Genetic Enhancement

High-efficiency protein expression mediated by enterovirus 71 internal ribosome entry site

Biotechnology / Multidisciplinary / Protein Engineering / Humans / Genetic Enhancement / Animals / Hepatocellular Carcinoma / Protein Expression / Transfection / Ribosomes / High Efficiency / Internal ribosome entry site / Protein Biosynthesis / Animals / Hepatocellular Carcinoma / Protein Expression / Transfection / Ribosomes / High Efficiency / Internal ribosome entry site / Protein Biosynthesis

High-efficiency protein expression mediated by enterovirus 71 internal ribosome entry site

Biotechnology / Multidisciplinary / Protein Engineering / Humans / Genetic Enhancement / Animals / Hepatocellular Carcinoma / Protein Expression / Transfection / Ribosomes / High Efficiency / Internal ribosome entry site / Protein Biosynthesis / Encephalomyocarditis virus / Animals / Hepatocellular Carcinoma / Protein Expression / Transfection / Ribosomes / High Efficiency / Internal ribosome entry site / Protein Biosynthesis / Encephalomyocarditis virus

Endoplasmic reticulum-retention C-terminal sequence enhances production of an 11S seed globulin fromAmaranthus hypochondriacus inPichia pastoris

Biotechnology / Industrial Biotechnology / Protein Engineering / Environmental Biotechnology / Genetic Enhancement / Medical Biotechnology / Endoplasmic Reticulum / Allergens / Amaranthus / Seeds / Heterologous Expression / Recombinant Proteins / PLANT PROTEINS / Seed storage proteins / Medical Biotechnology / Endoplasmic Reticulum / Allergens / Amaranthus / Seeds / Heterologous Expression / Recombinant Proteins / PLANT PROTEINS / Seed storage proteins

Glycosyltransferase efficiently controls phenylpropanoid pathway

Technology / Signal Transduction / Potato / Biological Sciences / Genetic Enhancement / Enzyme / Anthocyanins / Solanum / Glycosyltransferases / Transgenic plant / Chlorogenic Acid / Enzyme / Anthocyanins / Solanum / Glycosyltransferases / Transgenic plant / Chlorogenic Acid
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