Guo Xiao, Niemi Natalie M, Hutchins Paul D, Condon Samson G F, Jochem Adam, Ulbrich Arne, Higbee Alan J, Russell Jason D, Senes Alessandro, Coon Joshua J, Pagliarini David J
Morgridge Institute for Research, Madison, WI 53715, USA; Department of Chemistry, University of Wisconsin-Madison, Madison, WI 53706, USA.
Morgridge Institute for Research, Madison, WI 53715, USA; Department of Biochemistry, University of Wisconsin-Madison, Madison, WI 53706, USA.
Cell Rep. 2017 Jan 10;18(2):307-313. doi: 10.1016/j.celrep.2016.12.049.
Proper maintenance of mitochondrial activity is essential for metabolic homeostasis. Widespread phosphorylation of mitochondrial proteins may be an important element of this process; yet, little is known about which enzymes control mitochondrial phosphorylation or which phosphosites have functional impact. We investigate these issues by disrupting Ptc7p, a conserved but largely uncharacterized mitochondrial matrix PP2C-type phosphatase. Loss of Ptc7p causes respiratory growth defects concomitant with elevated phosphorylation of select matrix proteins. Among these, Δptc7 yeast exhibit an increase in phosphorylation of Cit1p, the canonical citrate synthase of the tricarboxylic acid (TCA) cycle, that diminishes its activity. We find that phosphorylation of S462 can eliminate Cit1p enzymatic activity likely by disrupting its proper dimerization, and that Ptc7p-driven dephosphorylation rescues Cit1p activity. Collectively, our work connects Ptc7p to an essential TCA cycle function and to additional phosphorylation events that may affect mitochondrial activity inadvertently or in a regulatory manner.
维持线粒体活性对于代谢稳态至关重要。线粒体蛋白的广泛磷酸化可能是这一过程的重要组成部分;然而,对于哪些酶控制线粒体磷酸化或哪些磷酸化位点具有功能影响,我们却知之甚少。我们通过破坏Ptc7p来研究这些问题,Ptc7p是一种保守但在很大程度上未被表征的线粒体基质PP2C型磷酸酶。Ptc7p的缺失会导致呼吸生长缺陷,并伴随着特定基质蛋白磷酸化水平的升高。其中,Δptc7酵母中三羧酸(TCA)循环的典型柠檬酸合酶Cit1p的磷酸化增加,从而降低了其活性。我们发现,S462位点的磷酸化可能通过破坏Cit1p的正确二聚化而消除其酶活性,并且Ptc7p驱动的去磷酸化可恢复Cit1p的活性。总体而言,我们的工作将Ptc7p与TCA循环的一项基本功能以及可能无意中或以调节方式影响线粒体活性的其他磷酸化事件联系起来。