跨膜蛋白
非规范的
生物正交化学
表位
跨膜结构域
细胞生物学
氨基酸
翻译后修饰
生物
计算生物学
化学
生物化学
受体
酶
抗体
点击化学
遗传学
组合化学
作者
Diogo Bessa‐Neto,Gerti Beliu,Alexander Kuhlemann,Valeria Pecoraro,Sören Doose,Natacha Retailleau,Nicolas Chevrier,David Perrais,Markus Sauer,Daniel Choquet
标识
DOI:10.1038/s41467-021-27025-w
摘要
Progress in biological imaging is intrinsically linked to advances in labeling methods. The explosion in the development of high-resolution and super-resolution imaging calls for new approaches to label targets with small probes. These should allow to faithfully report the localization of the target within the imaging resolution - typically nowadays a few nanometers - and allow access to any epitope of the target, in the native cellular and tissue environment. We report here the development of a complete labeling and imaging pipeline using genetic code expansion and non-canonical amino acids in neurons that allows to fluorescently label masked epitopes in target transmembrane proteins in live neurons, both in dissociated culture and organotypic brain slices. This allows us to image the differential localization of two AMPA receptor (AMPAR) auxiliary subunits of the transmembrane AMPAR regulatory protein family in complex with their partner with a variety of methods including widefield, confocal, and dSTORM super-resolution microscopy.
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