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Mapping the catalytic conformations of an assembly-line polyketide synthase module.


ABSTRACT: Assembly-line polyketide synthases, such as the 6-deoxyerythronolide B synthase (DEBS), are large enzyme factories prized for their ability to produce specific and complex polyketide products. By channeling protein-tethered substrates across multiple active sites in a defined linear sequence, these enzymes facilitate programmed small-molecule syntheses that could theoretically be harnessed to access countless polyketide product structures. Using cryogenic electron microscopy to study DEBS module 1, we present a structural model describing this substrate-channeling phenomenon. Our 3.2- to 4.3-angstrom-resolution structures of the intact module reveal key domain-domain interfaces and highlight an unexpected module asymmetry. We also present the structure of a product-bound module that shines light on a recently described “turnstile” mechanism for transient gating of active sites along the assembly line.

SUBMITTER: Cogan DP 

PROVIDER: S-EPMC8842837 | biostudies-literature | 2021 Nov

REPOSITORIES: biostudies-literature

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Mapping the catalytic conformations of an assembly-line polyketide synthase module.

Cogan Dillon P DP   Zhang Kaiming K   Li Xiuyuan X   Li Shanshan S   Pintilie Grigore D GD   Roh Soung-Hun SH   Craik Charles S CS   Chiu Wah W   Khosla Chaitan C  

Science (New York, N.Y.) 20211104 6568


Assembly-line polyketide synthases, such as the 6-deoxyerythronolide B synthase (DEBS), are large enzyme factories prized for their ability to produce specific and complex polyketide products. By channeling protein-tethered substrates across multiple active sites in a defined linear sequence, these enzymes facilitate programmed small-molecule syntheses that could theoretically be harnessed to access countless polyketide product structures. Using cryogenic electron microscopy to study DEBS module  ...[more]

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