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The new edition of this successful monograph has been both updated and broadened. Since the previous (second) edition was published in 2000, the structures of the bacterial and eukaryotic ribosomes have been published, advancing our basic understanding of translation and mechanisms involving protein and RNA regulators. In addition, as the title indicates, this edition has a new focus on the role of translational control in human development and disease. This book, with 30 chapters written by experts in the field, is essential reading for anyone interested in the process of translation, its regulation, and how its failure can be the cause of disease.
This monograph captures the current excitement in invertebrate neurobiology, from the manipulation of activity in specified neurons to the investigation of behavior. The monograph emphasizes the evolutionary aspects of neurobiology and work on non-model species.
Comprised of review articles reprinted from the tenth anniversary issue of the journal "Genome Research" that capture the status of genetic research in a collection of model species, this volume serves as a valuable reference and teaching tool for established scientists in the genomics field and as a comprehensive overview for those with more general interests in biology.
This is the first book to provide a detailed and thoroughly up-to-date review of the complexity of DNA replication in eukaryotic cells. It is organized into three parts: Concepts, a distillation of underlying principles; Enzymes, a description of each protein class involved; and Systems, a review of events over a wide range of organisms. The book is therefore invaluable for teachers who want a current survey of a topic central to the biology syllabus: investigators of replication who will appreciate a remarkably concise, central source of knowledge in their specialty; and scientists studying other biological functions on which DNA replication has an impact.
Hundreds of genomes have been completely sequenced in the past decade, significantly advancing our understanding of genome structure and function. Genomes comprises a collection of review articles reprinted from the 10th Anniversary issue of the journal Genome Research that capture the status of genomic research in a selection of model species--from microbes to human. Written by leaders in the field, each chapter focuses on a kingdom, group, or species and offers a unique perspective on the history, the current status, and future of genomics research. Topics addressed include gene regulatory networks in the fruit fly and the sea squirt, fungal genome evolution, mouse and rat mutagenesis, the future of crop plant genomics, how livestock genomics informs human medicine, the importance of the dog genome in studying human disease, and the search for "humanness" through human and chimp genome comparison. In addition, updates on emerging technologies in DNA sequencing and in gene prediction, as well as direction to relevant public resources, are given. This book serves as a valuable reference and teaching tool for established scientists in the genomics field and as a comprehensive overview for those with more general interests in biology.
An up-to-date survey of the current exciting state of telomere biology. Telomeres--specialized structures found at the ends of chromosomes--are essential for maintaining the integrity of chromosomes and their faithful duplication during cell division. Chapters in this volume cover telomere structure and function in a range of organisms, focusing on how they are maintained, their roles in cell division and gene expression, and how deficiencies in these structures contribute to cancers and other diseases and even aging.
An up?to?date survey of the current exciting state of telomere biology. Telomeres?specialized structures found at the ends of chromosomes? are essential for maintaining the integrity of chromosomes and their faithful duplication during cell division. Chapters in this volume cover telomere structure and function in a range of organisms, focusing on how they are maintained, their roles in cell division and gene expression, and how deficiencies in these structures contribute to cancers and other diseases and even aging.
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