Characterisation of fission yeast alp11 mutants defines three functional domains within tubulin-folding cofactor B.

P A Radcliffe, T Toda
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引用次数: 26

Abstract

The proper folding of tubulins prior to their incorporation into microtubules requires a group of conserved proteins called cofactors A to E. In fission yeast, homologues of these cofactors (at least B, D and E) are necessary for the biogenesis of microtubules and for cell viability. Here we show that the temperature-sensitive alp11-924 mutant, which is defective in the cofactor B homologue, contains an opal nonsense mutation, which results in the production of a truncated Alp11B protein (Alp11(1-118). We isolated a tRNA(Trp) gene as a multicopy suppressor of this mutation, which rescues alp11-924 by read-through of the nonsense codon. The truncated Alp1-118 protein lacks the C-terminal half of Alp11B, consisting of a central coiled-coil region and the distal CLIP-170 domain found in a number of proteins involved in microtubule functions. Both of these domains are required for the maintenance of microtubule architecture in vivo. Detailed functional analyses lead us to propose that Alp11B comprises three functional domains: the N-terminal half executes the essential function, the central coiled-coil region is necessary for satisfactory maintenance of cellular alpha-tubulin levels, and the C-terminal CLIP-170 domain is required for efficient binding to alpha-tubulin.

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裂变酵母alp11突变体的特征确定了微管蛋白折叠辅助因子B内的三个功能域。
微管蛋白在融入微管之前的适当折叠需要一组称为辅助因子a到E的保守蛋白质。在裂变酵母中,这些辅助因子的同源物(至少B, D和E)对于微管的生物发生和细胞活力是必需的。在这里,我们发现温度敏感的Alp11 -924突变体,在辅助因子B同源物中存在缺陷,包含一个蛋白石无义突变,导致产生截断的Alp11B蛋白(Alp11(1-118))。我们分离了一个tRNA(Trp)基因作为该突变的多拷贝抑制基因,该基因通过读取无义密码子来拯救alp11-924。截断的Alp1-118蛋白缺少Alp11B的c端一半,包括在许多参与微管功能的蛋白质中发现的中心线圈区域和远端CLIP-170结构域。这两个结构域都是维持体内微管结构所必需的。详细的功能分析使我们提出Alp11B包括三个功能域:n端一半执行基本功能,中央卷曲线圈区域是维持细胞α -微管蛋白水平所必需的,c端CLIP-170结构域是有效结合α -微管蛋白所必需的。
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