首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Both synchronous and asynchronous muscle isoforms of projectin (the Drosophila bent locus product) contain functional kinase domains
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Both synchronous and asynchronous muscle isoforms of projectin (the Drosophila bent locus product) contain functional kinase domains

机译:Projectin(果蝇弯曲基因座产物)的同步和异步肌肉同工型均包含功能性激酶结构域

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摘要

In Drosophila, the large muscle protein, projectin, has very different localizations in synchronous and asynchronous muscles, suggesting that projectin has different functions in different muscle types. The multiple projectin isoforms are encoded by a single gene; however they differ significantly in size (as detected by gel mobility) and show differences in some peptide fragments, presumably indicating alternative splicing or termination. We now report additional sequence of the projectin gene, showing a kinase domain and flanking regions highly similar to equivalent regions of twitchin, including a possible autoinhibitory region. In spite of apparent differences in function, all isoforms of projectin have the kinase domain and all are capable of autophosphorylation in vitro. The projectin gene is in polytene region 102C/D where the bentD phenotype maps. The recessive lethality of bentD is associated with a breakpoint that removes sequence of the projectin kinase domain. We find that different alleles of the highly mutable recessive lethal complementation group, l(4)2, also have defects in different parts of the projectin sequence, both NH2-terminal and COOH- terminal to the bentD breakpoint. These alleles are therefore renamed as alleles of the bent locus. Adults heterozygous for projectin mutations show little, if any, effect of one defective gene copy, but homozygosity for any of the defects is lethal. The times of death can vary with allele. Some alleles kill the embryos, others are larval lethal. These molecular studies begin to explain why genetic studies suggested that l(4)2 was a complex (or pseudoallelic) locus.
机译:在果蝇中,大的肌肉蛋白projectin在同步和异步肌肉中具有非常不同的定位,这表明projectin在不同的肌肉类型中具有不同的功能。多个projectin同工型由单个基因编码;然而,它们的大小差异很大(如通过凝胶迁移率检测),并且在某些肽片段中显示出差异,据推测表明存在其他剪接或终止。现在,我们报道了projectin基因的其他序列,显示了一个激酶结构域和侧翼区域,与特维钦的等效区域高度相似,包括可能的自抑制区域。尽管功能上存在明显差异,但projectin的所有同工型均具有激酶结构域,并且均具有体外自磷酸化的能力。投影蛋白基因在polyDene区域102C / D中,在该区域中bentD表型定位。 bentD的隐性致死性与去除投射素激酶结构域序列的断点有关。我们发现,高度可变的隐性致死性互补组l(4)2的不同等位基因在projectin序列的不同部分也有缺陷,无论是弯曲末端的NH2末端还是COOH末端。因此,这些等位基因被重命名为弯曲基因座的等位基因。对于投射蛋白突变而言,杂合的成年人几乎没有显示出一个缺陷基因拷贝的作用,但是任何缺陷的纯合性都是致命的。死亡时间可能因等位基因而异。一些等位基因杀死胚胎,另一些则使幼虫致死。这些分子研究开始解释为什么遗传研究表明1(4)2是一个复杂的(或假等位基因)基因座。

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