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1.
Nat Chem Biol ; 17(6): 718-723, 2021 06.
Artigo em Inglês | MEDLINE | ID: mdl-33795886

RESUMO

Functional imaging using fluorescent indicators has revolutionized biology, but additional sensor scaffolds are needed to access properties such as bright, far-red emission. Here, we introduce a new platform for 'chemigenetic' fluorescent indicators, utilizing the self-labeling HaloTag protein conjugated to environmentally sensitive synthetic fluorophores. We solve a crystal structure of HaloTag bound to a rhodamine dye ligand to guide engineering efforts to modulate the dye environment. We show that fusion of HaloTag with protein sensor domains that undergo conformational changes near the bound dye results in large and rapid changes in fluorescence output. This generalizable approach affords bright, far-red calcium and voltage sensors with highly tunable photophysical and chemical properties, which can reliably detect single action potentials in cultured neurons.


Assuntos
Corantes Fluorescentes/química , Hidrolases/química , Potenciais de Ação/efeitos dos fármacos , Animais , Bioengenharia , Cálcio/química , Células Cultivadas , Cristalografia por Raios X , Fenômenos Eletrofisiológicos , Corantes Fluorescentes/síntese química , Hidrolases/síntese química , Cinética , Conformação Molecular , Estrutura Molecular , Neurônios/efeitos dos fármacos , Cultura Primária de Células , Proteínas/química , Ratos , Rodaminas
2.
J Cell Biol ; 220(7)2021 07 05.
Artigo em Inglês | MEDLINE | ID: mdl-33956941

RESUMO

A recurring feature of innate immune receptor signaling is the self-assembly of signaling proteins into oligomeric complexes. The Myddosome is an oligomeric complex that is required to transmit inflammatory signals from TLR/IL1Rs and consists of MyD88 and IRAK family kinases. However, the molecular basis for how Myddosome proteins self-assemble and regulate intracellular signaling remains poorly understood. Here, we developed a novel assay to analyze the spatiotemporal dynamics of IL1R and Myddosome signaling in live cells. We found that MyD88 oligomerization is inducible and initially reversible. Moreover, the formation of larger, stable oligomers consisting of more than four MyD88s triggers the sequential recruitment of IRAK4 and IRAK1. Notably, genetic knockout of IRAK4 enhanced MyD88 oligomerization, indicating that IRAK4 controls MyD88 oligomer size and growth. MyD88 oligomer size thus functions as a physical threshold to trigger downstream signaling. These results provide a mechanistic basis for how protein oligomerization might function in cell signaling pathways.


Assuntos
Quinases Associadas a Receptores de Interleucina-1/genética , Fator 88 de Diferenciação Mieloide/genética , Receptores Tipo I de Interleucina-1/genética , Proteínas Adaptadoras de Transdução de Sinal , Animais , Humanos , Imunidade Inata/genética , Camundongos , Multimerização Proteica , Transdução de Sinais
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