Jacq Adelaide, Burlat Vincent, Jamet Elisabeth
Laboratoire de Recherche en Sciences Vegetales, Universite de Toulouse, CNRS, UPS, 24 chemin de Borde Rouge, Auzeville, BP42617, 31326 Castanet Tolosan, France.
Curr Protein Pept Sci. 2018;19(2):190-199. doi: 10.2174/1389203718666170918152859.
Plant cell walls are composite structures surrounding cells and involved in both mechanical support and perception of their environment. They are mainly composed of polysaccharides (90-95% of their mass) and proteins (5-10%). The cell wall proteins (CWPs) contribute to the arrangements and modifications of polymer networks and to cell-to-cell communication. The structure and composition of cell walls are not uniform in the whole plants, but rather specialized in different cell types to fulfil different functions. As examples, two kinds of cells are covered with extracellular structures composed of lipids: epidermal cells of aerial organs synthesize a cuticle on their outside surface whereas endodermal root cells form a suberin surrounding strip. In both cases, these particular hydrophobic layers contribute to the protection of the cells against attacks by pathogens or abiotic stresses and regulate physiological processes. If the intracellular biosynthesis of the molecules forming these layers starts to be welldescribed, the mechanisms of their assembly beyond the plasma membrane remain largely unknown. In this review, this issue is addressed on the basis on cell wall proteomics data which has allowed the identification of many CWPs possibly related to lipid metabolism during the last years, in particular in Arabidopsis thaliana and tomato. These data are combined with transcriptomics and genetics studies. The main known roles of extracellular proteins related to lipid metabolism are discussed.
植物细胞壁是围绕细胞的复合结构,参与机械支撑和对环境的感知。它们主要由多糖(占其质量的90 - 95%)和蛋白质(占5 - 10%)组成。细胞壁蛋白(CWPs)有助于聚合物网络的排列和修饰以及细胞间通讯。细胞壁的结构和组成在整个植物中并不均匀,而是在不同细胞类型中专门化以履行不同功能。例如,两种细胞被由脂质组成的细胞外结构覆盖:地上器官的表皮细胞在其外表面合成角质层,而根内皮层细胞形成围绕的木栓质条带。在这两种情况下,这些特殊的疏水层有助于保护细胞免受病原体攻击或非生物胁迫,并调节生理过程。虽然形成这些层的分子的细胞内生物合成开始得到很好的描述,但它们在质膜外的组装机制仍然很大程度上未知。在本综述中,基于细胞壁蛋白质组学数据探讨了这个问题,这些数据在过去几年中使得能够鉴定出许多可能与脂质代谢相关的CWPs,特别是在拟南芥和番茄中。这些数据与转录组学和遗传学研究相结合。讨论了与脂质代谢相关的细胞外蛋白的主要已知作用。