生物
自噬
线粒体
细胞凋亡
衰老
线粒体融合
细胞生物学
背景(考古学)
重编程
线粒体分裂
生物能学
程序性细胞死亡
细胞
遗传学
线粒体DNA
古生物学
基因
作者
Marianna Abate,Agostino Festa,Michela Falco,Angela Lombardi,Amalia Luce,Anna Grimaldi,Silvia Zappavigna,Pasquale Sperlongano,Carlo Irace,Michele Caraglia,Gabriella Misso
标识
DOI:10.1016/j.semcdb.2019.05.022
摘要
Mitochondria are the key energy-producing organelles and cellular source of reactive species. They are responsible for managing cell life and death by a balanced homeostasis passing through a network of structures, regulated principally via fission and fusion. Herein we discuss about the most advanced findings considering mitochondria as dynamic biophysical systems playing compelling roles in the regulation of energy metabolism in both physiologic and pathologic processes controlling cell death and survival. Precisely, we focus on the mitochondrial commitment to the onset, maintenance and counteraction of apoptosis, autophagy and senescence in the bioenergetic reprogramming of cancer cells. In this context, looking for a pharmacological manipulation of cell death processes as a successful route for future targeted therapies, there is major biotechnological challenge in underlining the location, function and molecular mechanism of mitochondrial proteins. Based on the critical role of mitochondrial functions for cellular health, a better knowledge of the main molecular players in mitochondria disfunction could be decisive for the therapeutical control of degenerative diseases, including cancer.
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