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Identification of an overexpressed yeast gene which prevents aminoglycoside toxicity

机译:鉴定过表达酵母基因,其防止氨基糖苷毒性

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Summary: Aminoglycoside antibiotics, used to treat bacterial infections by interfering with proofreading during protein synthesis, cause sensorineural hearing loss in genetically susceptible individuals. The only aminoglycoside-hypersensitivity mutations which have been described in humans are in the mitochondrial 12S rRNA gene, potentially allowing increased antibiotic binding to mitochondrial ribosomes. To identify additional predisposing mutations, a yeast model system was used to isolate genes which interact with or bypass the effects of aminoglycoside antibiotics. A novel yeast gene was isolated which, in high copy, confers neomycin resistance to yeast transformants. The neomycin-resistance 1 gene (NEO1) encodes a potential 1151 aa integral membrane protein, most homologous to the yeast DRS2 gene product, a Ca2+-ATPase involved in cytoplasmic ribosome assembly. The N-terminus of Neo1p is partially homologous to abrin A-chain, another protein which interacts with cytoplasmic ribosomes. Mutagenesis experiments demonstrate that the NEO1 product is essential for vegetative growth and that the drug-resistance phenotype requires ATPase function.
机译:发明内容:氨基糖苷类抗生素,用于通过干扰蛋白质合成期间干扰校对来治疗细菌感染,导致转基因易感个体中的感觉内听力损失。已经在人体中描述的唯一氨基糖苷 - 超敏突变在线粒体12S rRNA基因中,可能允许增加与线粒体核糖体的抗生素结合。为了鉴定额外的诱导突变,使用酵母模型系统分离与氨基糖苷类抗生素相互作用或绕过氨基糖苷抗生素的影响的基因。分离了一种新型酵母基因,在高拷贝中,将新霉素抗性对酵母转化体赋予酵母转化体。新霉素抵抗1基因(Neo1)编码潜在的1151AA整体膜蛋白,对酵母DRS2基因产物最同源的,CA2 + -ATP酶,涉及细胞质核糖体组件。 Neo1p的N-末端对Abrin A链部分同源,另一种与细胞质核糖体相互作用的蛋白质。诱变实验表明Neo1产物对于营养生长至关重要,并且药物抗性表型需要ATP酶功能。

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