Identification and Engineering of UDP-rhamnosyltransferase from Trillium tschonoskii for Heterologous Biosynthesis of Polyphyllin II in Engineered Yeast
Yang, Y. x.; Wang, H. w.; Wu, Z. y.; Wang, X.; Tong, Y. r.; Huang, W.; Liu, X.; Zhao, H.; Hu, Y. t.; Zhang, X. n.
Show abstract
AbstractPolyphyllins, a class of isospirostan-type steroidal saponins, exhibit potent cytotoxicity against a variety range of cancer cells. Although extensive research efforts have been made, the complete biosynthetic pathway of these compounds remains unclear. In order to elucidate these pathways, different tissues from Trillium tschonoskii were collected for sequencing that yielded 173,382 high-quality unigene sequences, among which 353 were annotated as glycosyltransferases. Then, a novel rhamnosyltransferase gene, UGT738A3, was characterized, which catalyzes the conversion of triglycoside polyphyllin III and pennogenin 3-O-beta-chacotrioside into tetraglycoside polyphyllin II and polyphyllin VII. The key residues that affect the catalytic activity of UGT738A3 were identified through site-directed mutation that the mutant A158T/P101L exhibited improved catalytic activity towards polyphyllin III and pennogenin 3-O-beta-chacotrioside by 2.5-fold and 6.5-fold respectively. We thus reconstructed the biosynthesis pathway of polyphyllin II in yeast by introducing the UGT93M3(catalyzing the formation of polyphyllin VI) and UGT738A3A158T/P101L3. This study not only elucidates the pivotal role of UGT738A3 in catalyzing the formation of tetraglycoside, but also provides highly efficient enzymatic components essential for the heterologous biosynthesis of polyphyllin saponins.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Transport engineering for improving production and secretion of valuable alkaloids in Escherichia coli 94%
- Improved protein glycosylation enabled heterologous biosynthesis of monoterpenoid indole alkaloids and their unnatural derivatives in yeast 94%
- In vivo production of pederin by labrenzin pathway expansion 91%
Similar papers in this journal
- A bimodular PKS platform that expands the biological design space 93%
- Development of a growth coupled dynamic regulation network balancing malonyl-CoA node to enhance (2S)-naringenin synthesis in E. coli 93%
- Engineering amino acid-derived malonyl-CoA pathways to boost polyketide production in Yarrowia lipolytica 92%
Similar papers in this journal
- Structure and evolution of Alanine/Serine Decarboxylases and the engineering of theanine production 96%
- Crystal structure and catalytic mechanism of PL35 family glycosaminoglycan lyases with an ultrabroad substrate spectrum 94%
- The natural tannins oligomeric proanthocyanidins and punicalagin are potent inhibitors of infection by SARS-CoV-2 in vitro 93%
Similar papers in this journal
- Engineering the substrate specificity of toluene degrading enzyme XylM using biosensor XylS and machine learning 95%
- Engineering transcription factor BmoR mutants for constructing multifunctional alcohol biosensors 95%
- Engineering Yarrowia lipolytica as a chassis for de novo synthesis of five aromatic-derived natural products and chemicals 93%
Similar papers in this journal
- Converting Escherichia coli MG1655 into a chemical overproducer through inactivating defense system against exogenous DNA 92%
- Genome Mining and Characterization of a Heme-Dependent Enzyme Catalyzing Intermolecular Nitrogen-Nitrogen Bond Formation in Hydrazinosuccinic Acid Biosynthesis 92%
- Highly efficient genome editing in Bacillus subtilis via miniature DNA nucleases IscB. 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.