Institut für Biochemie der Pflanzen, Heinrich-Heine Universität Düsseldorf, 40225 Düsseldorf, Germany.
Plant J. 2013 Mar;73(5):836-49. doi: 10.1111/tpj.12082. Epub 2013 Feb 12.
Photorespiratory metabolism is essential in all oxygenic photosynthetic organisms. In plants, it is a highly compartmentalized pathway that involves chloroplasts, peroxisomes, mitochondria and the cytoplasm. The metabolic pathway itself is well characterized, and the enzymes required for its function have been identified. However, very little information is available on the transport proteins that catalyze the high metabolic flux between the involved compartments. Here we show that the A BOUT DE SOUFFLE (BOU) gene, which encodes a mitochondrial carrier, is involved in photorespiration in Arabidopsis. BOU was found to be co-expressed with photorespiratory genes in leaf tissues. The knockout mutant bou-2 showed the hallmarks of a photorespiratory growth phenotype, an elevated CO(2) compensation point, and excessive accumulation of glycine. Furthermore, degradation of the P-protein, a subunit of glycine decarboxylase, was demonstrated for bou-2, and is reflected in strongly reduced glycine decarboxylase activity. The photorespiration defect in bou-2 has dramatic consequences early in the seedling stage, which are highlighted by transcriptome studies. In bou-2 seedlings, as in shm1, another photorespiratory mutant, the shoot apical meristem organization is severely compromised. Cell divisions are arrested, leading to growth arrest at ambient CO(2) . Although the specific substrate for the BOU transporter protein remains elusive, we show that it is essential for the function of the photorespiratory metabolism. We hypothesize that BOU function is linked with glycine decarboxylase activity, and is required for normal apical meristems functioning in seedlings.
光合作用中的光呼吸代谢在所有产氧光合生物中都很重要。在植物中,它是一个高度分隔的途径,涉及叶绿体、过氧化物酶体、线粒体和细胞质。代谢途径本身已经得到很好的描述,并且已经确定了其功能所需的酶。然而,关于催化涉及隔室之间高代谢通量的转运蛋白的信息非常有限。在这里,我们表明编码线粒体载体的 A BOUT DE SOUFFLE (BOU) 基因参与拟南芥的光呼吸。发现 BOU 在叶片组织中与光呼吸基因共表达。突变体 bou-2 表现出光呼吸生长表型的特征,CO(2)补偿点升高,甘氨酸过度积累。此外,为 bou-2 证明了 P-蛋白(甘氨酸脱羧酶的一个亚基)的降解,并且反映在甘氨酸脱羧酶活性的强烈降低中。bou-2 中的光呼吸缺陷在幼苗早期具有戏剧性的后果,这在转录组研究中得到了强调。在 bou-2 幼苗中,与另一种光呼吸突变体 shm1 一样,茎尖分生组织的组织严重受损。细胞分裂被阻止,导致在环境 CO(2)下生长停滞。尽管 BOU 转运蛋白的具体底物仍然难以捉摸,但我们表明它对光呼吸代谢的功能至关重要。我们假设 BOU 功能与甘氨酸脱羧酶活性有关,并且是幼苗中正常顶端分生组织功能所必需的。