Davidi Lital, Levin Yishai, Ben-Dor Shifra, Pick Uri
Department of Biological Chemistry (L.D., U.P.), Nancy and Stephen Grand Israel National Center for Personalized Medicine (Y.L.), and Biological Services Unit (S.B.-D.), Weizmann Institute of Science, Rehovot 76100, Israel.
Department of Biological Chemistry (L.D., U.P.), Nancy and Stephen Grand Israel National Center for Personalized Medicine (Y.L.), and Biological Services Unit (S.B.-D.), Weizmann Institute of Science, Rehovot 76100, Israel
Plant Physiol. 2015 Jan;167(1):60-79. doi: 10.1104/pp.114.248450. Epub 2014 Nov 17.
The halotolerant green alga Dunaliella bardawil is unique in that it accumulates under stress two types of lipid droplets: cytoplasmatic lipid droplets (CLD) and β-carotene-rich (βC) plastoglobuli. Recently, we isolated and analyzed the lipid and pigment compositions of these lipid droplets. Here, we describe their proteome analysis. A contamination filter and an enrichment filter were utilized to define core proteins. A proteome database of Dunaliella salina/D. bardawil was constructed to aid the identification of lipid droplet proteins. A total of 124 and 42 core proteins were identified in βC-plastoglobuli and CLD, respectively, with only eight common proteins. Dunaliella spp. CLD resemble cytoplasmic droplets from Chlamydomonas reinhardtii and contain major lipid droplet-associated protein and enzymes involved in lipid and sterol metabolism. The βC-plastoglobuli proteome resembles the C. reinhardtii eyespot and Arabidopsis (Arabidopsis thaliana) plastoglobule proteomes and contains carotene-globule-associated protein, plastid-lipid-associated protein-fibrillins, SOUL heme-binding proteins, phytyl ester synthases, β-carotene biosynthesis enzymes, and proteins involved in membrane remodeling/lipid droplet biogenesis: VESICLE-INDUCING PLASTID PROTEIN1, synaptotagmin, and the eyespot assembly proteins EYE3 and SOUL3. Based on these and previous results, we propose models for the biogenesis of βC-plastoglobuli and the biosynthesis of β-carotene within βC-plastoglobuli and hypothesize that βC-plastoglobuli evolved from eyespot lipid droplets.
耐盐绿藻巴达维亚杜氏藻的独特之处在于,在胁迫条件下它会积累两种类型的脂滴:细胞质脂滴(CLD)和富含β-胡萝卜素(βC)的质体小球。最近,我们分离并分析了这些脂滴的脂质和色素组成。在此,我们描述它们的蛋白质组分析。利用污染过滤和富集过滤来确定核心蛋白。构建了盐生杜氏藻/巴达维亚杜氏藻的蛋白质组数据库,以帮助鉴定脂滴蛋白。在βC-质体小球和CLD中分别鉴定出124个和42个核心蛋白,只有8个共同蛋白。杜氏藻属的CLD类似于莱茵衣藻的细胞质液滴,含有主要的脂滴相关蛋白以及参与脂质和固醇代谢的酶。βC-质体小球的蛋白质组类似于莱茵衣藻的眼点和拟南芥的质体小球蛋白质组,包含与类胡萝卜素小球相关的蛋白、质体脂质相关蛋白-原纤维蛋白、SOUL血红素结合蛋白、植基酯合酶、β-胡萝卜素生物合成酶,以及参与膜重塑/脂滴生物发生的蛋白:囊泡诱导质体蛋白1、突触结合蛋白,以及眼点组装蛋白EYE3和SOUL3。基于这些结果和之前的结果,我们提出了βC-质体小球生物发生以及βC-质体小球内β-胡萝卜素生物合成的模型,并推测βC-质体小球是从眼点脂滴进化而来的。