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This book describes the Notch signaling pathway with a focus on molecular mechanisms. The Notch signaling pathway is a seemingly simple pathway that does not involve any second messenger. Upon ligand binding two consecutive proteolytic cleavages of the NOTCH receptor release the Notch intracellular domain from the membrane. The Notch intracellular domain migrates into the nucleus and activates gene expression. Recently, new technologies allowed us to better understand this pivotal signaling cascade and revealed new regulatory mechanisms. The different chapters cover many aspects of the Notch signaling focusing on the mechanisms governing the receptor/ligand interaction as well as on the downstream intracellular signaling events. Aspects of both canonical and non-canonical signaling are discussed and the function of Notch signaling in physiological and pathological contexts are elucidated. This book is not only intended for experts but it should also be a useful resource for young, sprouting scientists or interested scientists from other research areas, who may use this book as a stimulating starting point for further discoveries and developments.
Cellular signal transduction. --- Cellular information transduction --- Information transduction, Cellular --- Signal transduction, Cellular --- Bioenergetics --- Cellular control mechanisms --- Information theory in biology --- Cell receptors. --- RNA-ligand interactions. --- Biochemistry. --- Receptors. --- Protein-Ligand Interactions. --- Protein Structure. --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Biology --- Chemistry --- Medical sciences --- Cell membrane receptors --- Cell surface receptors --- Receptors, Cell --- Binding sites (Biochemistry) --- Cell membranes --- Proteins --- Composition --- Proteins . --- Proteids --- Biomolecules --- Polypeptides --- Proteomics
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This book describes transcription factors in the context of hematopoietic development and reveal mechanistic insights how they orchestrate specific gene expression patterns. Several examples from lymphoid and myeloid lineages are given as well as particular examples of leukemia fusion proteins that contain a part of a transcription factor. In the given chapters covering each one particular example, the function of transcription factors is characterized in normal as well as leukemic contexts. New technologies such as ChIP-Seq or RNA-Seq, that make use of genome-wide sequencing, have shown that such master regulators of blood cell development often work in combinatorial fashion and, when dysregulated, results in leukemogenesis. This book is not only intended for experts but it should also be a useful resource for younger scientists or scientists from other disciplines, who may use this book as a stimulating starting point for further discoveries and/ or translational endeavors.
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