Molecular cell biology / Harvey Lodish [and five others]. 6

By: 4 0 16, [, ] | [, ] |
Contributor(s): 5 6 [] |
Language: Unknown language code Summary language: Unknown language code Original language: Unknown language code Series: ; New York : Scientific American Books :;Distributed by W.H. Freeman and Co., [1995]46Edition: Third editionDescription: 29 cm. 1 volume (various pagings) : illustrations (some color)Content type: text Media type: unmediated;unmediated Carrier type: volumeISBN: 0716723808 (hardback)ISSN: 2Other title: 6 []Uniform titles: | | Related works: 1 40 Lodish, Harvey F.;Darnell, James E. 6 []Subject(s): -- 2 -- 0 -- -- | -- 2 -- 0 -- 6 -- | 2 0 -- | -- -- 20 -- | | -- -- Cytology.;Molecular biology.;Cells. -- -- 20 -- | -- -- -- 20 -- --Genre/Form: -- 2 -- Additional physical formats: DDC classification: | 571.6 M732 1995 LOC classification: | QH581.2 | .D37 19952Other classification:
Contents:
Pt. 1. Laying the groundwork -- The dynamic cell -- Chemical foundations -- Protein structure and function -- Nucleic acids, the genetic code, and protein synthesis -- Cell organization, subcellular structure, and cell division -- Manipulating cells and viruses in culture -- Recombinant DNA technology -- Genetic analysis in cell biology -- Pt. 2. Control of cellular activity by the nucleus -- The molecular anatomy of genes and chromosomes -- DNA replication, repair, and recombination -- Regulation of transcription initiation -- Transcription termination, RNA processing, and posttranscriptional control -- Gene control in development -- Pt. 3. Building and fueling the cell -- Membrane structure: the plasma membrane -- Transport across cell membranes -- Synthesis and sorting of plasma membrane, secretory, and lysosomal proteins -- Cellular energetics: formation of ATP by glycolysis and oxidative phosphorylation -- Photosynthesis -- Organelle biogenesis: the mitrochondrion, chloroplast, peroxisome, and nucleus -- Pt. 5. Integrative and specialized cellular events -- Cell-to-cell signaling -- Nerve cells -- Microfilaments: cell motility and control -- Microtubules and intermediated filaments -- Multicellularity: cell-to-cell and cell-matrix interactions -- Regulation of the Eukaryotic cell cycle -- Cancer -- Immunity.
Action note: In: Summary: This edition features: new chapters on recombinant DNA technology and genetic analysis; discussions of new techniques, including electrophoretic mobility shift assays, DNA footprinting, gene replacement and transgenic animals; and expanded coverage of developmental genetics. Other editions:
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Second edition's main entry under the heading for Darnell. 56

Includes bibliographical references and index.

Pt. 1. Laying the groundwork -- The dynamic cell -- Chemical foundations -- Protein structure and function -- Nucleic acids, the genetic code, and protein synthesis -- Cell organization, subcellular structure, and cell division -- Manipulating cells and viruses in culture -- Recombinant DNA technology -- Genetic analysis in cell biology -- Pt. 2. Control of cellular activity by the nucleus -- The molecular anatomy of genes and chromosomes -- DNA replication, repair, and recombination -- Regulation of transcription initiation -- Transcription termination, RNA processing, and posttranscriptional control -- Gene control in development -- Pt. 3. Building and fueling the cell -- Membrane structure: the plasma membrane -- Transport across cell membranes -- Synthesis and sorting of plasma membrane, secretory, and lysosomal proteins -- Cellular energetics: formation of ATP by glycolysis and oxidative phosphorylation -- Photosynthesis -- Organelle biogenesis: the mitrochondrion, chloroplast, peroxisome, and nucleus -- Pt. 5. Integrative and specialized cellular events -- Cell-to-cell signaling -- Nerve cells -- Microfilaments: cell motility and control -- Microtubules and intermediated filaments -- Multicellularity: cell-to-cell and cell-matrix interactions -- Regulation of the Eukaryotic cell cycle -- Cancer -- Immunity.

5

This edition features: new chapters on recombinant DNA technology and genetic analysis; discussions of new techniques, including electrophoretic mobility shift assays, DNA footprinting, gene replacement and transgenic animals; and expanded coverage of developmental genetics.

5

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