例如:"lncRNA", "apoptosis", "WRKY"

Overexpression of Drosophila frataxin triggers cell death in an iron-dependent manner.

J. Neurogenet.2017 Dec;31(4):189-202. doi:10.1080/01677063.2017.1363200. Epub 2017 Aug 24
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摘要


Friedreich ataxia is the most important autosomal recessive ataxia in the Caucasian population. patients display severe neurological and cardiac symptoms that reflect a strong cellular and axonal degeneration. Fduanyu1650 is caused by a loss of function of the mitochondrial protein frataxin which impairs the biosynthesis of iron-sulfur clusters and in turn the catalytic activity of several enzymes in the Krebs cycle and the respiratory chain leading to a diminished energy production. Although Fduanyu1650 is due to frataxin depletion, overexpression might also be very helpful to better understand cellular functions of frataxin. In this work, we have increased frataxin expression in neurons to elucidate specific roles that frataxin might play in these tissues. Using molecular, biochemical, histological and behavioral methods, we report that frataxin overexpression is sufficient to increase oxidative phosphorylation, modify mitochondrial morphology, alter iron homeostasis and trigger oxidative stress-dependent cell death. Interestingly, genetic manipulation of mitochondrial iron metabolism by silencing mitoferrin successfully improves cell survival under oxidative-attack conditions, although enhancing antioxidant defenses or mitochondrial fusion failed to ameliorate frataxin overexpression phenotypes. This result suggests that cell degeneration is directly related to enhanced incorporation of iron into the mitochondria. Drosophila frataxin overexpression might also provide an alternative approach to identify processes that are important in Fduanyu1650 such as changes in mitochondrial morphology and oxidative stress induced cell death.

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