Establishment of a genome editing system and expression of heterologous proteins in the nonconventional yeast Pichia kudriavzevii
Jiayin Ma, Yifan Cui, Binru Yin, Cheng JinImpact statement
Nonconventional yeast Pichia kudriavzevii possesses attractive phenotypic traits for industrial biomanufacturing; however, it remains genetically intractable compared with established yeast chassis. Here, we present an integrated synthetic biology framework that renders P. kudriavzevii a programmable production host. We established a highly efficient CRISPR/Cas9 genome editing system in this diploid yeast, enabling marker‐free editing with efficiencies of up to 88% and routine generation of homozygous mutants. By integrating efficient marker‐free CRISPR/Cas9 genome editing and locus‐aware expression strategies, we successfully expressed secretory mCherry and human IgG1 Fc fragment at different loci. Our results demonstrate that P. kudriavzevii is a promising expression system for protein production.