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首页> 外文期刊>Molecular biology of the cell >In vivo analysis of autophagy in response to nutrient starvation using transgenic mice expressing a fluorescent autophagosome marker
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In vivo analysis of autophagy in response to nutrient starvation using transgenic mice expressing a fluorescent autophagosome marker

机译:使用表达荧光自噬标记的转基因小鼠体内对营养缺乏的自噬的体内分析

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摘要

Macroautophagy mediates the bulk degradation of cytoplasmic components. It accounts for the degradation of most long-lived proteins: cytoplasmic constituents, including organelles, are sequestered into autophagosomes, which subsequently fuse with lysosomes, where degradation occurs. Although the possible involvement of autophagy in homeostasis, development, cell death, and pathogenesis has been repeatedly pointed out, systematic in vivo analysis has not been performed in mammals, mainly because of a limitation of monitoring methods. To understand where and when autophagy occurs in vivo, we have generated transgenic mice systemically expressing GFP fused to LC3, which is a mammalian homologue of yeast Atg8 (Aut7/Apg8) and serves as a marker protein for autophagosomes. Fluorescence microscopic analyses revealed that autophagy is differently induced by nutrient starvation in most tissues. In some tissues, autophagy even occurs actively without starvation treatments. Our results suggest that the regulation of autophagy is organ dependent and the role of autophagy is not restricted to the starvation response. This transgenic mouse model is a useful tool to study mammalian autophagy. [References: 53]
机译:巨自噬介导细胞质组分的大量降解。它解释了大多数长寿蛋白质的降解:细胞质成分(包括细胞器)被隔离成自噬体,然后与溶酶体融合,发生降解。尽管已经反复指出自噬可能参与体内稳态,发育,细胞死亡和发病机制,但由于监测方法的局限性,尚未在哺乳动物中进行系统的体内分析。为了了解体内自噬发生的时间和地点,我们已经生成了系统表达与LC3融合的GFP的转基因小鼠,LC3是酵母Atg8(Aut7 / Apg8)的哺乳动物同源物,并用作自噬小体的标记蛋白。荧光显微镜分析表明,自噬是由大多数组织中营养缺乏引起的。在某些组织中,自噬甚至在没有饥饿治疗的情况下也会主动发生。我们的研究结果表明自噬的调节是依赖器官的,自噬的作用并不局限于饥饿反应。这种转基因小鼠模型是研究哺乳动物自噬的有用工具。 [参考:53]

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