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一种基因编码的、高信噪比的麦芽糖传感器。

A genetically encoded, high-signal-to-noise maltose sensor.

机构信息

Janelia Farm Research Campus, Howard Hughes Medical Institute, Ashburn, Virginia 20147, USA.

出版信息

Proteins. 2011 Nov;79(11):3025-36. doi: 10.1002/prot.23118.

Abstract

We describe the generation of a family of high-signal-to-noise single-wavelength genetically encoded indicators for maltose. This was achieved by insertion of circularly permuted fluorescent proteins into a bacterial periplasmic binding protein (PBP), Escherichia coli maltodextrin-binding protein, resulting in a four-color family of maltose indicators. The sensors were iteratively optimized to have sufficient brightness and maltose-dependent fluorescence increases for imaging, under both one- and two-photon illumination. We demonstrate that maltose affinity of the sensors can be tuned in a fashion largely independent of the fluorescent readout mechanism. Using literature mutations, the binding specificity could be altered to moderate sucrose preference, but with a significant loss of affinity. We use the soluble sensors in individual E. coli bacteria to observe rapid maltose transport across the plasma membrane, and membrane fusion versions of the sensors on mammalian cells to visualize the addition of maltose to extracellular media. The PBP superfamily includes scaffolds specific for a number of analytes whose visualization would be critical to the reverse engineering of complex systems such as neural networks, biosynthetic pathways, and signal transduction cascades. We expect the methodology outlined here to be useful in the development of indicators for many such analytes.

摘要

我们描述了一类高信噪比的单波长遗传编码麦芽糖指示剂的产生。这是通过将环状排列的荧光蛋白插入到细菌周质结合蛋白(Escherichia coli maltodextrin-binding protein,简称 MalE)中实现的,从而产生了一个四色麦芽糖指示剂家族。传感器经过反复优化,在单光子和双光子激发下,具有足够的亮度和麦芽糖依赖性荧光增强,可用于成像。我们证明,传感器的麦芽糖亲和力可以在很大程度上与荧光读出机制无关的方式进行调节。通过使用文献中的突变,可以改变结合特异性,以适度增加对蔗糖的偏好,但亲和力会显著降低。我们在单个大肠杆菌细菌中使用可溶性传感器来观察快速跨质膜运输麦芽糖,并在哺乳动物细胞上使用膜融合版本的传感器来可视化麦芽糖添加到细胞外介质中。PBP 超家族包括针对许多分析物的特异性支架,这些分析物的可视化对于神经网络、生物合成途径和信号转导级联等复杂系统的逆向工程至关重要。我们期望这里概述的方法对于许多此类分析物的指示剂的开发是有用的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b079/3568902/f99a9a8049ec/prot0079-3025-f1.jpg

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