首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Dosage Suppressors of a Benomyl-Dependent Tubulin Mutant: Evidence for a Link Between Microtubule Stability and Cellular Metabolism
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Dosage Suppressors of a Benomyl-Dependent Tubulin Mutant: Evidence for a Link Between Microtubule Stability and Cellular Metabolism

机译:苯菌灵依赖性微管蛋白突变体的剂量抑制剂:微管稳定性和细胞代谢之间联系的证据。

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To identify factors important for the regulation of microtubule stability in yeast, dosage suppressors of the hyperstable microtubule phenotype of the budding yeast tub2-150 β-tubulin mutation were isolated. Of the two suppressors reported here, one ( JSN2 ) encodes a tRNAVal, and the other ( JSN3 ) is an antimorphic allele of the methionine biosynthesis transcription factor Met4p. Furthermore, growth of tub2-150 mutants and suppression of tub2-150 mutants by JSN3 are sensitive to levels of methionine in the growth medium. We explore several possible explanations for these findings, including the potential involvement of the general amino acid control and the involvement of Cbflp, a component of yeast kinetochores that is also necessary for Met4p-mediated transcription.
机译:为了鉴定对于调节酵母中微管稳定性重要的因素,分离出了发芽酵母tub2-150β-微管蛋白突变的高稳定微管表型的剂量抑制剂。在这里报道的两个抑制子中,一个(JSN2)编码一个tRNAVal,另一个(JSN3)是甲硫氨酸生物合成转录因子Met4p的反态等位基因。此外,tub2-150突变体的生长和JSN3对tub2-150突变体的抑制对生长培养基中蛋氨酸的水平敏感。我们探索这些发现的几种可能的解释,包括潜在的一般氨基酸控制和Cbflp的参与,Cbflp是酵母Kinetochores的组成部分,也是Met4p介导的转录所必需的。

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