| Literature DB >> 32015122 |
Ryan J Durham1,2, Nabina Paudyal1,2, Elisa Carrillo1, Nidhi Kaur Bhatia1, David M Maclean3, Vladimir Berka1, Drew M Dolino1,2, Alemayehu A Gorfe2,4, Vasanthi Jayaraman5,2.
Abstract
Allostery can be manifested as a combination of repression and activation in multidomain proteins allowing for fine tuning of regulatory mechanisms. Here we have used single molecule fluorescence resonance energy transfer (smFRET) and molecular dynamics simulations to study the mechanism of allostery underlying negative cooperativity between the two agonists glutamate and glycine in the NMDA receptor. These data show that binding of one agonist leads to conformational flexibility and an increase in conformational spread at the second agonist site. Mutational and cross-linking studies show that the dimer-dimer interface at the agonist-binding domain mediates the allostery underlying the negative cooperativity. smFRET on the transmembrane segments shows that they are tightly coupled in the unliganded and single agonist-bound form and only upon binding both agonists the transmembrane domain explores looser packing which would facilitate activation.Entities:
Keywords: FRET; MD simulations; NMDA receptors; allostery
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Year: 2020 PMID: 32015122 PMCID: PMC7035515 DOI: 10.1073/pnas.1910950117
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205