects in Adult Caenorhabditis Elegans Are Located in Alternatively Spliced Exons
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Mutations in the Unc-52 Gene Responsible for Body Wall Muscle Defects in Adult Caenorhabditis Elegans Are Located in Alternatively Spliced Exons

机译:负责成人秀丽隐杆线虫体壁肌肉缺陷的Unc-52基因突变位于选择性剪接的外显子中

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摘要

The unc-52 gene in Caenorhabditis elegans produces several large proteins that function in the basement membrane underlying muscle cells. Mutations in this gene result in defects in myofilament assembly and in the attachment of the myofilament lattice to the muscle cell membrane. The st549 and ut111 alleles of unc-52 produce a lethal (Pat) terminal phenotype whereas the e444, e669, e998, e1012 and e1421 mutations result in viable, paralyzed animals. We have identified the sequence alterations responsible for these mutant phenotypes. The st549 allele has a premature stop codon in exon 7 that should result in the complete elimination of unc-52 gene function, and the ut111 allele has a Tc1 transposon inserted into the second exon of the gene. The five remaining mutations are clustered in a small interval containing three adjacent, alternatively spliced exons (16, 17 and 18). These mutations affect some, but not all of the unc-52-encoded proteins. Thirteen intragenic revertants of the e669, e998, e1012 and e1421 alleles have also been sequenced. The majority of these carry the original mutation plus a G to A transition in the conserved splice acceptor site of the affected exon. This result suggests that reversion of the mutant phenotype in these strains may be the result of exon-skipping.
机译:秀丽隐杆线虫中的unc-52基因产生几种大蛋白,这些蛋白在肌肉细胞的基底膜中起作用。该基因的突变会导致肌丝装配缺陷以及肌丝晶格与肌细胞膜的附着。 unc-52的st549和ut111等位基因产生致命的(Pat)末端表型,而e444,e669,e998,e1012和e1421突变会导致存活的瘫痪动物。我们已经确定了负责这些突变表型的序列改变。 st549等位基因在第7外显子中有一个提前终止密码子,应该会导致unc-52基因功能的完全消除,而ut111等位基因在该基因的第二个外显子中插入了一个Tc1转座子。剩下的五个突变在一个小的间隔内聚集,包含三个相邻的,交替剪接的外显子(16、17和18)。这些突变会影响部分而非全部unc-52编码的蛋白质。 e669,e998,e1012和e1421等位基因的13个基因内回复子也已测序。这些中的大多数携带原始突变,并在受影响外显子的保守剪接受体位点上由G向A过渡。该结果表明,这些菌株中突变表型的回复可能是外显子跳过的结果。

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