Kakizaki Yusuke, Seymour Roger S, Ito Kikukatsu
Cryobiofrontier Research Center, Faculty of Agriculture, Iwate University 3-18-8 Ueda, Morioka, Iwate 020-8550, Japan.
Biochim Biophys Acta. 2010 Jan;1797(1):20-8. doi: 10.1016/j.bbabio.2009.07.006. Epub 2009 Jul 28.
Alternative oxidase (AOX) is a quinol-oxygen oxidoreductase, which is known to possess a dicarboxylate diiron reaction center held in structurally postulated alpha-helical bundle. However, little is known about the structural or functional features of its N-terminal region in any organism, with the exception of a regulatory cysteine residue (CysI) in angiosperm plants. Here, we show that transcripts of two AOX1 isozymes (AcoAOX1a and AcoAOX1b) are coexpressed in thermogenic appendices of Arum concinnatum, while their enzymatic activities seem to be distinct. Namely, AcoAOX1a, an abundantly expressed transcript in vivo, shows an apparent cyanide-insensitive and n-propyl gallate-sensitive respiration during ectopic expression of the protein in HeLa cells, whereas AcoAOX1b exhibits a lower transcript expression, and appears to be totally inactive as AOX at the protein level. Our functional analyses further reveal that an E83K substitution in AcoAOX1b, which is located far upstream of CysI in the N-terminal region, is the cause of this loss of function. These results suggest the presence of a naturally occurring inactive AOX homologue in thermogenic plants. Accordingly, our results further imply that the N-terminal region of the AOX protein functionally contributes to the dynamic activities of respiratory control within the mitochondria.
交替氧化酶(AOX)是一种喹啉-氧氧化还原酶,已知其具有一个二羧酸双铁反应中心,该反应中心存在于结构上推测的α-螺旋束中。然而,除被子植物中的一个调节性半胱氨酸残基(CysI)外,对于任何生物体中其N端区域的结构或功能特征知之甚少。在此,我们表明两种AOX1同工酶(AcoAOX1a和AcoAOX1b)的转录本在紫苞天南星的产热附属器中共表达,但其酶活性似乎有所不同。具体而言,AcoAOX1a是体内大量表达的转录本,在HeLa细胞中异位表达该蛋白时表现出明显的对氰化物不敏感且对没食子酸正丙酯敏感的呼吸作用,而AcoAOX1b的转录本表达较低,并且在蛋白质水平上作为AOX似乎完全无活性。我们的功能分析进一步揭示,AcoAOX1b中位于N端区域CysI上游很远位置的E83K取代是这种功能丧失的原因。这些结果表明在产热植物中存在天然存在的无活性AOX同源物。因此,我们的结果进一步暗示AOX蛋白的N端区域在功能上有助于线粒体呼吸控制的动态活动。