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Engineering genetically encoded FRET-based nanosensors for real time display of arsenic (As3+) dynamics in living cells

机译:工程遗传编码的基于FRET的纳米传感器可实时显示活细胞中的砷(As3 +)动力学

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摘要

Arsenic poisoning has been a major concern that causes severe toxicological damages. Therefore, intricate and inclusive understanding of arsenic flux rates is required to ascertain the cellular concentration and establish the carcinogenetic mechanism of this toxicant at real time. The lack of sufficiently sensitive sensing systems has hampered research in this area. In this study, we constructed a fluorescent resonance energy transfer (FRET)-based nanosensor, named SenALiB (Sensor for Arsenic Linked Blackfoot disease) which contains a metalloregulatory arsenic-binding protein (ArsR) as the As3+ sensing element inserted between the FRET pair enhanced cyan fluorescent protein (ECFP) and Venus. SenALiB takes advantage of the ratiometic FRET readout which measures arsenic with high specificity and selectivity. SenALiB offers rapid detection response, is stable to pH changes and provides highly accurate, real-time optical readout in cell-based assays. SenALiB-676n with a binding constant (Kd) of 0.676 × 10−6 M is the most efficient affinity mutant and can be a versatile tool for dynamic measurement of arsenic concentration in both prokaryotes and eukaryotes in vivo in a non-invasive manner.
机译:砷中毒一直是引起严重毒理学损害的主要问题。因此,需要对砷通量率有全面的了解,以便实时确定细胞浓度并建立这种毒物的致癌机理。缺乏足够灵敏的传感系统阻碍了该领域的研究。在这项研究中,我们构建了一个基于荧光共振能量转移(FRET)的纳米传感器,命名为SenALiB(砷相关的黑脚病传感器),其中包含金属调控的砷结合蛋白(ArsR)作为As 3 + 插入FRET对之间的传感元件增强了蓝绿色荧光蛋白(ECFP)和金星。 SenALiB利用比率式FRET读数以高特异性和高选择性测量砷。 SenALiB提供快速的检测响应,对pH值变化稳定,并在基于细胞的测定中提供高度准确的实时光学读数。 SenALiB-676n的结合常数(Kd)为0.676×10 −6 M,是最有效的亲和突变体,可以作为动态检测体内原核生物和真核生物中砷浓度的通用工具。非侵入性方式。

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