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Structural insights into the mechanism of internal aldimine formation and catalytic loop dynamics in an archaeal Group II decarboxylase
Chellam Gayathri, S.,
Published in Academic Press Inc.
2019
PMID: 31445086
Volume: 208
   
Issue: 2
Pages: 137 - 151
Abstract
Formation of the internal aldimine (LLP) is the first regulatory step that activates pyridoxal 5′-phosphate (PLP) dependent enzymes. The process involves a nucleophilic attack on PLP by an active site Lys residue, followed by proton transfers resulting in a carbinolamine (CBA) intermediate that undergoes dehydration to form the aldimine. Despite a general understanding of the pathway, the structural basis of the mechanistic roles of specific residues in each of these steps is unclear. Here we determined the crystal structure of the LLP form (holo-form) of a Group II PLP-dependent decarboxylase from Methanocaldococcus jannaschii (MjDC) at 1.7 Å resolution. By comparing the crystal structure of MjDC in the LLP form with that of the pyridoxal-P (non-covalently bound aldehyde) form, we demonstrate structural evidence for a water-mediated mechanism of LLP formation. A conserved extended hydrogen-bonding network around PLP coupled to the pyridinyl nitrogen influences activation and catalysis by affecting the electronic configuration of PLP. Furthermore, the two cofactor bound forms revealed open and closed conformations of the catalytic loop (CL) in the absence of a ligand, supporting a hypothesis for a regulatory link between LLP formation and CL dynamics. The evidence suggests that activation of Group II decarboxylases involves a complex interplay of interactions between the electronic states of PLP, the active site micro-environment and CL dynamics. © 2019 Elsevier Inc.
About the journal
JournalJournal of Structural Biology
PublisherAcademic Press Inc.
ISSN10478477
Open AccessNo
Concepts (37)
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    ALDIMINE
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    CARBOXYLYASE
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    Imine
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    Nitrogen
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    PYRIDINYL NITROGEN
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    PYRIDOXAL 5 PHOSPHATE
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    Unclassified drug
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    Water
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    Article
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    Biochemistry
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    Catalysis
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    CATALYTIC LOOP DYNAMICS
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    Chemical interaction
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    Conformation
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    Controlled study
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    Crystal structure
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    Dynamics
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    Enzyme activation
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    Enzyme active site
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    Enzyme conformation
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    Hydrogen bond
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    METHANOCALDOCOCCUS JANNASCHII
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    Microenvironment
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    Nonhuman
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    Oligomerization
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    Priority journal
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    Protein binding
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    Protein expression
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    Protein purification
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    Protein quaternary structure
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    Protein structure
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    Proton transport
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    Protonation
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    Regulatory mechanism
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    Sequence alignment
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    Structure analysis
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    Synthesis