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基因编码光致开关分子传感器用于光声和超分辨率成像。

Genetically encoded photo-switchable molecular sensors for optoacoustic and super-resolution imaging.

机构信息

Institute of Biological and Medical Imaging, Helmholtz Zentrum München, Neuherberg, Germany.

Chair of Biogenic Functional Materials, Technische Universität München, Straubing, Germany.

出版信息

Nat Biotechnol. 2022 Apr;40(4):598-605. doi: 10.1038/s41587-021-01100-5. Epub 2021 Nov 29.

Abstract

Reversibly photo-switchable proteins are essential for many super-resolution fluorescence microscopic and optoacoustic imaging methods. However, they have yet to be used as sensors that measure the distribution of specific analytes at the nanoscale or in the tissues of live animals. Here we constructed the prototype of a photo-switchable Ca sensor based on GCaMP5G that can be switched with 405/488-nm light and describe its molecular mechanisms at the structural level, including the importance of the interaction of the core barrel structure of the fluorescent protein with the Ca receptor moiety. We demonstrate super-resolution imaging of Ca concentration in cultured cells and optoacoustic Ca imaging in implanted tumor cells in mice under controlled Ca conditions. Finally, we show the generalizability of the concept by constructing examples of photo-switching maltose and dopamine sensors based on periplasmatic binding protein and G-protein-coupled receptor-based sensors.

摘要

光可切换蛋白质对于许多超分辨率荧光显微镜和光声成像方法是必不可少的。然而,它们尚未被用作传感器来测量纳米尺度或活动物组织中特定分析物的分布。在这里,我们构建了基于 GCaMP5G 的光可切换 Ca 传感器的原型,该传感器可以用 405/488nm 的光进行切换,并在结构水平上描述其分子机制,包括荧光蛋白的核心桶结构与 Ca 受体部分相互作用的重要性。我们在受控 Ca 条件下展示了培养细胞中 Ca 浓度的超分辨率成像和植入肿瘤细胞的光声 Ca 成像。最后,我们通过构建基于周质结合蛋白和 G 蛋白偶联受体的光开关麦芽糖和多巴胺传感器的示例,证明了该概念的通用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb0a/9005348/d4ec1f100743/41587_2021_1100_Fig1_HTML.jpg

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