نتایج جستجو برای: mcu

تعداد نتایج: 769  

Journal: :Cell reports 2016
Dhanendra Tomar Zhiwei Dong Santhanam Shanmughapriya Diana A Koch Toby Thomas Nicholas E Hoffman Shrishiv A Timbalia Samuel J Goldman Sarah L Breves Daniel P Corbally Neeharika Nemani Joseph P Fairweather Allison R Cutri Xueqian Zhang Jianliang Song Fabián Jaña Jianhe Huang Carlos Barrero Joseph E Rabinowitz Timothy S Luongo Sarah M Schumacher Michael E Rockman Alexander Dietrich Salim Merali Jeffrey Caplan Peter Stathopulos Rexford S Ahima Joseph Y Cheung Steven R Houser Walter J Koch Vickas Patel Vishal M Gohil John W Elrod Sudarsan Rajan Muniswamy Madesh

Mitochondrial Ca(2+) Uniporter (MCU)-dependent mitochondrial Ca(2+) uptake is the primary mechanism for increasing matrix Ca(2+) in most cell types. However, a limited understanding of the MCU complex assembly impedes the comprehension of the precise mechanisms underlying MCU activity. Here, we report that mouse cardiomyocytes and endothelial cells lacking MCU regulator 1 (MCUR1) have severely ...

Journal: :Cell reports 2013
Nicholas E Hoffman Harish C Chandramoorthy Santhanam Shamugapriya Xueqian Zhang Sudarsan Rajan Karthik Mallilankaraman Rajesh Kumar Gandhirajan Ronald J Vagnozzi Lukas M Ferrer Krishnalatha Sreekrishnanilayam Kalimuthusamy Natarajaseenivasan Sandhya Vallem Thomas Force Eric T Choi Joseph Y Cheung Muniswamy Madesh

Resting mitochondrial matrix Ca(2+) is maintained through a mitochondrial calcium uptake 1 (MICU1)-established threshold inhibition of mitochondrial calcium uniporter (MCU) activity. It is not known how MICU1 interacts with MCU to establish this Ca(2+) threshold for mitochondrial Ca(2+) uptake and MCU activity. Here, we show that MICU1 localizes to the mitochondrial matrix side of the inner mit...

2017
Changhui Yu Yuhao Wang Jiawen Peng Qiang Shen Mimi Chen Wei Tang Xiumei Li Chunqing Cai Bin Wang Shaoxi Cai Xiaojing Meng Fei Zou

Background A shift from oxygen phosphorylation to aerobic glycolysis was known as the Warburg effect and a characteristic of cancer cell metabolism facilitating metastasis. Mitochondrial calcium uniporter (MCU), a key ion channel that mediates Ca2+ uptake into mitochondria, was found to promote cancer progression and metastasis. However, its explicit role in shifting metabolism of breast cancer...

2015
Yuejin Wu Tyler P. Rasmussen Olha M. Koval Mei-ling A. Joiner Duane D. Hall Biyi Chen Elizabeth D. Luczak Qiongling Wang Adam G. Rokita Xander H. T. Wehrens Longsheng Song Mark E. Anderson

Heart rate increases are a fundamental adaptation to physiological stress, while inappropriate heart rate increases are resistant to current therapies. However, the metabolic mechanisms driving heart rate acceleration in cardiac pacemaker cells remain incompletely understood. The mitochondrial calcium uniporter (MCU) facilitates calcium entry into the mitochondrial matrix to stimulate metabolis...

Journal: :Antioxidants & redox signaling 2014
Jin O-Uchi Bong Sook Jhun Shangcheng Xu Stephen Hurst Anna Raffaello Xiaoyun Liu Bing Yi Huiliang Zhang Polina Gross Jyotsna Mishra Alina Ainbinder Sarah Kettlewell Godfrey L Smith Robert T Dirksen Wang Wang Rosario Rizzuto Shey-Shing Sheu

AIMS Mitochondrial Ca2+ homeostasis is crucial for balancing cell survival and death. The recent discovery of the molecular identity of the mitochondrial Ca2+ uniporter pore (MCU) opens new possibilities for applying genetic approaches to study mitochondrial Ca2+ regulation in various cell types, including cardiac myocytes. Basal tyrosine phosphorylation of MCU was reported from mass spectrosco...

2015
Youngjin Lee Choon Kee Min Tae Gyun Kim Hong Ki Song Yunki Lim Dongwook Kim Kahee Shin Moonkyung Kang Jung Youn Kang Hyung-Seop Youn Jung-Gyu Lee Jun Yop An Kyoung Ryoung Park Jia Jia Lim Ji Hun Kim Ji Hye Kim Zee Yong Park Yeon-Soo Kim Jimin Wang Do Han Kim Soo Hyun Eom

The mitochondrial calcium uniporter (MCU) is responsible for mitochondrial calcium uptake and homeostasis. It is also a target for the regulation of cellular anti-/pro-apoptosis and necrosis by several oncogenes and tumour suppressors. Herein, we report the crystal structure of the MCU N-terminal domain (NTD) at a resolution of 1.50 Å in a novel fold and the S92A MCU mutant at 2.75 Å resolution...

2006
Nathaniel Gaskin Amlan Ghosh Spencer Kellis

Given energy as the limiting factor in a low-power battery-driven embedded microcontroller (MCU), energy-efficient operation is critical. Low-energy microcontrollers benefit from comparable performance and longer lifetimes when compared to microcontroller cores without energy saving schemes. Dynamic voltage and frequency scaling (DVFS) has been proposed in [1] as a novel technique to provide op...

2011
Vijay Mahadevan Chi Wah Wong Jose Costa Pereira Tom Liu Nuno Vasconcelos Lawrence K. Saul

We propose maximum covariance unfolding (MCU), a manifold learning algorithm for simultaneous dimensionality reduction of data from different input modalities. Given high dimensional inputs from two different but naturally aligned sources, MCU computes a common low dimensional embedding that maximizes the cross-modal (inter-source) correlations while preserving the local (intra-source) distance...

2017
Melanie Paillard György Csordás Gergö Szanda Tünde Golenár Valentina Debattisti Adam Bartok Nadan Wang Cynthia Moffat Erin L. Seifert András Spät György Hajnóczky

Mitochondrial Ca2+ uptake through the Ca2+ uniporter supports cell functions, including oxidative metabolism, while meeting tissue-specific calcium signaling patterns and energy needs. The molecular mechanisms underlying tissue-specific control of the uniporter are unknown. Here, we investigated a possible role for tissue-specific stoichiometry between the Ca2+-sensing regulators (MICUs) and po...

2017
Yuriana Oropeza-Almazán Eduardo Vázquez-Garza Héctor Chapoy-Villanueva Guillermo Torre-Amione Gerardo García-Rivas

Intracellular Ca2+ mishandling is an underlying mechanism in hypoxia/reoxygenation (H/R) injury that results in mitochondrial dysfunction and cardiomyocytes death. These events are mediated by mitochondrial Ca2+ (mCa2+) overload that is facilitated by the mitochondrial calcium uniporter (MCU) channel. Along this line, we evaluated the effect of siRNA-targeting MCU in cardiomyocytes subjected to...

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