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通过三个氨基酸取代增强发光酶 19 kDa 蛋白 (KAZ) 的催化活性。

Luminescence enhancement of the catalytic 19 kDa protein (KAZ) of Oplophorus luciferase by three amino acid substitutions.

机构信息

Yokohama Research Center, JNC Co., 5-1 Okawa, Kanazawa-ku, Yokohama 236-8605, Japan.

Yokohama Research Center, JNC Co., 5-1 Okawa, Kanazawa-ku, Yokohama 236-8605, Japan.

出版信息

Biochem Biophys Res Commun. 2014 Feb 28;445(1):157-62. doi: 10.1016/j.bbrc.2014.01.133. Epub 2014 Jan 31.

Abstract

To characterize the luminescence properties of nanoKAZ, a 16 amino acid substituted mutant of the catalytic 19kDa protein (KAZ) of Oplophorus luciferase, the effects of each mutated amino acid were investigated by site-specific mutagenesis. All 16 single substituted KAZ mutants were expressed in Escherichia coli cells and their secretory expressions in CHO-K1 cells were also examined using the signal peptide sequence of Gaussia luciferase. Luminescence activity of KAZ was significantly enhanced by single amino acid substitutions at V44I, A54I, or Y138I. Further, the triple mutant KAZ-V44I/A54I/Y138I, named eKAZ, was prepared and these substitutions synergistically enhanced luminescence activity, showing 66-fold higher activity than wild-KAZ and also 7-fold higher activity than nanoKAZ using coelenterazine as a substrate. Substrate specificity of eKAZ for C2- and/or C6-modified coelenterazine analogues was different from that of nanoKAZ, indicating that three amino acid substitutions may be responsible for the substrate recognition of coelenterazine to increase luminescence activity. In contrast, these substitutions did not stimulate protein secretion from CHO-K1 cells, suggesting that the folded-protein structure of KAZ might be different from that of nanoKAZ.

摘要

为了研究纳米 KAZ 的发光特性,通过定点突变研究了每个突变氨基酸对催化 19kDa 蛋白(KAZ)的 16 个氨基酸取代突变体的影响。所有 16 个单取代 KAZ 突变体均在大肠杆菌细胞中表达,并使用海肾荧光素的信号肽序列检测其在 CHO-K1 细胞中的分泌表达情况。V44I、A54I 或 Y138I 处的单个氨基酸取代可显著增强 KAZ 的发光活性。此外,还制备了名为 eKAZ 的三重突变体 KAZ-V44I/A54I/Y138I,这些取代协同增强了发光活性,与野生型 KAZ 相比,使用腔肠素作为底物时,活性提高了 66 倍,与纳米 KAZ 相比,活性提高了 7 倍。eKAZ 对 C2-和/或 C6 修饰的腔肠素类似物的底物特异性与纳米 KAZ 不同,表明三个氨基酸取代可能负责腔肠素的底物识别以增加发光活性。相比之下,这些取代并未刺激 CHO-K1 细胞的蛋白质分泌,表明 KAZ 的折叠蛋白结构可能与纳米 KAZ 不同。

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