This article provides a comprehensive overview for researchers and drug development professionals on advanced strategies in metabolic engineering to reduce NADPH consumption.
This article synthesizes the latest advances in cofactor engineering, focusing on the rational redesign of NADPH and ATP regeneration pathways to power microbial cell factories and cellular processes.
This article synthesizes current research on the overexpression of pentose phosphate pathway (PPP) enzymes as a central mechanism in metabolic reprogramming, driving NADPH production to support cancer proliferation, therapy resistance,...
This comprehensive review explores promoter engineering as a pivotal metabolic engineering strategy to enhance NADPH regeneration, addressing a critical bottleneck in the microbial production of high-value pharmaceuticals and biochemicals.
This article provides a comprehensive overview of the latest advances in genetically encoded biosensors for ATP and NADPH, crucial cofactors in cellular metabolism.
This article provides a comprehensive resource for researchers and drug development professionals on CSR-SALAD (Cofactor Specificity Reversal – Structural Analysis and Library Design), an automated computational tool for reversing enzyme...
This article provides a comprehensive overview of static regulation strategies for NADPH regeneration, a critical cofactor in cellular antioxidative defense and reductive biosynthesis.
The NADPH/NADP+ redox couple is a central regulator of cellular redox homeostasis, antioxidant defense, and reductive biosynthesis.
This article provides a comprehensive analysis of the critical link between intracellular cofactor availability and the efficiency of heterologous protein production.
This article comprehensively explores the strategic rewiring of microbial metabolism through cofactor swapping—the engineering of enzymatic cofactor specificity from NAD(H) to NADP(H) or vice versa.