Louvain Institute of Biomolecular Science and Technology (LIBST), UCLouvain, Croix du Sud 4-5, L7.07.14, 1348, Louvain-la-Neuve, Belgium.
UMR 5200 Membrane Biogenesis Laboratory, CNRS-University of Bordeaux, INRA Bordeaux Aquitaine, 33140, Villenave d'Ornon, France.
Plant J. 2018 Oct;96(2):274-286. doi: 10.1111/tpj.14028. Epub 2018 Aug 16.
Translocator proteins (TSPO) are conserved membrane proteins extensively studied in mammals, but their function is still unclear. Angiosperm TSPO are transiently induced by abiotic stresses in vegetative tissues. We showed previously that constitutive expression of the Arabidopsis TSPO (AtTSPO) could be detrimental to the cell. Degradation of AtTSPO requires an active autophagy pathway. We show here that genetic modifications of TSPO expression in plant and yeast cells reduce the levels of cytoplasmic lipid droplets (LD). Transgenic Arabidopsis seedlings overexpressing AtTSPO contain less LD as compared with wild type (WT). LD levels were increased in Arabidopsis AtTSPO knockout (KO) seedlings. Deletion of the Schizosaccharomyces pombe TSPO resulted in an increase in LD level in the cell. As compared with the WT, the mutant strain was more sensitive to cerulenin, an inhibitor of fatty acids and sterol biosynthesis. We found that in contrast with seedlings, overexpression of AtTSPO (OE) resulted in an up to 50% increase in seeds fatty acids as compared with WT. A time course experiment revealed that after 4 days of seed imbibition, the levels of triacylglycerol (TAG) was still higher in the OE seeds as compared with WT or KO seeds. However, the de novo synthesis of phospholipids and TAG after 24 h of imbibition was substantially reduced in OE seeds as compared with WT or KO seeds. Our findings support a plant TSPO role in energy homeostasis in a tissue-specific manner, enhancing fatty acids and LD accumulation in mature seeds and limiting LD levels in seedlings.
移位蛋白(TSPO)是在哺乳动物中广泛研究的保守膜蛋白,但它们的功能仍不清楚。被子植物 TSPO 在营养组织中受到非生物胁迫的短暂诱导。我们之前曾表明,拟南芥 TSPO(AtTSPO)的组成型表达可能对细胞有害。AtTSPO 的降解需要一个活跃的自噬途径。我们在这里表明,植物和酵母细胞中 TSPO 表达的遗传修饰可以降低细胞质脂滴(LD)的水平。与野生型(WT)相比,过表达 AtTSPO 的转基因拟南芥幼苗含有较少的 LD。拟南芥 AtTSPO 敲除(KO)幼苗中的 LD 水平增加。裂殖酵母 TSPO 的缺失导致细胞中 LD 水平增加。与 WT 相比,突变株对 cerulenin(脂肪酸和固醇生物合成的抑制剂)更敏感。我们发现,与幼苗相比,AtTSPO(OE)的过表达导致种子脂肪酸的含量比 WT 增加了 50%。一个时间过程实验表明,在种子吸胀 4 天后,OE 种子中的三酰基甘油(TAG)水平仍比 WT 或 KO 种子高。然而,在吸胀 24 小时后,OE 种子中磷脂和 TAG 的从头合成与 WT 或 KO 种子相比显著减少。我们的发现支持了植物 TSPO 在组织特异性方式中在能量平衡中的作用,增强了成熟种子中脂肪酸和 LD 的积累,并限制了幼苗中 LD 的水平。