首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >EXPRESSION OF A PLANT VIRAL POLYCISTRONIC MRNA IN YEAST, SACCHAROMYCES CEREVISIAE, MEDIATED BY A PLANT VIRUS TRANSLATIONAL TRANSACTIVATOR
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EXPRESSION OF A PLANT VIRAL POLYCISTRONIC MRNA IN YEAST, SACCHAROMYCES CEREVISIAE, MEDIATED BY A PLANT VIRUS TRANSLATIONAL TRANSACTIVATOR

机译:植物病毒翻译介体介导的酵母菌酿酒酵母中植物病毒多态性mRNA的表达

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We demonstrate that the cauliflower mosaic virus (CaMV) gene VI product can transactivate the expression of a reporter gene in bakers' yeast, Saccharomyces cerevisiae. The gene VI coding sequence was placed under the control of the galactose-inducible promoter GAL1, which is present in the yeast shuttle vector pYES2, to create plasmid JS169, We also created a chloramphenicol acetyltransferase (CAT) reporter plasmid, JS161, by inserting the CAT reporter gene in-frame into CaMV gene II and subsequently cloning the entire CaMV genome into the yeast vector pRS314. When JS161 was transformed into yeast and subsequently assayed for CAT activity, only a very low level of CAT activity was detected in cellular extracts, To investigate whether the CaMV gene VI product would mediate an increase in CAT activity, we cotransformed yeast with JS169 and JS161. Upon induction with galactose, we found that CAT activity in yeast transformed with JS161 and JS169 was about 19 times higher than the level in the transformants that contained only JS161, CAT activity was dependent on the presence of the gene VI protein, because essentially no CAT activity was detected in yeast cells grown in the presence of glucose, which represses expression from the GAL1 promoter, RNase protection assays showed that the gene VI product had no effect on transcription from the 35S RNA promoter, demonstrating that regulation was occurring at the translation level, This yeast system will prove useful for understanding how the gene VI product of CaMV mediates the translation of genes present on a eukaryotic polycistronic mRNA. [References: 41]
机译:我们证明了花椰菜花叶病毒(CaMV)基因VI产品可以转导面包酵母,酿酒酵母中的记者基因的表达。将基因VI编码序列置于存在于酵母穿梭载体pYES2中的半乳糖诱导型启动子GAL1的控制下,以创建质粒JS169,我们还通过插入将CAT报告基因框内插入CaMV基因II中,然后将整个CaMV基因组克隆到酵母载体pRS314中。当将JS161转化为酵母并随后测定CAT活性时,在细胞提取物中仅检测到非常低水平的CAT活性。为了研究CaMV基因VI产物是否会介导CAT活性的增加,我们将酵母与JS169和JS161共转化。用半乳糖诱导后,我们发现用JS161和JS169转化的酵母中的CAT活性比仅包含JS161的转化体中的CAT活性高约19倍,CAT活性取决于基因VI蛋白的存在,因为基本上没有CAT在葡萄糖存在下生长的酵母细胞中检测到活性,这抑制了GAL1启动子的表达,RNase保护试验表明,VI基因产物对35S RNA启动子的转录没有影响,表明调节发生在翻译水平,该酵母系统将被证明对于理解CaMV的基因VI产物如何介导真核多顺反子mRNA上存在的基因的翻译是有用的。 [参考:41]

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