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Methionine

Editat de Alexander Snegursky
en Limba Engleză Hardback – 16 mai 2013
This book is dedicated to a very specific and interesting molecule/substance, Methionine. Methionine belongs to the α-amino acid group and as one of the essential amino acids, Methionine is classified as non-polar and one of two sulphur-containing proteinogenic amino acids. This substance is an intermediate in the biosynthesis of phospholipids, (ie: carnitine, cysteine, lecithin, phosphatidylcholine, taurine, and others). It is also being utilised by plants in synthesising ethylene. Methionine is one of only two amino acids encoded by a single codon (AUG) in the standard genetic code, therefore, it is incorporated into the N-terminal position of all proteins in eukaryotes and archaea during translation, although it is usually removed by post-translational modification. This book deals with the analysis of the most up-to-date data on Methionine properties related to its biosynthesis, electronic structure and toxicity issues. This book would be useful for students, post-graduates and scientists working in the field of studying amino acids, as one of the most prominent members of the family of molecules of biological relevance, tracing their basic properties and analysing their practical applications in the field of pharmaceutics, medicine and molecular physics.
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Specificații

ISBN-13: 9781626182462
ISBN-10: 1626182469
Pagini: 191
Ilustrații: illustrations
Dimensiuni: 183 x 258 x 17 mm
Greutate: 0.53 kg
Editura: Nova Science Publishers Inc

Cuprins

Preface; Methionine: A Key Regulatory Compound in Bacteria; Methionine & Methylation Balance: Pathways for the Production & Removal of Homocysteine; Selected Fast & Slow Methionine Sulfoximine-Inbred Mice: MSO-Dependent Seizures, Behavior, Brain Glycoprofiles, Neurotransmitters & Glycogen; Methionine Metabolism in Plants: Current Understanding of the Factors Regulating its Metabolism; Methionine: Electronic Structure; Photoluminescence of Methionine under Laser Excitation; Methionine Molecule Electron-Impact-Induced Fragmentation: Mechanisms & Chemical Structure; Protective Roles of Transsulfuration against Methionine Toxicity; Methionine, Homocysteine & Cysteine, & Antiepileptic Drugs in Epilepsy; Index.