Soleja Neha, Agrawal Neha, Nazir Rahila, Ahmad Mohd, Mohsin Mohd
1Department of Biosciences, Metabolic Engineering Laboratory, Jamia Millia Islamia, New Delhi, 110025 India.
2Department of Physics, Syracuse University, New York, NY USA.
3 Biotech. 2020 Mar;10(3):87. doi: 10.1007/s13205-020-2073-1. Epub 2020 Feb 4.
Vitamin B (cobalamin) is a cobalt-containing compound that acts as an essential co-factor for various enzymes involved in the metabolic processes of the living cells. The constructed FRET Sensor for Vitamin Anemia Linked (SenVitAL) displayed marginal FRET efficiency. Here, we report the development of a molecular SenVitAL containing enhanced cyan fluorescent protein (ECFP) and venus as FRET pair to improve the FRET efficiency for optical imaging and screening of already developed sensor by our group. The sensor is the improved version of previously reported SenVitAL and consists of ECFP/venus as FRET pair instead of the originally used pair CFP/YFP. To increase the physiological range of vitamin B measurement, affinity mutants were created. Compared to the wild type, SenVitAL-5 with W44Q mutation has higher affinity and displayed large dynamic detection range (0.10-480 µM) in response to vitamin B binding. For cell-based monitoring and dynamic measurement of vitamin B flux rates SenVitAL-5 was successfully expressed in cytosol of yeast and mammalian cells. Changes in the emission intensities of the two fluorophores were detected using confocal microscopy in both cell types in response to vitamin B. With the addition of 50 µM extracellular vitamin B to the cells, the emission intensity of venus increased and that of ECFP decreased over the time. Furthermore, the results show that the variant SenVitAL-5 measures the vitamin B in a concentration-dependent manner, showing the resulting increase in the FRET ratio and thus confirming its utility as an ideal fluorescent indicator for the detection of vitamin B in eukaryotic systems in real time.
维生素B(钴胺素)是一种含钴化合物,作为参与活细胞代谢过程的各种酶的必需辅助因子。构建的用于维生素贫血关联的荧光共振能量转移传感器(SenVitAL)显示出较低的荧光共振能量转移效率。在此,我们报告了一种分子SenVitAL的开发,其包含增强型青色荧光蛋白(ECFP)和维纳斯荧光蛋白作为荧光共振能量转移对,以提高荧光共振能量转移效率,用于光学成像以及对我们团队已开发的传感器进行筛选。该传感器是先前报道的SenVitAL的改进版本,由ECFP/维纳斯荧光蛋白作为荧光共振能量转移对,而非最初使用的CFP/YFP对。为了扩大维生素B测量的生理范围,创建了亲和突变体。与野生型相比,具有W44Q突变的SenVitAL-5具有更高的亲和力,并且在响应维生素B结合时显示出较大的动态检测范围(0.10 - 480 μM)。为了基于细胞监测和动态测量维生素B通量率,SenVitAL-5在酵母和哺乳动物细胞的细胞质中成功表达。在两种细胞类型中,使用共聚焦显微镜检测了响应维生素B时两种荧光团发射强度的变化。向细胞中添加50 μM细胞外维生素B后,随着时间推移,维纳斯荧光蛋白的发射强度增加,而ECFP的发射强度降低。此外,结果表明变体SenVitAL-5以浓度依赖方式测量维生素B,显示出荧光共振能量转移比率相应增加,从而证实了其作为实时检测真核系统中维生素B的理想荧光指示剂的效用。