首页> 美国卫生研究院文献>The EMBO Journal >Expression in yeast of the T-urf13 protein from Texas male-sterile maize mitochondria confers sensitivity to methomyl and to Texas-cytoplasm-specific fungal toxins.
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Expression in yeast of the T-urf13 protein from Texas male-sterile maize mitochondria confers sensitivity to methomyl and to Texas-cytoplasm-specific fungal toxins.

机译:得克萨斯州雄性不育玉米线粒体中T-urf13蛋白在酵母中的表达赋予对灭多威和德克萨斯州细胞质特异性真菌毒素的敏感性。

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摘要

The mitochondrial gene T-urf13 from maize (Zea mays L.) with Texas male-sterile (T) cytoplasm codes for a unique 13 kd polypeptide, T-URF13, which is implicated in cytoplasmic male sterility and sensitivity to the insecticide methomyl and to host-specific fungal toxins produced by Helminthosporium maydis race T (HmT toxin) and Phyllosticta maydis (Pm toxin). A chimeric gene coding for T-URF13 fused to the mitochondrial targeting peptide from the Neurospora crassa ATP synthase subunit 9 precursor was constructed. Expression of this gene in the yeast Saccharomyces cerevisiae yielded a polypeptide that was translocated into the membrane fraction of mitochondria and processed to give a protein the same size as maize T-URF13. Methomyl, HmT toxin and Pm toxin inhibited growth of yeast cells expressing the gene fusion on medium containing glycerol as sole carbon source and stimulated respiration with NADH as substrate by isolated mitochondria from these cells. These effects were not observed in yeast cells expressing T-URF13 without a targeting peptide. The results show that T-URF13 is sufficient to confer sensitivity to methomyl and the fungal toxins in a heterologous eukaryotic system, and suggest that mitochondrial localization of T-URF13 is critical for these functions.
机译:来自德克萨斯州雄性不育(T)细胞质的玉米(Zea mays L.)的线粒体基因T-urf13编码独特的13 kd多肽T-URF13,其与胞质中的雄性不育性以及对杀虫剂灭多威和梅毒蠕虫种T(HmT毒素)和毛竹毛霉(Pm毒素)产生的宿主特异性真菌毒素。构建了一种编码T-URF13的嵌合基因,该基因与来自神经孢霉ATP合酶亚基9前体的线粒体靶向肽融合。该基因在酿酒酵母中的表达产生了一种多肽,该多肽易位到线粒体的膜级分中,并加工成与玉米T-URF13大小相同的蛋白质。甲基苯丙胺,HmT毒素和Pm毒素可抑制酵母细胞在含有甘油作为唯一碳源的培养基上表达基因融合基因的生长,并通过从这些细胞中分离出的线粒体刺激以NADH为底物的呼吸作用。在没有靶向肽的表达T-URF13的酵母细胞中未观察到这些作用。结果表明,T-URF13足以赋予对异源真核系统中的甲基苯甲基和真菌毒素敏感,并表明T-URF13的线粒体定位对于这些功能至关重要。

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