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Horning cell self-digestion: Autophagy wins the?2016 Nobel Prize in Physiology or Medicine

机译:角质细胞自我消化:自噬获得2016年诺贝尔生理学或医学奖

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Autophagy is an evolutionarily conserved process by which eukaryotic cells eliminate intracellular components via the lysosomal degradation process. This cell self-digestion process was first discovered and morphologically characterized in the late 1950s and early 1960s. The genetic screen studies in baker's yeast in the 1990s further identified the essential genes functioning in the autophagic process. In the past two decades, the detailed molecular process involved in the completion of autophagy was delineated. Additionally, autophagy has been implied to function in many aspects of biological processes, including maintenance of organelle integrity, protein quality control, regulation of the stress response, and immunity. In addition to maintain cell homeostasis, autophagy has recently been shown to be modulated and to participate in the pathogenesis of human diseases, such as pathogen infections, neurodegenerative diseases, and tumor development. Overall, the breakthrough in autophagy research relies on the discovery of autophagy-related genes (ATGs) using a genetic screening approach in Saccharomyces cerevisiae , which was established by Yoshinori Ohsumi. This year the Nobel Committee has awarded Yoshinori Ohsumi the Nobel Prize in Physiology or Medicine for his remarkable contribution to autophagy research.
机译:自噬是进化上保守的过程,通过该过程真核细胞通过溶酶体降解过程消除细胞内成分。这种细胞自我消化的过程最早是在1950年代末和1960年代初发现的,并对其形态进行了表征。 1990年代对面包酵母的基因筛选研究进一步确定了在自噬过程中起作用的必需基因。在过去的二十年中,描述了完成自噬过程的详细分子过程。另外,自噬已暗示在生物学过程的许多方面起作用,包括维持细胞器完整性,蛋白质质量控​​制,应激反应调节和免疫力。除了维持细胞稳态之外,最近还显示自噬被调节并参与人类疾病的发病机理,例如病原体感染,神经退行性疾病和肿瘤的发展。总体而言,自噬研究的突破依赖于使用酿酒酵母Yoshinori Ohsumi建立的酿酒酵母基因筛选方法发现自噬相关基因(ATG)。今年,诺贝尔奖委员会授予大野良典(Yoshinori Ohsumi)诺贝尔生理学或医学奖,以表彰他对自噬研究的杰出贡献。

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