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Metabolic pathways and their metabolites are gaining recognition as both sensitive biomarkers for pathological conditions and key modulators of cell fate. In the past, metabolic changes were considered a consequence of gene expression, metabolite control, or environmental changes such as starvation. However, extensive research in the last decade has demonstrated that metabolic changes respond to and influence cellular signaling. This crosstalk between metabolism and cellular signaling is mainly enabled by novel metabolite-mediated modulation of enzymatic activity of rate-limiting steps and post-translational and epigenetic modifications, for which metabolites serve as substrates.
Examining the full cycle from farm to fork, this book reviews the current status of green processing in the agriculture and agri-food sector, and provides strategies for enhancing the use of environmentally-friendly technologies for production and processing.
This book provides readers with an overview of the frequent occurrence of asymmetric cell division. Employing a broad range of examples, it highlights how this mode of cell division constitutes the basis of multicellular organism development and how its misregulation can lead to cancer. To underline such developmental correlations, readers will for example gain insights into stem cell fate and tumor growth. In turn, subsequent chapters include descriptions of asymmetric cell division from unicellular organisms to humans in both physiological and pathological conditions. The book also illustrates the importance of this process for evolution and our need to understand the background mechanisms, offering a valuable guide not only for students in the field of developmental biology but also for experienced researchers from neighboring fields.
Includes annual author and subject indexes.