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An improved fluorescent tag and its nanobodies for membrane protein expression, stability assay, and purification.


ABSTRACT: Green fluorescent proteins (GFPs) are widely used to monitor membrane protein expression, purification, and stability. An ideal reporter should be stable itself and provide high sensitivity and yield. Here, we demonstrate that a coral (Galaxea fascicularis) thermostable GFP (TGP) is by such reasons an improved tag compared to the conventional jellyfish GFPs. TGP faithfully reports membrane protein stability at temperatures near 90?°C (20-min heating). By contrast, the limit for the two popular GFPs is 64?°C and 74?°C. Replacing GFPs with TGP increases yield for all four test membrane proteins in four expression systems. To establish TGP as an affinity tag for membrane protein purification, several high-affinity synthetic nanobodies (sybodies), including a non-competing pair, are generated, and the crystal structure of one complex is solved. Given these advantages, we anticipate that TGP becomes a widely used tool for membrane protein structural studies.

SUBMITTER: Cai H 

PROVIDER: S-EPMC7729955 | biostudies-literature | 2020 Dec

REPOSITORIES: biostudies-literature

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An improved fluorescent tag and its nanobodies for membrane protein expression, stability assay, and purification.

Cai Hongmin H   Yao Hebang H   Li Tingting T   Hutter Cedric A J CAJ   Li Yanfang Y   Tang Yannan Y   Seeger Markus A MA   Li Dianfan D  

Communications biology 20201210 1


Green fluorescent proteins (GFPs) are widely used to monitor membrane protein expression, purification, and stability. An ideal reporter should be stable itself and provide high sensitivity and yield. Here, we demonstrate that a coral (Galaxea fascicularis) thermostable GFP (TGP) is by such reasons an improved tag compared to the conventional jellyfish GFPs. TGP faithfully reports membrane protein stability at temperatures near 90 °C (20-min heating). By contrast, the limit for the two popular G  ...[more]

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