Exploring the convergence of in vitro synthetic biology and AI-driven protein engineering for sustainable biorefineries.
Discover how SAAFEC-SEQ revolutionizes protein mutation impact prediction using sequence data alone, outperforming traditional structure-based methods.
Discover how hemoglobin, the oxygen-carrying protein in blood, acts as an unexpected defender against tooth enamel erosion caused by stomach acids.
Discover how protein engineering created a high-affinity GM-CSFRα antibody to precisely target rheumatoid arthritis inflammation at its source.
How single-nucleotide mutation mapping is revolutionizing protein design, metabolic engineering, and genetic medicine.
Discover how nitrogen limitation reveals yeast's remarkable metabolic and translational reserve capacities, with implications for biotechnology and cellular biology.
Discover how genetic engineering is creating climate-resilient maize to combat drought, heat, and salinity stresses threatening global food security.
Exploring how bioreductions using microbial enzymes are revolutionizing the production of chiral molecules for pharmaceuticals.
Exploring how monoclonal antibodies are transforming cyanide detoxification through precision engineering and catalytic mimicry.
Discover how Aspergillus glaucus fungus helps engineer salt-tolerant soybeans through aquaporin protein AgGlpF, offering solutions for global food security.