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首页> 外文期刊>BMC Molecular Biology >Control of gag-pol gene expression in the Candida albicans retrotransposon Tca2
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Control of gag-pol gene expression in the Candida albicans retrotransposon Tca2

机译:在白色念珠菌逆转座子Tca2中gag-pol基因表达的控制。

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Background In the C.albicans retrotransposon Tca2, the gag and pol ORFs are separated by a UGA stop codon, 3' of which is a potential RNA pseudoknot. It is unclear how the Tca2 gag UGA codon is bypassed to allow pol expression. However, in other retroelements, translational readthrough of the gag stop codon can be directed by its flanking sequence, including a 3' pseudoknot. Results The hypothesis was tested that in Tca2, gag stop codon flanking sequences direct translational readthrough and synthesis of a gag-pol fusion protein. Sequence from the Tca2 gag-UGA-pol junction (300 nt) was inserted between fused lacZ and luciferase (luc) genes in a Saccharomyces cerevisiae dual reporter construct. Although downstream of UGA, luc was expressed, but its expression was unaffected by inserting additional stop codons at the 3' end of lacZ. Luc expression was instead being driven by a previously unknown minor promoter activity within the gag-pol junction region. Evidence together indicated that junction sequence alone cannot direct UGA readthrough. Using reporter genes in C.albicans, the activities of this gag-pol junction promoter and the Tca2 long terminal repeat (LTR) promoter were compared. Of the two promoters, only the LTR promoter was induced by heat-shock, which also triggers retrotransposition. Tca2 pol protein, epitope-tagged in C.albicans to allow detection, was also heat-shock induced, indicating that pol proteins were expressed from a gag-UGA-pol RNA. Conclusions This is the first demonstration that the LTR promoter directs Tca2 pol protein expression, and that pol proteins are translated from a gag-pol RNA, which thus requires a mechanism for stop codon bypass. However, in contrast to most other retroelement and viral readthrough signals, immediate gag UGA-flanking sequences were insufficient to direct stop readthrough in S.cerevisiae, indicating non-canonical mechanisms direct gag UGA bypass in Tca2.
机译:背景在白色念珠菌逆转录转座子Tca2中,gag和pol ORF被UGA终止密码子隔开,该密码子的3'是潜在的RNA假结。尚不清楚如何绕过Tca2 gag UGA密码子以允许pol表达。然而,在其他反义元件中,gag终止密码子的翻译通读可以由其侧翼序列(包括3'假结)指导。结果检验了假说,在Tca2中,gag终止密码子侧翼序列指导gag-pol融合蛋白的翻译通读和合成。来自Tca2 gag-UGA-pol接头(300 nt)的序列插入酿酒酵母双报告基因构建体的融合lacZ和荧光素酶(luc)基因之间。尽管在UGA的下游,luc被表达,但是其表达不受在lacZ的3'末端插入额外的终止密码子的影响。相反,Luc的表达是由gag-pol连接区域内以前未知的次要启动子活性驱动的。证据一起表明,连接序列本身不能指导UGA的通读。使用白色念珠菌中的报告基因,比较了该gag-pol连接启动子和Tca2长末端重复(LTR)启动子的活性。在两个启动子中,只有LTR启动子被热激诱导,这也触发了逆转座。 Tca2 pol蛋白(在白色念珠菌中被表位标记以允许检测)也被热激诱导,表明pol蛋白从gag-UGA-pol RNA表达。结论这是第一个证明LTR启动子指导Tca2 pol蛋白表达,并且pol蛋白是从gag-pol RNA翻译而来的,因此需要一个终止密码子旁路的机制。然而,与大多数其他逆转录元件和病毒通读信号相反,立即gag UGA侧翼序列不足以直接指导酿酒酵母中的停止通读,这表明非规范机制直接在Tca2中引导gag UGA旁路。

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