The United Graduate School of Agricultural Sciences, Iwate University, 3-18-8 Ueda, Morioka, Iwate 020-8550, Japan.
Appl Biochem Biotechnol. 2013 Jul;170(5):1229-40. doi: 10.1007/s12010-013-0235-x. Epub 2013 May 8.
Alternative oxidase (AOX) is a nonproton motive quinol-oxygen oxidoreductase which is a component of the mitochondrial respiratory chain in higher plants. In this study, we have characterized the catalytic activity and regulatory behaviors of Arum concinnatum AOX isoforms, namely AcoAOX1a and AcoAOX1b, and their artificial mutants in HeLa cells. We demonstrated that substitution of the motif-like sequence ENV on the C-terminal half of AcoAOX1a for QDT diminishes its activity and proposed that the innate inactivity of AcoAOX1b in HeLa cells is, at least in part, attributable to its QDT motif. Furthermore, we show that introduction of F130L in the hydrophilic N-terminal extension of AcoAOX1a resulted in greater activity in the presence of pyruvate. This result indicates that functional significance of the N-terminal extension is not particular to the conventional regulatory cysteine. On the basis of these findings, we discuss new insights into the structural integrity of AOX in HeLa cells and the applicability of mammalian cells for functional analysis of this enzyme.
交替氧化酶(AOX)是非质子动力的醌-氧氧化还原酶,是高等植物线粒体呼吸链的组成部分。在这项研究中,我们对阿瑞姆·科宁卡特 AOX 同工型(即 AcoAOX1a 和 AcoAOX1b)及其人工突变体在 HeLa 细胞中的催化活性和调节行为进行了表征。我们证明了 AcoAOX1a C 端半段 ENV 模体序列取代为 QDT 会降低其活性,并提出 AcoAOX1b 在 HeLa 细胞中的固有失活至少部分归因于其 QDT 模体。此外,我们还表明,在 AcoAOX1a 的亲水 N 端延伸中引入 F130L 会导致在存在丙酮酸的情况下具有更高的活性。这一结果表明,N 端延伸的功能意义并非特定于传统的调节半胱氨酸。基于这些发现,我们讨论了关于 AOX 在 HeLa 细胞中的结构完整性的新见解,以及哺乳动物细胞在该酶功能分析中的适用性。