pyrophosphate and linalyl-pyrophosphate

pyrophosphate has been researched along with linalyl-pyrophosphate* in 2 studies

Other Studies

2 other study(ies) available for pyrophosphate and linalyl-pyrophosphate

ArticleYear
Direct Evidence of an Enzyme-Generated LPP Intermediate in (+)-Limonene Synthase Using a Fluorinated GPP Substrate Analog.
    ACS chemical biology, 2019, 09-20, Volume: 14, Issue:9

    Topics: Acyclic Monoterpenes; Catalytic Domain; Citrus sinensis; Crystallography, X-Ray; Diphosphates; Diterpenes; Enzyme Assays; Enzyme Inhibitors; Intramolecular Lyases; Polyisoprenyl Phosphates

2019
Inhibition of monoterpene cyclases by inert analogues of geranyl diphosphate and linalyl diphosphate.
    Archives of biochemistry and biophysics, 2007, Dec-01, Volume: 468, Issue:1

    The tightly coupled nature of the reaction sequence catalyzed by monoterpene synthases has prevented direct observation of the topologically required isomerization step leading from geranyl diphosphate to the enzyme-bound, tertiary allylic intermediate linalyl diphosphate, which then cyclizes to the various monoterpene skeletons. X-ray crystal structures of these enzymes complexed with suitable analogues of the substrate and intermediate could provide a clearer view of this universal, but cryptic, step of monoterpenoid cyclase catalysis. Toward this end, the functionally inert analogues 2-fluorogeranyl diphosphate, (+/-)-2-fluorolinalyl diphosphate, and (3R)- and (3S)-homolinalyl diphosphates (2,6-dimethyl-2-vinyl-5-heptenyl diphosphates) were prepared, and compared to the previously described substrate analogue 3-azageranyl diphosphate (3-aza-2,3-dihydrogeranyl diphosphate) as inhibitors and potential crystallization aids with two representative monoterpenoid cyclases, (-)-limonene synthase and (+)-bornyl diphosphate synthase. Although these enantioselective synthases readily distinguished between (3R)- and (3S)-homolinalyl diphosphates, both of which were more effective inhibitors than was 3-azageranyl diphosphate, the fluorinated analogues proved to be the most potent competitive inhibitors and have recently yielded informative liganded structures with limonene synthase.

    Topics: Acyclic Monoterpenes; Diphosphates; Diterpenes; Enzyme Activation; Enzyme Inhibitors; Enzyme Stability; Intramolecular Lyases; Monoterpenes; Polyisoprenyl Phosphates

2007