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α-Tubulin Mutations Alter Oryzalin Affinity and Microtubule Assembly Properties To Confer Dinitroaniline Resistance

机译:α-Tubulin突变可改变Oryzalin的亲和力和微管组装特性从而赋予二硝基苯胺抗性

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摘要

Plant and protozoan microtubules are selectively sensitive to dinitroanilines, which do not disrupt vertebrate or fungal microtubules. Tetrahymena thermophila is an abundant source of dinitroaniline-sensitive tubulin, and we have modified the single T. thermophila α-tubulin gene to create strains that solely express mutant α-tubulin in functional dimers. Previous research identified multiple α-tubulin mutations that confer dinitroaniline resistance in the human parasite Toxoplasma gondii, and when two of these mutations (L136F and I252L) were introduced into T. thermophila, they conferred resistance in these free-living ciliates. Purified tubulin heterodimers composed of L136F or I252L α-tubulin display decreased affinity for the dinitroaniline oryzalin relative to wild-type T. thermophila tubulin. Moreover, the L136F substitution dramatically reduces the critical concentration for microtubule assembly relative to the properties of wild-type T. thermophila tubulin. Our data provide additional support for the proposed dinitroaniline binding site on α-tubulin and validate the use of T. thermophila for expression of genetically homogeneous populations of mutant tubulins for biochemical characterization.
机译:植物和原生动物微管对二硝基苯胺有选择性的敏感性,不会破坏脊椎动物或真菌的微管。嗜热四膜虫是对二硝基苯胺敏感的微管蛋白的丰富来源,我们已经修饰了单个嗜热丙酸杆菌α-微管蛋白基因,以创建仅在功能性二聚体中表达突变型α-微管蛋白的菌株。先前的研究确定了多个α-微管蛋白突变,这些突变赋予人寄生虫弓形虫二硝基苯胺抗药性,当将其中两个突变(L136F和I252L)引入嗜热链球菌时,它们赋予了这些自由生活纤毛虫的抗性。相对于野生型嗜热毁丝菌微管蛋白,由L136F或I252Lα-微管蛋白组成的纯化微管蛋白异二聚体显示出对二硝基苯胺Oryzalin的亲和力降低。此外,相对于野生型嗜热毁丝菌微管蛋白的特性,L136F取代显着降低了微管组装的临界浓度。我们的数据为拟议中的α-微管蛋白上的二硝基苯胺结合位点提供了额外的支持,并验证了嗜热链球菌用于表达遗传上均一的突变型微管蛋白群体以进行生化鉴定的用途。

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