High-throughput reprogramming of an NRPS condensation domain

Высокопроизводительное перепрограммирование конденсационного домена NRPS
Ines B. Folger, Natália Frota, Angelos Pistofidis, David L. Niquille, Douglas A. Hansen, T.M. Schmeing, Donald Hilvert
2024-02-02

NRPS condensation domainshigh-throughput engineeringnoncanonical substratesurfactin synthetaseyeast display
Engineered biosynthetic assembly lines could revolutionize the sustainable production of bioactive natural product analogs. Although yeast display is a proven, powerful tool for altering the substrate specificity of gatekeeper adenylation domains in nonribosomal peptide synthetases (NRPSs), comparable strategies for other components of these megaenzymes have not been described. Here we report a high-throughput approach for engineering condensation (C) domains responsible for peptide elongation. We show that a 120-kDa NRPS module, displayed in functional form on yeast, can productively interact with an upstream module, provided in solution, to produce amide products tethered to the yeast surface. Using this system to screen a large C-domain library, we reprogrammed a surfactin synthetase module to accept a fatty acid donor, increasing catalytic efficiency for this noncanonical substrate >40-fold. Because C domains can function as selectivity filters in NRPSs, this methodology should facilitate the precision engineering of these molecular assembly lines.
1
A functional 120-kDa NRPS module was displayed on yeast and productively interacted with an upstream module supplied in solution.
2
Screening a large condensation-domain library reprogrammed a surfactin synthetase module to accept a fatty-acid donor.
3
The engineered condensation domain increased catalytic efficiency for the noncanonical fatty-acid substrate by more than 40-fold.
4
The methodology enables precision engineering of NRPS condensation domains, which can act as selectivity filters in peptide assembly lines.
5
The yeast-display system generated amide products tethered to the yeast surface, enabling high-throughput screening of condensation-domain variants.

NRPS condensation domains, including a surfactin synthetase module

High-throughput reprogramming of condensation-domain substrate specificity and catalytic efficiency for fatty acid donors

Publication Details
Publication Date
2024-02-02
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Authors
Ines B. Folger
Natália Frota
Angelos Pistofidis
David L. Niquille
Douglas A. Hansen
T.M. Schmeing
Donald Hilvert
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