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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Structural analysis of mutations in the Drosophila beta 2-tubulin isoform reveals regions in the beta-tubulin molecular required for general and for tissue-specific microtubule functions.
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Structural analysis of mutations in the Drosophila beta 2-tubulin isoform reveals regions in the beta-tubulin molecular required for general and for tissue-specific microtubule functions.

机译:果蝇β2-微管蛋白同工型突变的结构分析揭示了β-微管蛋白分子中一般和组织特异性微管功能所需的区域。

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摘要

We have determined the lesions in a number of mutant alleles of beta Tub85D, the gene that encodes the testis-specific beta 2-tubulin isoform in Drosophila melanogaster. Mutations responsible for different classes of functional phenotypes are distributed throughout the beta 2-tubulin molecule. There is a telling correlation between the degree of phylogenetic conservation of the altered residues and the number of different microtubule categories disrupted by the lesions. The majority of lesions occur at positions that are evolutionarily highly conserved in all beta-tubulins; these lesions disrupt general functions common to multiple classes of microtubules. However, a single allele B2t6 contains an amino acid substitution within an internal cluster of variable amino acids that has been identified as an isotype-defining domain in vertebrate beta-tubulins. Correspondingly, B2t6 disrupts only a subset of microtubule functions, resulting in misspecification of the morphology of the doublet microtubules of the sperm tail axoneme. We previously demonstrated that beta 3, a developmentally regulated Drosophila beta-tubulin isoform, confers the same restricted morphological phenotype in a dominant way when it is coexpressed in the testis with wild-type beta 2-tubulin. We show here by complementation analysis that beta 3 and the B2t6 product disrupt a common aspect of microtubule assembly. We therefore conclude that the amino acid sequence of the beta 2-tubulin internal variable region is required for generation of correct axoneme morphology but not for general microtubule functions. As we have previously reported, the beta 2-tubulin carboxy terminal isotype-defining domain is required for suprastructural organization of the axoneme. We demonstrate here that the beta 2 variant lacking the carboxy terminus and the B2t6 variant complement each other for mild-to-moderate meiotic defects but do not complement for proper axonemal morphology. Our results are consistent with the hypothesis drawn from comparisons of vertebrate beta-tubulins that the two isotype-defining domains interact in a three-dimensional structure in wild-type beta-tubulins. We propose that the integrity of this structure in the Drosophila testis beta 2-tubulin isoform is required for proper axoneme assembly but not necessarily for general microtubule functions. On the basis of our observations we present a model for regulation of axoneme microtubule morphology as a function of tubulin assembly kinetics.
机译:我们已经确定了许多βTub85D突变等位基因中的损伤,该基因编码果蝇中睾丸特异性β2-微管蛋白亚型。负责不同类别的功能表型的突变分布在整个β2-微管蛋白分子中。在变化的残基的系统发育保守程度与被病变破坏的不同微管类别的数量之间存在明显的相关性。大多数病变发生在所有β-微管蛋白在进化上高度保守的位置。这些病变破坏了多种微管共有的一般功能。但是,单个等位基因B2t6在可变氨基酸的内部簇中包含一个氨基酸取代,该簇已被确定为脊椎动物β-微管蛋白的同种型定义域。相应地,B2t6仅破坏微管功能的一个子集,从而导致精子尾部轴突的双重态微管形态的错误指定。我们以前证明过,β3是一种发育受调节的果蝇β-微管蛋白同种型,当它在睾丸中与野生型β2-微管蛋白共表达时,以显性方式赋予相同的限制性形态表型。我们在这里通过互补分析表明,β3和B2t6产物破坏了微管组装的一个共同方面。因此,我们得出结论,β2-微管蛋白内部可变区的氨基酸序列是生成正确的轴突形态所必需的,而不是一般的微管功能所必需的。如我们先前所报道的,β2-微管蛋白羧基末端同种型定义域是轴突的超结构化所必需的。我们在这里证明,缺少羧基末端的β2变体和B2t6变体彼此互补,构成轻度至中度的减数分裂缺陷,但不互补于适当的轴突形态。我们的结果与从脊椎动物β-微管蛋白的比较得出的假设一致,即两个同种型定义域在野生型β-微管蛋白中以三维结构相互作用。我们建议果蝇睾丸β2-微管蛋白同工型中此结构的完整性是正确的轴突组装所必需的,但对于一般的微管功能却不一定。根据我们的观察,我们提出了一种根据微管蛋白组装动力学调节轴突微管形态的模型。

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