Mitochondrial Dynamics and Neurodegeneration || || Front_matter 🔍
Eliana Y. L. Chan, Jarungjit Rujiviphat (auth.), Bingwei Lu (eds.)
Springer Netherlands : Imprint: Springer, 10.1007/978-94-007-1291-1, 2011
英语 [en] · PDF · 1.5MB · 2011 · 📘 非小说类图书 · 🚀/lgli/scihub/zlib · Save
描述
Mitochondria are essential organelles in eukaryotic cells that control such diverse processes as energy metabolism, calcium buffering, and cell death. Recent studies have revealed that changes in mitochondrial morphology by fission and fusion, a process known as mitochondrial dynamics, is particularly important for neuronal function and survival. Defects in this process are commonly found in neurodegenerative diseases, offering a new paradigm for investigating mechanisms of neurodegeneration. To provide researchers working on neurodegenerative diseases and mitochondria with updated information on this rapidly progressing field, we have invited experts in the field to critically review recent progresses and identify future research directions. The topics include genetics of mitochondrial dynamics, mitochondrial dynamics and bioenergetics, autophagy, apoptosis, and axonal transport, and its role in neurological diseases, including Alzheimer's, Parkinson's, and Huntington's diseases.
备用文件名
scihub/10.1007/978-94-007-1291-1_fm.pdf
备用文件名
zlib/no-category/Lu, Bingwei/Mitochondrial Dynamics and Neurodegeneration || || Front_matter_53815189.pdf
备选作者
Bingwei Lü; SpringerLink (Online service)
备用出版商
Springer Science + Business Media BV
备用出版商
Springer London, Limited
备用版本
Springer Nature, Dordrecht, 2011
备用版本
1st ed. 2011, Dordrecht, 2011
备用版本
Dordrecht ; New York, ©2011
备用版本
Netherlands, Netherlands
元数据中的注释
sm21420379
元数据中的注释
sm23196345
备用描述
Mitochondria are essential organelles in eukaryotic cells that control such diverse processes as energy metabolism, calcium buffering, and cell death. Recent studies have revealed that changes in mitochondrial morphology by fission and fusion, a process known as mitochondrial dynamics, is particularly important for the function and survival of neurons. Defects in this process are commonly found in neurodegenerative diseases, offering a new paradigm for investigating mechanisms of neurodegeneration. This is the first book that integrates in one volume such diverse subjects as the genetic control of mitochondrial dynamics, the relationship between mitochondrial dynamics and bioenergetics, the roles of mitochondrial dynamics in apoptosis, axonal transport, mitochondrial quality control, and the contribution of defective mitochondrial dynamics to the pathogenesis of neurodegenerative diseases. Focusing on mitochondrial dynamics and its role in neurodegeneration, this book brings together 32 leading scientists and clinicians from around the world to deliver a comprehensive treatise on all aspects of mitochondrial dynamics, from basic research on its molecular basis to its medical implications. The authors have contributed state of the art chapters on their respective areas of expertise, providing readers interested in mitochondrial biology and mechanisms of neurodegenerative diseases with the most up to date information. This fully illustrated volume - Presents a comprehensive historical account of discoveries leading to the identification of key molecular players involved in mitochondrial dynamics, emphasizing the role played by model organism genetics. - Describes the fundamental mechanisms by which mitochondrial dynamics and cellular energy status can reciprocally regulate each other. - Discusses the regulation and inter-dependence of mitochondrial dynamics and mitochondrial autophagy (mitophagy) in mitochondrial quality control. - Highlights the importance of mitochondrial dynamics in the timely execution of apoptosis. - Details the molecular processes that lead to the transport and distribution of mitochondria to neuronal axons and synapses, arguably one of the most important aspects of neuronal physiology - Presents recent findings on the clinical diversity of diseases caused by mutations in the mitochondrial dynamics machinery, the spectrum of mutations in the mitochondrial fusion genes and the corresponding pathophysiology, and the therapeutic perspectives. - Summarizes a rapidly growing body of literature focusing on the role of mitochondrial dynamics in the pathogenesis of Parkinson's disease and discusses unresolved controversies in the field in the context of a dynamic network of compensatory responses to mitochondrial stress, dysfunction and injury. - Highlights the role of aberrant mitochondrial dynamics in the pathogenesis of Alzheimer's disease, and offers a molecular mechanism connecting disease-causing insults and post-translational modification of the mitochondrial fission machinery. - Discusses the published literature linking mitochondrial dysfunction in Huntington's disease, focusing on the role that defects in mitochondrial dynamics might play in disease pathogenesis. Professor Lu has summarized the problems associated with the nascent but rapidly growing research field of mitochondrial dynamics in neurodegeneration and has been successful in editing a must-read book for students, clinicians, and researchers interested in mitochondria biology, neurobiology, and mechanisms of neurodegenerative diseases
开源日期
2013-11-24
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