Zhu Xianwei, Shinohara Hiroaki, Miyatake Ryuta, Hohsaka Takahiro
Innovation Research Centre of Acupuncture Combined with Medicine, Shaanxi University of Chinese Medicine, Xi'an-Xianyang New Ecomic Zone, Shaanxi Province, 712046, China.
Graduate School of Science and Engineering for Research, University of Toyama, 3190 Gofuku, Toyama, 930-8555, Japan.
J Mol Recognit. 2016 Oct;29(10):485-91. doi: 10.1002/jmr.2548. Epub 2016 May 12.
In the present study, a novel molecular biosensor system model was designed by using a couple of the fluorescent unnatural mutant streptavidin and the carbazole-labeled biotin. BODIPY-FL-aminophenylalanine (BFLAF), a fluorescent unnatural amino acid was position-specifically incorporated into Trp120 position of streptavidin by four-base codon method. On the other hand, carbazole-labeled biotin was synthesized as a quencher for the fluorescent Trp120BFLAF mutant streptavidin. The fluorescence of fluorescent Trp120BFLAF mutant streptavidin was decreased as we expected when carbazole-labeled biotin was added into the mutant streptavidin solution. Furthermore, the fluorescence decrease of Trp120BFLAF mutant streptavidin with carbazole-labeled biotin (100 nM) was recovered by the competitive addition of natural biotin. This result demonstrated that by measuring the fluorescence quenching and recovery, a couple of the fluorescent Trp120BFLAF mutant streptavidin and the carbazole-labeled biotin were successfully applicable for quantification of free biotin as a molecular biosensor system. Copyright © 2016 John Wiley & Sons, Ltd.
在本研究中,通过使用一对荧光非天然突变型链霉亲和素和咔唑标记的生物素设计了一种新型分子生物传感器系统模型。采用四碱基密码子方法将荧光非天然氨基酸BODIPY-FL-氨基苯丙氨酸(BFLAF)位点特异性地掺入链霉亲和素的Trp120位点。另一方面,合成咔唑标记的生物素作为荧光Trp120BFLAF突变型链霉亲和素的猝灭剂。当将咔唑标记的生物素加入到突变型链霉亲和素溶液中时,荧光Trp120BFLAF突变型链霉亲和素的荧光如预期那样降低。此外,通过竞争性添加天然生物素可恢复含咔唑标记生物素(100 nM)的Trp120BFLAF突变型链霉亲和素的荧光降低。该结果表明,通过测量荧光猝灭和恢复,一对荧光Trp120BFLAF突变型链霉亲和素和咔唑标记的生物素作为分子生物传感器系统成功适用于游离生物素的定量分析。版权所有© 2016约翰威立父子有限公司。