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Cell Biology and Biotechnology
(Englisch)
Novel Approaches to Increased Cellular Productivity
Oka, Melvin S. & Rupp, Randall G.

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Cell Biology and Biotechnology

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Cell Biology and Biotechnology: Novel Approaches to Increased Cellular Productivity contains the proceedings of the symposium by the same name held in Cambridge, Massachusetts, January 30 - February 2, 1992. State-of-the-art research is presented on: the IGF-1 Receptor and Gene Expression During the Cell Cycle; Attachment Control of Fibroplast Proliferation; Cell Biology and Serum-Free Mouse Embryo Cells; Immunoglobulin Production Stimulating Factors; Erythropoietin Control of Programmed Death in Erythroid Progenitors; Prohormone Processing Enzymes and Protein Production; Control of Translation Initiation by Phosphorylation; Protein Retention in the Endoplasmic Reticulum Mediated by GPR78; Molecular Approaches Towards Manipulating the Expression of the Glucose Related Proteins in Mammalian Cells; Protein Folding in the Endoplasmic Reticulum; Sorting of Membrane Proteins in the Endocytic and Exocytic Pathways; CIS-Acting Elements Which Regulate Immunoglobulin Gene Tranillegalscription.
1. IGF-I Receptor and Gene Expression During the Cell Cycle.- 2. Attachment Control of Fibroblast Proliferation.- 3. Cell Biology of Serum-Free Mouse Embryo (SFME) Cells.- 4. Immunoglobulin Production Stimulating Factors.- 5. Erythropoietin Control of Programmed Death in Erythroid Progenitors.- 6. Prohormone Processing Enzymes and Protein Production.- 7. Control of Translation Initiation by Phosphorylation.- 8. Protein Retention in the Endoplasmic Reticulum Mediated by GRP78.- 9. Molecular Approaches Toward Manipulating the Expression of the Glucose-Regulated Proteins in Mammalian Cells.- 10. Protein Folding in the Endoplasmic Reticulum.- 11. Sorting of Membrane Proteins in the Endocytic and Exocytic Pathways.- 12. Cis-Acting Elements That Regulate Immunoglobulin Gene Tranillegalscription.- Author Index.
Cell Biology and Biotechnology: Novel Approaches to Increased Cellular Productivity contains the proceedings of the symposium by the same name held in Cambridge, Massachusetts, January 30 - February 2, 1992. Molecular Approaches Towards Manipulating the Expression of the Glucose Related Proteins in Mammalian Cells;



Inhaltsverzeichnis



1. IGF-I Receptor and Gene Expression During the Cell Cycle.- 2. Attachment Control of Fibroblast Proliferation.- 3. Cell Biology of Serum-Free Mouse Embryo (SFME) Cells.- 4. Immunoglobulin Production Stimulating Factors.- 5. Erythropoietin Control of Programmed Death in Erythroid Progenitors.- 6. Prohormone Processing Enzymes and Protein Production.- 7. Control of Translation Initiation by Phosphorylation.- 8. Protein Retention in the Endoplasmic Reticulum Mediated by GRP78.- 9. Molecular Approaches Toward Manipulating the Expression of the Glucose-Regulated Proteins in Mammalian Cells.- 10. Protein Folding in the Endoplasmic Reticulum.- 11. Sorting of Membrane Proteins in the Endocytic and Exocytic Pathways.- 12. Cis-Acting Elements That Regulate Immunoglobulin Gene Tranillegalscription.- Author Index.


Klappentext



Cell Biology and Biotechnology: Novel Approaches to Increased Cellular Productivity contains the proceedings of the symposium by the same name held in Cambridge, Massachusetts, January 30 - February 2, 1992. State-of-the-art research is presented on: the IGF-1 Receptor and Gene Expression During the Cell Cycle; Attachment Control of Fibroplast Proliferation; Cell Biology and Serum-Free Mouse Embryo Cells; Immunoglobulin Production Stimulating Factors; Erythropoietin Control of Programmed Death in Erythroid Progenitors; Prohormone Processing Enzymes and Protein Production; Control of Translation Initiation by Phosphorylation; Protein Retention in the Endoplasmic Reticulum Mediated by GPR78; Molecular Approaches Towards Manipulating the Expression of the Glucose Related Proteins in Mammalian Cells; Protein Folding in the Endoplasmic Reticulum; Sorting of Membrane Proteins in the Endocytic and Exocytic Pathways; CIS-Acting Elements Which Regulate Immunoglobulin Gene Tranillegalscription.




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