Bioenergetics at a Glance
Autor Harrisen Limba Engleză Paperback – aug 1995
- Original, easily understood combination of visual and written information.
- 43 double-page speads give a clear and concise introduction to this traditionally difficult subject.
- The most up to date text available, covering all modern molecular genetic techniques.
- Competitively priced.
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Specificații
ISBN-13: 9780632023882
ISBN-10: 0632023880
Pagini: 120
Dimensiuni: 210 x 280 x 7 mm
Greutate: 0.32 kg
Editura: Wiley
Locul publicării:Chichester, United Kingdom
ISBN-10: 0632023880
Pagini: 120
Dimensiuni: 210 x 280 x 7 mm
Greutate: 0.32 kg
Editura: Wiley
Locul publicării:Chichester, United Kingdom
Public țintă
Bioenergetics and general biochemistry undergraduate studentsNotă biografică
D. A. Harris is the author of Bioenergetics at a Glance: An Illustrated Introduction, published by Wiley.
Cuprins
Scope of bioenergetics. The 'universal' view of energy.
The 'local' view of energy.
Equilibrium and equilibrium constants.
Sources of biological energy - quantitation.
Direct coupling of oxidation to anhydride formation.
Oxygen as an oxidising agent.
Respiratory carriers.
Respiratory chain (mitochondrial).
Respiratory assemblages (mitochondrial).
Mechanism of electron flow between proteins.
Variations within respiratory chains.
Light trapping and water splitting in chloroplasts.
Reaction centre structure.
Organisation of membrane proteins (chloroplast).
Photosynthetic bacteria.
Concepts of energy transduction- redox-anhydride bond energy.
Transfer via H+gradient -.
I. Qualitative aspects.
II. Kinetic aspects.
Quantitative aspects -.
I. H+/O ratio.
II. DGp/DMH+.
How does electron transfer generate H+ (I) + (II).
ATP synthase complex.
F1 structure.
F0 structure.
Coupling H+ gradient to ATP synthesis - energetics.
structural aspects.
Integration with cytoplasm - mitochondria.
Aspects of control - qualitative:quantitative.
Integration of cytoplasm/control - chloroplasts.
Uncouplers and ionophores in studies of phosphorylation.
Mitochondrial defects.
Alternative uses of H+ gradient.
Alternative gradient production.
ATP driven ion pumps - a broader perspective.
E-P pumps.
Evolution of pumps.
Evolution of organelles
The 'local' view of energy.
Equilibrium and equilibrium constants.
Sources of biological energy - quantitation.
Direct coupling of oxidation to anhydride formation.
Oxygen as an oxidising agent.
Respiratory carriers.
Respiratory chain (mitochondrial).
Respiratory assemblages (mitochondrial).
Mechanism of electron flow between proteins.
Variations within respiratory chains.
Light trapping and water splitting in chloroplasts.
Reaction centre structure.
Organisation of membrane proteins (chloroplast).
Photosynthetic bacteria.
Concepts of energy transduction- redox-anhydride bond energy.
Transfer via H+gradient -.
I. Qualitative aspects.
II. Kinetic aspects.
Quantitative aspects -.
I. H+/O ratio.
II. DGp/DMH+.
How does electron transfer generate H+ (I) + (II).
ATP synthase complex.
F1 structure.
F0 structure.
Coupling H+ gradient to ATP synthesis - energetics.
structural aspects.
Integration with cytoplasm - mitochondria.
Aspects of control - qualitative:quantitative.
Integration of cytoplasm/control - chloroplasts.
Uncouplers and ionophores in studies of phosphorylation.
Mitochondrial defects.
Alternative uses of H+ gradient.
Alternative gradient production.
ATP driven ion pumps - a broader perspective.
E-P pumps.
Evolution of pumps.
Evolution of organelles
Descriere
Bioenergetics is the study of the way biological systems, usually at the molecular level, utilize and convert energy. This illustrated text aims to provide a logical approach to the subject for the undergraduate or beginning postgraduate student, discussing recent advances.