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A role for molecular compression in the post-translational formation of the Green Fluorescent Protein chromophore

Academic Article
Publication Date:
2010
abstract:
Spontaneous chromophore formation is probably the key feature for the remarkable success of GFPs (Green Fluorescent Proteins) and related proteins in fluorescence microscopy. Though a quantitative analysis of the involved energetics still remains elusive, substantial progress has been made in identifying the steps of chromophore biosynthesis and the contribution of individual residues and surrounding protein matrix. The latter clearly enforces a peculiar configuration of the pre-cyclized chromophore-forming tripeptide. However, it is debated whether a mechanical compression is also at play in triggering backbone cyclization. Here, by molecular dynamics and potential of mean force calculations, we estimate the contribution of the protein scaffold in promoting the proximity of reacting atoms-and hence backbone cyclization - by a sort of compression mechanism. Comparing several mutants we highlight the role of some surrounding residues. Finally, we analyze the case of HAL (Histidine Ammonia-Lyase) active site, which undergoes an analogous cyclization reaction. (C) 2010 Elsevier B.V. All rights reserved.
Iris type:
01.01 Articolo in rivista
Keywords:
FLUOROPHORE BIOSYNTHESIS; GFP; CYCLIZATION; CH; MECHANISM
List of contributors:
Nifosi', Riccardo
Authors of the University:
NIFOSI' RICCARDO
Handle:
https://iris.cnr.it/handle/20.500.14243/73193
Published in:
CHEMICAL PHYSICS
Journal
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