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PMID: 25077561 已发表 · ppublish 英语

LETM1-dependent mitochondrial Ca2+ flux modulates cellular bioenergetics and proliferation.

Doonan Patrick J, Chandramoorthy Harish C, Hoffman Nicholas E, Zhang Xueqian, Cárdenas César, Shanmughapriya Santhanam, Rajan Sudarsan, Vallem Sandhya, Chen Xiongwen, Foskett J Kevin, Cheung Joseph Y, Houser Steven R, Madesh Muniswamy

摘要

Dysregulation of mitochondrial Ca(2+)-dependent bioenergetics has been implicated in various pathophysiological settings, including neurodegeneration and myocardial infarction. Although mitochondrial Ca(2+) transport has been characterized, and several molecules, including LETM1, have been identified, the functional role of LETM1-mediated Ca(2+) transport remains unresolved. This study examines LETM1-mediated mitochondrial Ca(2+) transport and bioenergetics in multiple cell types, including fibroblasts derived from patients with Wolf-Hirschhorn syndrome (WHS). The results show that both mitochondrial Ca(2+) influx and efflux rates are impaired in LETM1 knockdown, and similar phenotypes were observed in ΔEF hand, (D676A D688K)LETM1 mutant-overexpressed cells, and in cells derived from patients with WHS. Although LETM1 levels were lower in WHS-derived fibroblasts, the mitochondrial Ca(2+) uniporter components MCU, MCUR1, and MICU1 remain unaltered. In addition, the MCU mitoplast patch-clamp current (IMCU) was largely unaffected in LETM1-knockdown cells. Silencing of LETM1 also impaired basal mitochondrial oxygen consumption, possibly via complex IV inactivation and ATP production. Remarkably, LETM1 knockdown also resulted in increased reactive oxygen species production. Further, LETM1 silencing promoted AMPK activation, autophagy, and cell cycle arrest. Reconstitution of LETM1 or antioxidant overexpression rescued mitochondrial Ca(2+) transport and bioenergetics. These findings reveal the role of LETM1-dependent mitochondrial Ca(2+) flux in shaping cellular bioenergetics.

关键词
Wolf-Hirschhorn syndrome cell cycle metabolism reactive oxygen species
文献信息
期刊
FASEB journal : official publication of the Federation of American Societies for Experimental Biology
期刊简称
FASEB J
发表日期
2015-01-27
收录日期
2014-10-31
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
8804484
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