首页> 外文期刊>Journal of cell biology >Characterization of α1(IV) Collagen Mutations in Caenorhabditis elegans and the Effects of α1 and α2(IV) Mutations on Type IV Collagen Distribution
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Characterization of α1(IV) Collagen Mutations in Caenorhabditis elegans and the Effects of α1 and α2(IV) Mutations on Type IV Collagen Distribution

机译:秀丽隐杆线虫中α1(IV)胶原突变的特征以及α1和α2(IV)突变对IV型胶原分布的影响

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Type IV collagen is a major component of basement membranes. We have characterized 11 mutations in emb-9 , the α1(IV) collagen gene of Caenorhabditis elegans , that result in a spectrum of phenotypes. Five are substitutions of glycines in the Gly-X-Y domain and cause semidominant, temperature-sensitive lethality at the twofold stage of embryogenesis. One is a glycine substitution that causes recessive, non–temperature-sensitive larval lethality. Three putative null alleles, two nonsense mutations and a deletion, all cause recessive, non–temperature-sensitive lethality at the threefold stage of embryogenesis. The less severe null phenotype indicates that glycine substitution containing mutant chains dominantly interfere with the function of other molecules. The emb-9 null mutants do not stain with anti–EMB-9 antisera and show intracellular accumulation of the α2(IV) chain, LET-2, indicating that LET-2 assembly and/or secretion requires EMB-9. Glycine substitutions in either EMB-9 or LET-2 cause intracellular accumulation of both chains. The degree of intracellular accumulation differs depending on the allele and temperature and correlates with the severity of the phenotype. Temperature sensitivity appears to result from reduced assembly/secretion of type IV collagen, not defective function in the basement membrane. Because the dominant interference of glycine substitution mutations is maximal when type IV collagen secretion is totally blocked, this interference appears to occur intracellularly, rather than in the basement membrane. We suggest that the nature of dominant interference caused by mutations in type IV collagen is different than that caused by mutations in fibrillar collagens.
机译:IV型胶原蛋白是基底膜的主要成分。我们已经表征了秀丽隐杆线虫的α1(IV)胶原基因emb-9中的11个突变,这些突变导致了一系列的表型。五种是在Gly-X-Y域中取代甘氨酸,并在胚胎发生的两个阶段引起对温度敏感的半致死性。一种是甘氨酸替代,可引起隐性,对温度不敏感的幼虫致死性。在胚胎发生的三个阶段,三个假定的无效等位基因,两个无意义的突变和一个缺失均引起隐性,非温度敏感性的致死性。不太严重的无效表型表明含有甘氨酸取代的突变体链主要干扰其他分子的功能。 emb-9无效突变体没有被抗-EMB-9抗血清染色,并显示出α2(IV)链LET-2的细胞内积累,表明LET-2的组装和/或分泌需要EMB-9。 EMB-9或LET-2中的甘氨酸替代会引起两条链的细胞内积累。细胞内积累的程度取决于等位基因和温度,并与表型的严重程度相关。温度敏感性似乎是由于IV型胶原蛋白的组装/分泌减少所致,而不是基底膜的功能受损。因为当IV型胶原蛋白的分泌被完全阻断时,甘氨酸替代突变的主要干扰最大,因此这种干扰似乎发生在细胞内而不是在基膜中。我们建议由IV型胶原蛋白突变引起的显性干扰的性质不同于由原纤维胶原蛋白突变引起的显性干扰的性质。

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