Structural Insights into Mitochondrial Calcium Uniporter Regulation by Divalent Cations

被引:71
作者
Lee, Samuel K. [1 ]
Shanmughapriya, Santhanam [2 ]
Mok, Mac C. Y. [3 ]
Dong, Zhiwei [2 ]
Tomar, Dhanendra [2 ]
Carvalho, Edmund [2 ]
Rajan, Sudarsan [2 ]
Junop, Murray S. [4 ]
Madesh, Muniswamy [2 ]
Stathopulos, Peter B. [1 ]
机构
[1] Western Univ, Schulich Sch Med & Dent, Dept Physiol & Pharmacol, London, ON N6A 5C1, Canada
[2] Temple Univ, Lewis Katz Sch Med, Dept Mol Genet & Mol Biochem, Ctr Translat Med, Philadelphia, PA 19140 USA
[3] McMaster Univ, Dept Biochem & Biomed Sci, Hamilton, ON L8S 4K1, Canada
[4] Western Univ, Schulich Sch Med & Dent, Dept Biochem, London, ON N6A 5C1, Canada
基金
加拿大自然科学与工程研究理事会; 加拿大健康研究院;
关键词
CA2+ UPTAKE; ESSENTIAL COMPONENT; MG2+; MCU; MICU1; RETICULUM; CHANNELS; RELEASE; MRS2P; STATE;
D O I
10.1016/j.chembiol.2016.07.012
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Calcium (Ca2+) flux into the matrix is tightly controlled by themitochondrial Ca2+ uniporter (MCU) due to vital roles in cell death and bioenergetics. However, the precise atomic mechanisms of MCU regulation remain unclear. Here, we solved the crystal structure of the N-terminal matrix domain of human MCU, revealing a beta-grasp-like fold with a cluster of negatively charged residues that interacts with divalent cations. Binding of Ca2+ or Mg2+ destabilizes and shifts the self-association equilibrium of the domain toward monomer. Mutational disruption of the acidic face weakens oligomerization of the isolated matrix domain and full-length human protein similar to cation binding and markedly decreases MCU activity. Moreover, mitochondrial Mg2+ loading or blockade of mitochondrial Ca2+ extrusion suppresses MCU Ca(2+)uptake rates. Collectively, our data reveal that the b-grasp-like matrix region harbors an MCU-regulating acidic patch that inhibits human MCU activity in response to Mg2+ and Ca2+ binding.
引用
收藏
页码:1157 / 1169
页数:13
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