TY - JOUR
T1 - Multi-enzyme assemblies both in the cell membrane and cytoplasm boost intracellular lycopene production
AU - Shi, Yi
AU - Liu, Minghui
AU - Wang, Yuwei
AU - Chen, Yao
AU - Jiang, Ling
N1 - Publisher Copyright:
© 2024
PY - 2025/2
Y1 - 2025/2
N2 - The multi-enzyme assembly system demonstrates remarkable potential in enhancing both intracellular and extracellular enzyme catalysis. In this study, we employed a novel icosahedral protein cage, Mi3, as a protein scaffold and combined it with an ester bond-based peptide tagging system, ReverseTag/ReverseCatcher, to improve the enzymatic catalytic efficiency both in vitro and in vivo. In vitro, we fused ReverseTag to the N-terminal of exo-inulinase (EXINU) from Pseudomonas mucidolens, yielding ReverseTag-EXINU, which effectively bound to the surface of the ReverseCatcher-Mi3 protein cage. Following assembly, the Km value decreased from 16.3 to 7.9 g/L, while kcat/Km value increased from 1.9 to 3.0 L s−1 g−1, indicating a significant enhancement in substrate affinity and enzymatic catalytic efficiency. In vivo, we constructed a protein-cage multi-enzyme assembly system located in the cytoplasm and cell membrane based on ReverseTag/ReverseCatcher/Mi3 system. In lycopene biosynthesis, the production of lycopene after assembly was increased by 2.97 times compared to free enzyme catalysis. This strategy holds profound implications for fields such as synthetic biology and enzyme engineering.
AB - The multi-enzyme assembly system demonstrates remarkable potential in enhancing both intracellular and extracellular enzyme catalysis. In this study, we employed a novel icosahedral protein cage, Mi3, as a protein scaffold and combined it with an ester bond-based peptide tagging system, ReverseTag/ReverseCatcher, to improve the enzymatic catalytic efficiency both in vitro and in vivo. In vitro, we fused ReverseTag to the N-terminal of exo-inulinase (EXINU) from Pseudomonas mucidolens, yielding ReverseTag-EXINU, which effectively bound to the surface of the ReverseCatcher-Mi3 protein cage. Following assembly, the Km value decreased from 16.3 to 7.9 g/L, while kcat/Km value increased from 1.9 to 3.0 L s−1 g−1, indicating a significant enhancement in substrate affinity and enzymatic catalytic efficiency. In vivo, we constructed a protein-cage multi-enzyme assembly system located in the cytoplasm and cell membrane based on ReverseTag/ReverseCatcher/Mi3 system. In lycopene biosynthesis, the production of lycopene after assembly was increased by 2.97 times compared to free enzyme catalysis. This strategy holds profound implications for fields such as synthetic biology and enzyme engineering.
KW - Mi3
KW - Multi-enzyme assembly
KW - Protein cage
KW - ReverseTag/ReverseCatcher
UR - http://www.scopus.com/inward/record.url?scp=85211970871&partnerID=8YFLogxK
U2 - 10.1016/j.ijbiomac.2024.138654
DO - 10.1016/j.ijbiomac.2024.138654
M3 - 文章
AN - SCOPUS:85211970871
SN - 0141-8130
VL - 288
JO - International Journal of Biological Macromolecules
JF - International Journal of Biological Macromolecules
M1 - 138654
ER -