在拟南芥线粒体中检测到吡咯啉-5-羧酸代谢蛋白复合物。

Pyrroline-5-carboxylate metabolism protein complex detected in Arabidopsis thaliana leaf mitochondria.

机构信息

Sorbonne Université, UPEC, CNRS, IRD, INRAE Institute of Ecology and Environmental Sciences of Paris (iEES), 75005 Paris, France.

Institute of Plant Genetics, Leibniz Universität Hannover, Germany.

出版信息

J Exp Bot. 2024 Feb 2;75(3):917-934. doi: 10.1093/jxb/erad406.

Abstract

Proline dehydrogenase (ProDH) and pyrroline-5-carboxylate (P5C) dehydrogenase (P5CDH) catalyse the oxidation of proline into glutamate via the intermediates P5C and glutamate-semialdehyde (GSA), which spontaneously interconvert. P5C and GSA are also intermediates in the production of glutamate from ornithine and α-ketoglutarate catalysed by ornithine δ-aminotransferase (OAT). ProDH and P5CDH form a fused bifunctional PutA enzyme in Gram-negative bacteria and are associated in a bifunctional substrate-channelling complex in Thermus thermophilus; however, the physical proximity of ProDH and P5CDH in eukaryotes has not been described. Here, we report evidence of physical proximity and interactions between Arabidopsis ProDH, P5CDH, and OAT in the mitochondria of plants during dark-induced leaf senescence when all three enzymes are expressed. Pairwise interactions and localization of the three enzymes were investigated using bimolecular fluorescence complementation with confocal microscopy in tobacco and sub-mitochondrial fractionation in Arabidopsis. Evidence for a complex composed of ProDH, P5CDH, and OAT was revealed by co-migration of the proteins in native conditions upon gel electrophoresis. Co-immunoprecipitation coupled with mass spectrometry analysis confirmed the presence of the P5C metabolism complex in Arabidopsis. Pull-down assays further demonstrated a direct interaction between ProDH1 and P5CDH. P5C metabolism complexes might channel P5C among the constituent enzymes and directly provide electrons to the respiratory electron chain via ProDH.

摘要

脯氨酸脱氢酶 (ProDH) 和吡咯啉-5-羧酸 (P5C) 脱氢酶 (P5CDH) 通过中间体 P5C 和谷氨酸半醛 (GSA) 催化脯氨酸氧化为谷氨酸,这两种中间体可以自发转化。P5C 和 GSA 也是鸟氨酸和 α-酮戊二酸在鸟氨酸 δ-氨基转移酶 (OAT) 催化下生成谷氨酸的中间产物。ProDH 和 P5CDH 在革兰氏阴性菌中形成融合的双功能 PutA 酶,并在 Thermus thermophilus 中形成双功能底物通道复合物相关;然而,真核生物中 ProDH 和 P5CDH 的物理接近尚未被描述。在这里,我们报道了在黑暗诱导的叶片衰老过程中,拟南芥 ProDH、P5CDH 和 OAT 在植物线粒体中物理接近和相互作用的证据,此时这三种酶都表达。使用双分子荧光互补与共聚焦显微镜在烟草中进行了两两相互作用和定位研究,并在拟南芥亚线粒体分级分离中进行了研究。在凝胶电泳的天然条件下,通过蛋白质共迁移证明了由 ProDH、P5CDH 和 OAT 组成的复合物的存在。免疫共沉淀结合质谱分析证实了 P5C 代谢复合物在拟南芥中的存在。下拉测定进一步证明了 ProDH1 和 P5CDH 之间的直接相互作用。P5C 代谢复合物可能在组成酶之间传递 P5C,并通过 ProDH 直接将电子提供给呼吸电子链。

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