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PDBsum entry 6tdd
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Protein binding
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PDB id
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6tdd
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References listed in PDB file
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Key reference
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Title
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Towards improved understanding of intersubunit interactions in modular polyketide biosynthesis: docking in the enacyloxin iia polyketide synthase.
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Authors
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F.Risser,
S.Collin,
R.Dos santos-Morais,
A.Gruez,
B.Chagot,
K.J.Weissman.
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Ref.
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J Struct Biol, 2020,
212,
107581.
[DOI no: ]
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PubMed id
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Abstract
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Modular polyketide synthases (PKSs) are molecular-scale assembly lines
comprising multiple gigantic polypeptide subunits. Faithful ordering of the
subunits is mediated by extreme C- and N-terminal regions called docking domains
(DDs). Decrypting how specificity is achieved by these elements is important
both for understanding PKS function and modifying it to generate useful
polyketide analogues for biological evaluation. Here we report the biophysical
and structural characterisation of all six PKS/PKS interfaces in the unusual,
chimaeric cis-AT/trans-AT PKS pathway responsible for biosynthesis of the
antibiotic enacyloxin IIa in Burkholderia ambifaria. Taken together with
previous work, our data reveal that specificity is achieved in the enacyloxin
PKS by deploying at least three functionally orthogonal classes of DDs. We also
demonstrate for the first time that cis-AT PKS subunits incorporate DDs with
intrinsically disordered character, reinforcing the utility of such regions for
achieving both medium affinity and high specificity at PKS intersubunit
junctions. Overall, this work substantially increases the number of orthogonal
DDs available for creating novel, highly-specific interfaces within cis- and
trans-AT PKSs and their hybrids. It also reveals unexpected sequence/structure
relationships in PKS DDs, identifying major current limitations to both
accurately predicting and categorising these useful protein-protein interaction
motifs.
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