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A Thermostable β-Glucuronidase Obtained by Directed Evolution as a Reporter Gene in Transgenic Plants

机译:通过定向进化作为转基因植物中的报告基因获得热稳定的β-葡萄糖醛酸苷酶

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摘要

A β-glucuronidase variant, GUS-TR3337, that was obtained by directed evolution exhibited higher thermostability than the wild-type enzyme, GUS-WT. In this study, the utility of GUS-TR337 as an improved reporter was evaluated. The corresponding gus-tr3337 and gus-wt genes were independently cloned in a plant expression vector and introduced into Arabidopsis thaliana. With 4-MUG as a substrate, plants containing the gus-wt gene showed no detectable β-glucuronidase activity after exposure to 60°C for 10 min, while those hosting the gus-tr3337 gene retained 70% or 50% activity after exposure to 80°C for 10 min or 30 min, respectively. Similarly, in vivo β-glucuronidase activity could be demonstrated by using X-GLUC as a substrate in transgenic Arabidopsis plants hosting the gus-tr3337 gene that were exposed to 80°C for up to 30 min. Thus, the thermostability of GUS-TR3337 can be exploited to distinguish between endogenous and transgenic β-glucuronidase activity, which is a welcome improvement in its use as a reporter.
机译:通过定向进化获得的β-葡萄糖醛酸苷酶变体GUS-TR3337比野生型酶GUS-WT表现出更高的热稳定性。在这项研究中,评估了GUS-TR337作为改良报道分子的效用。将相应的gus-tr3337和gus-wt基因独立地克隆到植物表达载体中,并导入拟南芥中。以4-MUG为底物,含有gus-wt基因的植物暴露于60°C 10分钟后未显示可检测到的β-葡萄糖醛酸苷酶活性,而具有gus-tr3337基因的植物暴露于60°C后仍保留70%或50%的活性80°C分别10分钟或30分钟。类似地,可以通过使用X-GLUC作为宿主gus-tr3337基因的转基因拟南芥植物的底物证明体内β-葡萄糖醛酸酶活性,该植物暴露于80°C长达30分钟。因此,可以利用GUS-TR3337的热稳定性来区分内源性和转基因的β-葡糖醛酸糖苷酶活性,这在其用作报道基因方面是令人欢迎的改进。

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