Salvaing Juliette, Botella César, Albrieux Catherine, Gros Valérie, Block Maryse A, Jouhet Juliette
Univ. Grenoble Alpes, INRAE, CNRS, CEA, IRIG, LPCV, Grenoble, France.
Front Plant Sci. 2020 Jul 15;11:1070. doi: 10.3389/fpls.2020.01070. eCollection 2020.
Biogenesis of photosynthetic membranes depends on galactolipid synthesis, which relies on several cell compartments, notably the endoplasmic reticulum (ER) and the chloroplast envelope. Galactolipid synthesis involves lipid trafficking between both membrane compartments. In , ALA10, a phospholipid flippase of the P type-ATPase family, counteracts the limitation of monogalactosyldiacylglycerol (MGDG) production and has a positive effect on leaf development. ALA10 locates in distinct domains of the ER depending on the ALIS (ALA interacting subunit) subunit it interacts with: close to the plasma membrane with ALIS1, or next to chloroplasts with ALIS5. It interacts with FAD2 (Fatty acid desaturase 2) and prevents accumulation of linolenic (18:3) containing phosphatidylcholine (PC) stimulating an increase of MGDG synthesis. Here we report that ALA10 interacts with PUB11 (plant U-box type 11), an E3 protein ubiquitin ligase, and . ALA10 is however ubiquitinated and degraded by the 26S proteasome in a PUB11-independent process. In null mutant, the proteasome-dependent degradation of ALA10 is retained and ALA10 is still subject to ubiquitination although its ubiquitination profile appears different. In the absence of PUB11, ALA10 is constrained to the ER close to chloroplasts, which is the usual location when ALA10 is overexpressed. Additionally, in this condition, the decrease of 18:3 containing PC is no longer observed. Taken together these results suggest, that ALA10 contributes in chloroplast-distal ER interacting domains, to reduce the 18:3 desaturation of PC and that PUB11 is involved in reconditioning of ALA10 from chloroplast-proximal to chloroplast-distal ER interacting domains.
光合膜的生物合成依赖于半乳糖脂的合成,而半乳糖脂的合成依赖于几个细胞区室,特别是内质网(ER)和叶绿体包膜。半乳糖脂的合成涉及两个膜区室之间的脂质运输。在本研究中,ALA10是P型ATP酶家族的一种磷脂翻转酶,它可抵消单半乳糖基二酰甘油(MGDG)产生的限制,并对叶片发育产生积极影响。ALA10根据与其相互作用的ALIS(ALA相互作用亚基)亚基定位于内质网的不同区域:与ALIS1靠近质膜,或与ALIS5靠近叶绿体。它与FAD2(脂肪酸去饱和酶2)相互作用,并防止含亚麻酸(18:3)的磷脂酰胆碱(PC)积累,从而刺激MGDG合成增加。在这里我们报告ALA10与PUB11(植物U-box类型11)相互作用,PUB11是一种E3蛋白泛素连接酶,并且……然而,ALA10在一个不依赖PUB11的过程中被26S蛋白酶体泛素化并降解。在PUB11缺失突变体中,ALA10依赖蛋白酶体的降解得以保留,并且ALA10仍然会被泛素化,尽管其泛素化模式有所不同。在没有PUB11的情况下,ALA10被限制在内质网中靠近叶绿体的位置,这是ALA10过表达时的常见位置。此外,在这种情况下,不再观察到含18:3的PC减少。综合这些结果表明,ALA10在叶绿体远端的内质网相互作用区域发挥作用,以减少PC的18:3去饱和,并且PUB11参与将ALA10从叶绿体近端的内质网相互作用区域重新定位到叶绿体远端的内质网相互作用区域。