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首页> 外文期刊>Journal of Microbiological Methods >BAPJ69-4A: A yeast two-hybrid strain for both positive and negative genetic selection
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BAPJ69-4A: A yeast two-hybrid strain for both positive and negative genetic selection

机译:BAPJ69-4A:用于阳性和阴性遗传选择的酵母两杂种菌株

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摘要

Genetic selection systems, such as the yeast two-hybrid system, are efficient methods to detect protein–protein and protein–ligand interactions. These systems have been further developed to assess negative interactions, such as inhibition, using the URA3 genetic selection marker. Previously, chemical complementation was used to assess positive selection in Saccharomyces cerevisiae. In this work, a new S. cerevisiae strain, called BAPJ69-4A, containing three selective markers ADE2, HIS3, and URA3 as well as the lacZ gene controlled by Gal4 response elements, was developed and characterized using the retinoid X receptor (RXR) and its ligand 9-cis retinoic acid (9cRA). Further characterization was performed using RXR variants and the synthetic ligand LG335. To assess the functionality of the strain, RXR was compared to the parent strain PJ69-4A in adenine, histidine, and uracil selective media. In positive selection, associating partners that lead to cell growth were observed in all media in the presence of ligand, whereas partners that did not associate due to the absence of ligand displayed no growth. Conversely, in negative selection, partners that did not associate in 5-FOA medium did not display cell death due to the lack of expression of the URA3 gene. The creation of the BAPJ69-4A yeast strain provides a high-throughput selection system, called negative chemical complementation, which can be used for both positive and negative selection, providing a fast, powerful tool for discovering novel ligand receptor pairs for applications in drug discovery and protein engineering.
机译:遗传选择系统,例如酵母双杂交系统,是检测蛋白质-蛋白质和蛋白质-配体相互作用的有效方法。这些系统已进一步开发,以使用URA3遗传选择标记评估负面相互作用,例如抑制作用。以前,化学补体用于评估酿酒酵母中的阳性选择。在这项工作中,开发了一种新的酿酒酵母菌株,称为BAPJ69-4A,该菌株包含三个选择标记ADE2,HIS3和URA3以及由Gal4反应元件控制的lacZ基因,并使用类维生素X受体(RXR)进行了表征及其配体9-顺式视黄酸(9cRA)。使用RXR变体和合成配体LG335进行了进一步的表征。为了评估菌株的功能,在腺嘌呤,组氨酸和尿嘧啶选择性培养基中将RXR与亲本菌株PJ69-4A进行了比较。在阳性选择中,在存在配体的所有培养基中均观察到导致细胞生长的缔合伴侣,而由于缺乏配体而未缔合的伴侣没有生长。相反,在阴性选择中,由于缺乏URA3基因的表达,未在5-FOA培养基中缔合的伴侣未显示细胞死亡。 BAPJ69-4A酵母菌株的产生提供了一种高通量选择系统,称为负化学互补,可用于正负选择,为发现新的配体受体对提供了快速,强大的工具,可用于药物开发和蛋白质工程。

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