9B99 | pdb_00009b99

Crystal structure of Grindelia robusta 7,13-copalyl diphosphate synthase


Experimental Data Snapshot

  • Method: X-RAY DIFFRACTION
  • Resolution: 2.12 Å
  • R-Value Free: 
    0.229 (Depositor), 0.227 (DCC) 
  • R-Value Work: 
    0.185 (Depositor), 0.184 (DCC) 
  • R-Value Observed: 
    0.187 (Depositor) 

Starting Model: experimental
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Literature

The crystal structure of Grindelia robusta 7,13-copalyl diphosphate synthase reveals active site features controlling catalytic specificity.

Cowie, A.E.Pereira, J.H.DeGiovanni, A.McAndrew, R.P.Palayam, M.Peek, J.O.Muchlinski, A.J.Yoshikuni, Y.Shabek, N.Adams, P.D.Zerbe, P.

(2024) J Biological Chem 300: 107921-107921

  • DOI: https://doi.org/10.1016/j.jbc.2024.107921
  • Primary Citation of Related Structures:  
    9B99

  • PubMed Abstract: 

    Diterpenoid natural products serve critical functions in plant development and ecological adaptation and many diterpenoids have economic value as bioproducts. The family of class II diterpene synthases catalyzes the committed reactions in diterpenoid biosynthesis, converting a common geranylgeranyl diphosphate precursor into different bicyclic prenyl diphosphate scaffolds. Enzymatic rearrangement and modification of these precursors generates the diversity of bioactive diterpenoids. We report the crystal structure of Grindelia robusta 7,13-copalyl diphosphate synthase, GrTPS2, at 2.1 Å of resolution. GrTPS2 catalyzes the committed reaction in the biosynthesis of grindelic acid, which represents the signature metabolite in species of gumweed (Grindelia spp., Asteraceae). Grindelic acid has been explored as a potential source for drug leads and biofuel production. The GrTPS2 crystal structure adopts the conserved three-domain fold of class II diterpene synthases featuring a functional active site in the γβ-domain and a vestigial ɑ-domain. Substrate docking into the active site of the GrTPS2 apo protein structure predicted catalytic amino acids. Biochemical characterization of protein variants identified residues with impact on enzyme activity and catalytic specificity. Specifically, mutagenesis of Y457 provided mechanistic insight into the position-specific deprotonation of the intermediary carbocation to form the characteristic 7,13 double bond of 7,13-copalyl diphosphate.


  • Organizational Affiliation
    • Department of Plant Biology, University of California-Davis, 1 Shields Avenue, Davis, CA 95616, USA.

Macromolecules
Find similar proteins by:  (by identity cutoff)  |  3D Structure
Entity ID: 1
MoleculeChains Sequence LengthOrganismDetailsImage
Labda-7,13E-dienyl diphosphate synthase733Grindelia hirsutulaMutation(s): 0 
EC: 4.2.3.19
UniProt
Find proteins for A0A0H4SRM2 (Grindelia hirsutula)
Explore A0A0H4SRM2 
Go to UniProtKB:  A0A0H4SRM2
Entity Groups  
Sequence Clusters30% Identity50% Identity70% Identity90% Identity95% Identity100% Identity
UniProt GroupA0A0H4SRM2
Sequence Annotations
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  • Reference Sequence
Experimental Data & Validation

Experimental Data

  • Method: X-RAY DIFFRACTION
  • Resolution: 2.12 Å
  • R-Value Free:  0.229 (Depositor), 0.227 (DCC) 
  • R-Value Work:  0.185 (Depositor), 0.184 (DCC) 
  • R-Value Observed: 0.187 (Depositor) 
Space Group: P 1 21 1
Unit Cell:
Length ( Å )Angle ( ˚ )
a = 56.07α = 90
b = 79.11β = 97.59
c = 88.44γ = 90
Software Package:
Software NamePurpose
PHENIXrefinement
xia2data reduction
xia2data scaling
PHASERphasing

Structure Validation

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Entry History & Funding Information

Deposition Data


Funding OrganizationLocationGrant Number
Department of Energy (DOE, United States)United StatesDE-AC02-05CH11231

Revision History  (Full details and data files)

  • Version 1.0: 2024-11-06
    Type: Initial release
  • Version 1.1: 2024-11-27
    Changes: Database references