Humboldt-Universität zu Berlin, Institute of Biology/Plant Physiology, Philippstraße 13 (Building 12), Berlin 10115, Germany.
Plant Physiol. 2023 May 31;192(2):871-885. doi: 10.1093/plphys/kiad107.
All land plants encode 2 isoforms of protoporphyrinogen oxidase (PPO). While PPO1 is predominantly expressed in green tissues and its loss is seedling-lethal in Arabidopsis (Arabidopsis thaliana), the effects of PPO2 deficiency have not been investigated in detail. We identified 2 ppo2 T-DNA insertion mutants from publicly available collections, one of which (ppo2-2) is a knock-out mutant. While the loss of PPO2 did not result in any obvious phenotype, substantial changes in PPO activity were measured in etiolated and root tissues. However, ppo1 ppo2 double mutants were embryo-lethal. To shed light on possible functional differences between the 2 isoforms, PPO2 was overexpressed in the ppo1 background. Although the ppo1 phenotype was partially complemented, even strong overexpression of PPO2 was unable to fully compensate for the loss of PPO1. Analysis of subcellular localization revealed that PPO2 is found exclusively in chloroplast envelopes, while PPO1 accumulates in thylakoid membranes. Mitochondrial localization of PPO2 in Arabidopsis was ruled out. Since Arabidopsis PPO2 does not encode a cleavable transit peptide, integration of the protein into the chloroplast envelope must make use of a noncanonical import route. However, when a chloroplast transit peptide was fused to the N-terminus of PPO2, the enzyme was detected predominantly in thylakoid membranes and was able to fully complement ppo1. Thus, the 2 PPO isoforms in Arabidopsis are functionally equivalent but spatially separated. Their distinctive localizations within plastids thus enable the synthesis of discrete subpools of the PPO product protoporphyrin IX, which may serve different cellular needs.
所有陆生植物都编码 2 种原卟啉原氧化酶(PPO)同工型。虽然 PPO1 主要在绿色组织中表达,其缺失会导致拟南芥(Arabidopsis thaliana)幼苗致死,但 PPO2 缺失的影响尚未详细研究。我们从公开可用的文库中鉴定了 2 个 ppo2 T-DNA 插入突变体,其中一个(ppo2-2)是敲除突变体。虽然 PPO2 的缺失没有导致任何明显的表型,但在黄化和根组织中测量到 PPO 活性的显著变化。然而,ppo1 ppo2 双突变体是胚胎致死的。为了阐明这 2 种同工型之间可能存在的功能差异,我们在 ppo1 背景下过表达了 PPO2。尽管 ppo1 表型部分得到了补偿,但即使过表达 PPO2 也无法完全补偿 PPO1 的缺失。亚细胞定位分析表明,PPO2 仅存在于叶绿体被膜中,而 PPO1 则积累在线粒体膜中。排除了 PPO2 在拟南芥中定位于线粒体的可能性。由于拟南芥 PPO2 不编码可切割的转运肽,该蛋白整合到叶绿体被膜中必须利用非典型的导入途径。然而,当将叶绿体转运肽融合到 PPO2 的 N 端时,该酶主要在类囊体膜中被检测到,并能够完全补偿 ppo1。因此,拟南芥中的 2 种 PPO 同工型在功能上是等效的,但在空间上是分离的。它们在质体中的独特定位使得能够合成 PPO 产物原卟啉 IX 的离散亚池,这可能满足不同的细胞需求。