Botella César, Sautron Emeline, Boudiere Laurence, Michaud Morgane, Dubots Emmanuelle, Yamaryo-Botté Yoshiki, Albrieux Catherine, Marechal Eric, Block Maryse A, Jouhet Juliette
Laboratoire de Physiologie Cellulaire et Végétale, Unité Mixte Recherche 5168, Centre National Recherche Scientifique, Université Grenoble-Alpes, Institut National de la Recherche Agronomique, Commissariat à l'Energie Atomique et Energies Alternatives, Institut de Recherches en Technologies et Sciences pour le Vivant, F-38054 Grenoble, France.
Laboratoire de Physiologie Cellulaire et Végétale, Unité Mixte Recherche 5168, Centre National Recherche Scientifique, Université Grenoble-Alpes, Institut National de la Recherche Agronomique, Commissariat à l'Energie Atomique et Energies Alternatives, Institut de Recherches en Technologies et Sciences pour le Vivant, F-38054 Grenoble, France
Plant Physiol. 2016 Mar;170(3):1300-14. doi: 10.1104/pp.15.01557. Epub 2015 Nov 30.
The biogenesis of photosynthetic membranes relies on galactoglycerolipids, which are synthesized via pathways that are dispatched over several cell compartments. This membrane biogenesis requires both trafficking of lipid intermediates and a tight homeostatic regulation. In this work, we address the role of ALA10 (for aminophospholipid ATPase), a P4-type ATPase, in a process counteracting the monogalactosyldiacylglycerol (MGDG) shortage in Arabidopsis (Arabidopsis thaliana) leaves. ALA10 can interact with protein partners, ALIS1 (for ALA-interacting subunit1) or ALIS5, leading to differential endomembrane localizations of the interacting proteins, close to the plasma membrane with ALIS1 or to chloroplasts with ALIS5. ALA10 interacts also with FATTY ACID DESATURASE2 (FAD2), and modification of ALA10 expression affects phosphatidylcholine (PC) fatty acyl desaturation by disturbing the balance between FAD2 and FAD3 activities. Modulation of ALA10 expression downstream impacts the fatty acyl composition of chloroplast PC. ALA10 expression also enhances leaf growth and improves the MGDG-PC ratio, possibly through MGDG SYNTHASE1 (MGD1) activation by phosphatidic acid. The positive effect of ALA10 on leaf development is significant in conditions such as upon treatment of plants with Galvestine-1, an inhibitor of MGDG synthases, or when plants are grown at chilling temperature.
光合膜的生物合成依赖于半乳糖甘油酯,其通过分布在多个细胞区室的途径合成。这种膜生物合成既需要脂质中间体的运输,也需要严格的稳态调节。在这项研究中,我们探讨了P4型ATP酶ALA10(氨基磷脂ATP酶)在拟南芥叶片中抵消单半乳糖基二酰基甘油(MGDG)短缺过程中的作用。ALA10可以与蛋白质伴侣ALA相互作用亚基1(ALIS1)或ALIS5相互作用,导致相互作用蛋白在不同的内膜定位,与ALIS1靠近质膜,与ALIS5靠近叶绿体。ALA10还与脂肪酸去饱和酶2(FAD2)相互作用,ALA10表达的改变通过扰乱FAD2和FAD3活性之间的平衡影响磷脂酰胆碱(PC)的脂肪酸去饱和。下游调节ALA10表达会影响叶绿体PC的脂肪酸组成。ALA10表达还可促进叶片生长并提高MGDG-PC比率,这可能是通过磷脂酸激活MGDG合成酶1(MGD1)实现的。在诸如用MGDG合成酶抑制剂Galvestine-1处理植物或植物在低温下生长等条件下,ALA10对叶片发育的积极作用非常显著。