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对苯扎氯铵具有更高抗性的萤火虫突变型荧光素酶

Mutant luciferase enzymes from fireflies with increased resistance to benzalkonium chloride.

作者信息

Hattori Noriaki, Kajiyama Naoki, Maeda Masako, Murakami Seiji

机构信息

Research and Development Division, Kikkoman Corporation, 399 Noda, Noda city, Chiba pref. 278-0037, Japan.

出版信息

Biosci Biotechnol Biochem. 2002 Dec;66(12):2587-93. doi: 10.1271/bbb.66.2587.

Abstract

Benzalkonium chloride (BAC), used to extract intracellular ATP, interferes with subsequent firefly luciferase-luciferin assays. There was a significant difference among wild-type luciferases with respect to BAC resistance. Luciola lateralis luciferase (LlL) was the most tolerant, followed by Luciola cruciata luciferase (LcL) and Photinus pyralis luciferase. Random mutagenesis of thermostable mutants of LcL showed that the Glu490Lys mutation contributes to improved resistance to BAC. The corresponding Glu490Lys mutation was introduced into thermostable mutants of LlL by site-directed mutagenesis. Kinetic analysis demonstrated that the resultant LlL-217L490K mutant, having both an Ala217Leu and a Glu490Lys mutation, showed the highest resistance to BAC, with an initial remaining bioluminescence intensity of 87.4% and a decay rate per minute of 29.6% in the presence of 0.1% BAC. The Glu490Lys mutation was responsible for increased resistance to inactivation but not inhibition by BAC. The LlL-217L490K had identical thermostability and pH stability to the parental thermostable mutant. From these results, it was concluded that the LlL-217L490K enzyme is advantageous for hygiene monitoring and biomass assays based on the ATP-bioluminescence methodology. This is the first report demonstrating improved resistance to BAC of the firefly luciferase enzyme.

摘要

用于提取细胞内ATP的苯扎氯铵(BAC)会干扰随后的萤火虫荧光素酶 - 荧光素测定。野生型荧光素酶在BAC抗性方面存在显著差异。日本扁萤荧光素酶(LlL)耐受性最强,其次是红胸扁萤荧光素酶(LcL)和萤火虫荧光素酶。对LcL的热稳定突变体进行随机诱变表明,Glu490Lys突变有助于提高对BAC的抗性。通过定点诱变将相应的Glu490Lys突变引入LlL的热稳定突变体中。动力学分析表明,所得的具有Ala217Leu和Glu490Lys双重突变的LlL - 217L490K突变体对BAC具有最高抗性,在存在0.1% BAC的情况下,初始剩余生物发光强度为87.4%,每分钟衰减率为29.6%。Glu490Lys突变导致对BAC失活的抗性增加,但不是对其抑制的抗性增加。LlL - 217L490K与亲本热稳定突变体具有相同的热稳定性和pH稳定性。从这些结果得出结论,LlL - 217L490K酶有利于基于ATP生物发光方法的卫生监测和生物量测定。这是第一份证明萤火虫荧光素酶对BAC抗性提高的报告。

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