Lee Yingying, Stiers Kyle M, Kain Bailee N, Beamer Lesa J
Biochemistry Department, University of Missouri, Columbia, Missouri 65211.
Biochemistry Department, University of Missouri, Columbia, Missouri 65211.
J Biol Chem. 2014 Nov 14;289(46):32010-32019. doi: 10.1074/jbc.M114.597914. Epub 2014 Oct 6.
Recent studies have identified phosphoglucomutase 1 (PGM1) deficiency as an inherited metabolic disorder in humans. Affected patients show multiple disease phenotypes, including dilated cardiomyopathy, exercise intolerance, and hepatopathy, reflecting the central role of the enzyme in glucose metabolism. We present here the first in vitro biochemical characterization of 13 missense mutations involved in PGM1 deficiency. The biochemical phenotypes of the PGM1 mutants cluster into two groups: those with compromised catalysis and those with possible folding defects. Relative to the recombinant wild-type enzyme, certain missense mutants show greatly decreased expression of soluble protein and/or increased aggregation. In contrast, other missense variants are well behaved in solution, but show dramatic reductions in enzyme activity, with kcat/Km often <1.5% of wild-type. Modest changes in protein conformation and flexibility are also apparent in some of the catalytically impaired variants. In the case of the G291R mutant, severely compromised activity is linked to the inability of a key active site serine to be phosphorylated, a prerequisite for catalysis. Our results complement previous in vivo studies, which suggest that both protein misfolding and catalytic impairment may play a role in PGM1 deficiency.
最近的研究已确定磷酸葡萄糖变位酶1(PGM1)缺乏是人类的一种遗传性代谢紊乱。受影响的患者表现出多种疾病表型,包括扩张型心肌病、运动不耐受和肝病,这反映了该酶在葡萄糖代谢中的核心作用。我们在此展示了13种与PGM1缺乏相关的错义突变的首次体外生化特征。PGM1突变体的生化表型分为两组:催化功能受损的和可能存在折叠缺陷的。相对于重组野生型酶,某些错义突变体显示可溶性蛋白表达大幅降低和/或聚集增加。相比之下,其他错义变体在溶液中表现良好,但酶活性显著降低,kcat/Km通常<野生型的1.5%。在一些催化受损的变体中,蛋白质构象和灵活性也有适度变化。就G291R突变体而言,严重受损的活性与关键活性位点丝氨酸无法磷酸化有关,而磷酸化是催化的先决条件。我们的结果补充了先前的体内研究,表明蛋白质错误折叠和催化受损可能在PGM1缺乏中都起作用。