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Physiological functions of Atg6/Beclin 1: a unique autophagy-related protein
作者姓名:Cao Y  Klionsky DJ
作者单位:Departments of Molecular, Cellular and Developmental Biology and of Biological Chemistry, Life Sciences Institute, University of Michigan, Ann Arbor, Michigan 48109-2216, USA
基金项目:This work was supported by the USA National Institutes of Health Public Health Service Grant GM53396.
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Physiological functions of Atg6/Beclin 1: a unique autophagy-related protein
Cao Y,Klionsky DJ.Physiological functions of Atg6/Beclin 1: a unique autophagy-related protein[J].Cell Research,2007,17(10):839-849.
Authors:Cao Yang  Klionsky Daniel J
Institution:Department of Molecular, Cellular and Developmental Biology, Life Sciences Institute, University of Michigan, Ann Arbor, Michigan 48109-2216, USA.
Abstract:The most striking morphological feature of eukaryotic cells is the presence of various membrane-enclosed compartments. These compartments, including organelles and transient transport intermediates, are not static. Rather, dynamic exchange of proteins and membrane is needed to maintain cellular homeostasis. One of the most dramatic examples of membrane mobilization is seen during the process ofmacroautophagy. Macroautophagy is the primary cellular pathway for degradation of long-lived proteins and organelles. In response to environmental cues, such as starvation or other types of stress, the cell produces a unique membrane structure, the phagophore. The phagophore sequesters cytoplasm as it forms a double-membrane cytosolic vesicle, an autophagosome. Upon completion, the autophagosome fuses with a lysosome or a vacuole in yeast, which delivers hydrolases that break down the inner autophagosome membrane along with its cargo, and the resulting macromolecules are released back into the cytosol for reuse. Autophagy is therefore a recycling process, allowing cells to survive periods of nutrient limitation; however, it has a wider physiological role, participating in development and aging, and also in protection against pathogen invasion, cancer and certain neurodegenerative diseases. In many cases, the role ofautophagy is identified through studies of an autophagy-related protein, Atg6/Beclin 1. This protein is part of a lipid kinase complex, and recent studies suggest that it plays a central role in coordinating the cytoprotective function ofautophagy and in opposing the cellular death process of apoptosis. Here, we summarize our current knowledge ofAtg6/Beclin 1 in different model organisms and its unique function in the cell.
Keywords:lysosome  phosphoinositides  protein targeting  stress  vacuole  yeast
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