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Biology subjects

Song, S.-J.

Publications and source records attributed to Song, S.-J..

2 recordsLinked to original sources

Knocking out two polyphenol oxidase genes significantly improves recombinant protein purification in Nicotiana benthamiana

Efficient purification remains one of the major bottlenecks in the development of plant-based systems for recombinant protein production. The complex metabolites, particularly polyphenols, which usually cause recombinant protein aggregation during purification. In this study, we identified two key polyphenol oxidase genes, PPOa and PPOb from N.benthamiana as responsible for these effects. Using CRISPR/Cas9, we generated two ppoa;ppob double knockout lines that significantly improved the purification of functional proteins like SARS-CoV-2 Spike trimer and influenza HA trimer. These lines showed reduced polyphenol-protein interactions, minimized aggregation, and higher purification yields. Our work establishes a clean, high-efficiency N. benthamiana chassis for scalable recombinant protein production.

synthetic biology↗

SBT5.2s are the major active extracellular subtilases processing IgG antibody 2F5 in the Nicotiana benthamiana apoplast

Plants offer a powerful platform for recombinant protein production but degradation of recombinant proteins by endogenous proteases is causing severe yield losses. Here, we introduce triple knockout lines for SBT5.2, the major active subtilases in the apoplast of agroinfiltrated Nicotiana benthamiana. HIV-neutralising IgG antibody 2F5 is no longer cleaved in the apoplast of sbt5.2 mutants and these mutants accumulate 3-fold more 2F5 upon transient expression but grow normally. Remarkably, however, 2F5 does not accumulate in the apoplast and is not exposed to SBT5.2 when transiently expressed, uncovering an important controversy regarding the subcellular localisation of IgGs in agroinfiltrated plants.

plant biology↗