| Literature DB >> 31495713 |
Andrea C Kneuttinger1, Kristina Straub1, Philipp Bittner2, Nadja A Simeth3, Astrid Bruckmann4, Florian Busch5, Chitra Rajendran1, Enrico Hupfeld1, Vicki H Wysocki5, Dominik Horinek6, Burkhard König2, Rainer Merkl1, Reinhard Sterner7.
Abstract
Imidazole glycerol phosphate synthase (ImGPS) is an allosteric bienzyme complex in which substrate binding to the synthase subunit HisF stimulates the glutaminase subunit HisH. To control this stimulation with light, we have incorporated the photo-responsive unnatural amino acids phenylalanine-4'-azobenzene (AzoF), o-nitropiperonyl-O-tyrosine (NPY), and methyl-o-nitropiperonyllysine (mNPK) at strategic positions of HisF. The light-mediated isomerization of AzoF at position 55 (fS55AzoFE ↔ fS55AzoFZ) resulted in a reversible 10-fold regulation of HisH activity. The light-mediated decaging of NPY at position 39 (fY39NPY → fY39) and of mNPK at position 99 (fK99mNPK → fK99) led to a 4- to 6-fold increase of HisH activity. Molecular dynamics simulations explained how the unnatural amino acids interfere with the allosteric machinery of ImGPS and revealed additional aspects of HisH stimulation in wild-type ImGPS. Our findings show that unnatural amino acids can be used as a powerful tool for the spatiotemporal control of a central metabolic enzyme complex by light.Entities:
Keywords: allostery; enzyme catalysis; photo-control; protein design; synthetic biology; unnatural amino acids
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Year: 2019 PMID: 31495713 PMCID: PMC7293202 DOI: 10.1016/j.chembiol.2019.08.006
Source DB: PubMed Journal: Cell Chem Biol ISSN: 2451-9448 Impact factor: 8.116