A High-Affinity Nanobody Recognizing mNeonGreen Enables Versatile Biochemical, Cellular, and in vivo Applications.
Gere-Becker, M.; Funk, L.-M.; Groeger, M.; Kilisch, M.; Najafi, P.; Koenig, F.; Aloisi, F.; Song, X.; Davis, L. C.; Galione, A.; Hafeez, S.; Martin, B. L.; Fornasiero, E. F.; Kalienkova, V.; Reinmuth, L.; Kursula, P.; Goetzke, H.; Opazo, F.; Frey, S.
Show abstract
mNeonGreen (mNG) is among the brightest and most photostable monomeric green fluorescent proteins and is widely used for protein tagging. Here, we present sdAb(mNG), a high-affinity single-domain antibody (sdAb) that enables biochemical capture, imaging, and manipulation of mNG-tagged proteins. A 1.26 [A] crystal structure reveals an extensive interaction surface between mNG and sdAb(mNG), accounting for its high affinity (KD = 0.39 nM) and robust target recognition across diverse experimental conditions. This allows a single sdAb to support applications that typically require multiple specialized tools. We demonstrate the utility of sdAb(mNG) in several example applications including highly specific immunoprecipitation, direct immunofluorescence, and super-resolution imaging. Importantly, sdAb(mNG) retains high-performance target recognition even in intracellular environments. When expressed as an intrabody in living mammalian cells, sdAb(mNG) enables relocalization of mNG-tagged proteins to defined compartments or visualization of synaptic vesicle transport in primary neurons. In zebrafish, fusion of sdAb(mNG) to an F-box degradation domain induces cell-autonomous depletion of an endogenous mNG-tagged transcription factor and produces a clear developmental phenotype. These findings establish sdAb(mNG) as a versatile and robust affinity reagent that converts mNG from a passive fluorescent reporter into a multifunctional handle for imaging, proteomics, and programmable manipulation of endogenous and engineered proteins.
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