Succinyl-CoA Synthetase Is a Phosphate Target for the Activation of Mitochondrial Metabolism

被引:75
|
作者
Phillips, Darci [1 ]
Aponte, Angel M. [2 ]
French, Stephanie A. [1 ]
Chess, David J. [1 ]
Balaban, Robert S. [1 ]
机构
[1] NHLBI, Cardiac Energet Lab, NIH, Dept Hlth & Human Serv, Bethesda, MD 20892 USA
[2] NHLBI, Prote Core Facil, NIH, Dept Hlth & Human Serv, Bethesda, MD 20892 USA
基金
美国国家卫生研究院;
关键词
COENZYME-A SYNTHETASE; HUMAN SKELETAL-MUSCLE; OXIDATIVE-PHOSPHORYLATION; INORGANIC-PHOSPHATE; PERMEABILITY TRANSITION; PROTEIN-PHOSPHORYLATION; HEART-MITOCHONDRIA; P-31; NMR; LIVER-MITOCHONDRIA; TRANSPORT PROTEIN;
D O I
10.1021/bi900725c
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
Succinyl-CoA synthetase (SCS) is the only mitochondrial enzyme capable of ATP production via substrate level phosphorylation in the absence of oxygen, but it also plays a key role in the citric acid cycle, ketone metabolism, and heme synthesis. Inorganic phosphate (P-i) is a signaling molecule capable of activating oxidative phosphorylation at several sites, including NADH generation and as a substrate for ATP formation. In this study, it was shown that P-i binds the porcine heart SCS alpha-subunit (SCS alpha) in a noncovalent manner and enhances its enzymatic activity, thereby providing a new target for P-i activation in mitochondria. Coupling P-32 labeling of intact mitochondria with SDS gel electrophoresis revealed that P-32 labeling of SCS alpha was enhanced in substrate-depleted mitochondria. Using mitochondrial extracts and purified bacterial SCS (BSCS), we showed that this enhanced P-32 labeling resulted from a simple binding P-32, not covalent protein phosphorylation. The ability of SCS alpha to retain its P-32 throughout the SDS denaturing gel process was unique over the entire mitochondrial proteome. In vitro studies also revealed a P-i-induced activation of SCS activity by more than 2-fold when mitochondrial extracts and purified BSCS were incubated with millimolar concentrations of P-i. Since the level of P-32 binding to SCS alpha was increased in subs trate-depleted mitochondria, where the matrix P-i concentration is increased, we conclude that SCS activation by P-i binding represents another mitochondrial target for the P-i-induced activation of oxidative phosphorylation and anaerobic ATP production in energy-limited mitochondria.
引用
收藏
页码:7140 / 7149
页数:10
相关论文
共 50 条
  • [1] SUCCINYL PHOSPHATE A SUBSTRATE OF SUCCINYL-COA SYNTHETASE
    HILDEBRA.JG
    SPECTOR, LB
    FEDERATION PROCEEDINGS, 1969, 28 (02) : 414 - &
  • [2] MECHANISM OF SUCCINYL-CoA SYNTHETASE
    Fraser, M. E.
    Wolodko, W. T.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2002, 58 : C13 - C13
  • [3] MECHANISM OF ACTION OF SUCCINYL-COA SYNTHETASE
    WIDERDEX.EA
    MENDIARA, S
    BATLLE, AMD
    HOPPE-SEYLERS ZEITSCHRIFT FUR PHYSIOLOGISCHE CHEMIE, 1973, 354 (08): : 852 - 852
  • [4] Discovery of an inhibitor of succinyl-CoA synthetase
    Huang, J.
    Fraser, M.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2020, 76 : A171 - A171
  • [5] Tartryl-CoA inhibits succinyl-CoA synthetase
    Huang, Ji
    Fraser, Marie E.
    ACTA CRYSTALLOGRAPHICA SECTION F-STRUCTURAL BIOLOGY COMMUNICATIONS, 2020, 76 : 302 - 308
  • [6] ATTEMPTS TO DETECT SUCCINYL-COA SYNTHETASE IN CHLOROPLASTS
    KIRK, JTO
    PYLIOTIS, NA
    ZEITSCHRIFT FUR PFLANZENPHYSIOLOGIE, 1972, 66 (04): : 325 - &
  • [7] Identification of the kinetic mechanism of succinyl-CoA synthetase
    Li, Xin
    Wu, Fan
    Beard, Daniel A.
    BIOSCIENCE REPORTS, 2013, 33 : 145 - 163
  • [8] Modification of muscle succinyl-CoA synthetase by diethylpyrocarbonate
    Matveeva, LN
    Bekkali, M
    Poglazov, BF
    DOKLADY AKADEMII NAUK, 1997, 353 (06) : 828 - 830
  • [9] EVIDENCE FOR ALLOSTERIC REGULATION OF SUCCINYL-COA SYNTHETASE
    UM, HD
    KLEIN, C
    BIOCHEMICAL JOURNAL, 1993, 295 : 821 - 826
  • [10] Succinyl-CoA Ligase Deficiency: A Mitochondrial Hepatoencephalomyopathy
    Johan L K Van Hove
    Margarita S Saenz
    Janet A Thomas
    Renata C Gallagher
    Mark A Lovell
    Laura Z Fenton
    Sarah Shanske
    Sommer M Myers
    Ronald J A Wanders
    Jos Ruiter
    Marjolein Turkenburg
    Hans R Waterham
    Pediatric Research, 2010, 68 : 159 - 164