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通过定点突变设计和表征新型胰蛋白酶抗性荧光素酶。

Design and characterization of novel trypsin-resistant firefly luciferases by site-directed mutagenesis.

机构信息

Department of Biochemistry, Faculty of Biological Sciences, Tarbiat Modares University, Tehran 14115-175, Iran.

出版信息

Protein Eng Des Sel. 2009 Nov;22(11):655-63. doi: 10.1093/protein/gzp047. Epub 2009 Aug 6.

Abstract

Firefly luciferase (EC.1.13.12.7) from Photinus pyralis is a single polypeptide chain (62 kDa), responsible for emission of yellow-green (557 nm) light, known to be most efficient bioluminescence system that make it an excellent tool for reporter in nano-system biology. However, it is very sensitive to proteolytic degradation, which reduces its intracellular half-life, leads to loss in sensitivity and precision in analytic applications. In order to generate more stable luciferases against protease digestion, we substituted two tryptic sites: R(213), R(337) and also next residue to it (Q(338)) with another amino acids. Overall, all mutations brought about structural changes that indicated more compact structure upon mutation, which revealed by enhancement of tryptophan fluorescence, decreases flexibility and less surface hydrophobic pockets. In general, structural changes associated with a clear improvement in thermostability and resistance against trypsin hydrolysis. In particular, R337Q mutant shows higher light stability in mammalian cell culture, which makes it as a suitable reporter for imaging.

摘要

萤火虫荧光素酶(EC.1.13.12.7)来源于 Photinus pyralis,是一条单链多肽(62 kDa),负责发射黄绿光(557nm),是生物发光检测中最有效的系统,使其成为纳米系统生物学报告基因的理想工具。然而,该酶对蛋白水解非常敏感,这降低了其细胞内半衰期,导致在分析应用中的灵敏度和精度降低。为了产生对蛋白酶消化更稳定的荧光素酶,我们用其他氨基酸替换了两个胰蛋白酶位点:R(213)、R(337)以及其相邻的残基 Q(338)。总的来说,所有的突变都导致了结构上的变化,表明突变后结构更加紧凑,这可以通过色氨酸荧光的增强、柔韧性降低和表面疏水性口袋减少来证明。总的来说,这些结构变化与热稳定性的明显提高和对胰蛋白酶水解的抗性有关。特别是,R337Q 突变体在哺乳动物细胞培养中表现出更高的光稳定性,使其成为成像的理想报告基因。

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