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Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically in genetically engineered bacteria.

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Page 1: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically

Production of Eukaryotic Proteins in Bacteria

Human insulin, human growth hormone, and other valuable eukaryotic proteins can be

produced economically in genetically engineered bacteria.

Page 2: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically

Expression of Human Growth Hormone in E. coli

Page 3: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically

Key Points

Valuable proteins that could be isolated from eukaryotes only in small amounts and at great expense can now be produced in large quantities in genetically engineered bacteria.

Proteins such as human insulin and human growth hormone are valuable pharmaceuticals used to treat diabetes and pituitary dwarfism, respectively.

Page 4: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically

Transgenic Animals

Synthetic, modified, or other foreign genes can be introduced into animals and plants, and the resulting transgenic organisms can be used to

study the function of the genes, for example, by insertional mutagenesis, to produce novel products, or to serve as animal models for

studies of inherited human diseases.

Page 5: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically

Production of Transgenic Mice by DNA Injection into Eggs

Page 6: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically

Transgenic Mice Expressing Human Growth Hormone

Page 7: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically
Page 8: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically
Page 9: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically
Page 10: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically
Page 11: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically
Page 12: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically
Page 13: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically
Page 14: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically
Page 15: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically

Reverse Genetics:Dissecting Biological Processes by Inhibiting Gene Expression

Reverse genetic approaches make use of known nucleotide sequences to devise procedures for inhibiting the

expression of specific genes.

Page 16: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically

Reverse Genetics

Reverse genetic approaches use the nucleotide sequences of genes to devise procedures for isolating null mutations in them or shutting off their expression.

The function of a gene often can be deduced by studying organisms lacking any functional product of the gene.

Page 17: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically

Knockout Mice

Page 18: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically
Page 19: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically
Page 20: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically

Production of Gene-targeted Embryonic Stem Cell Technology

Page 21: Production of Eukaryotic Proteins in Bacteria Human insulin, human growth hormone, and other valuable eukaryotic proteins can be produced economically