Copenhagen Plant Science Center, Department of Plant & Environmental Sciences, University of Copenhagen, Frederiksberg C 1871, Denmark.
Max-Planck Institute for Molecular Plant Physiology, Potsdam 14476, Germany.
Proc Natl Acad Sci U S A. 2024 Apr 9;121(15):e2321759121. doi: 10.1073/pnas.2321759121. Epub 2024 Apr 5.
Adjacent plant cells are connected by specialized cell wall regions, called middle lamellae, which influence critical agricultural characteristics, including fruit ripening and organ abscission. Middle lamellae are enriched in pectin polysaccharides, specifically homogalacturonan (HG). Here, we identify a plant-specific DUF1068 protein, called NKS1/ELMO4, that is required for middle lamellae integrity and cell adhesion. NKS1 localizes to the Golgi apparatus and loss of NKS1 results in changes to Golgi structure and function. The mutants also display HG deficient phenotypes, including reduced seedling growth, changes to cell wall composition, and tissue integrity defects. These phenotypes are comparable to and mutants, which are defective in HG biosynthesis. Notably, genetic interactions indicate that NKS1 and the QUAs work in a common pathway. Protein interaction analyses and modeling corroborate that they work together in a stable protein complex with other pectin-related proteins. We propose that NKS1 is an integral part of a large pectin synthesis protein complex and that proper function of this complex is important to support Golgi structure and function.
相邻的植物细胞通过称为中层的特殊细胞壁区域连接,中层影响关键的农业特征,包括果实成熟和器官脱落。中层富含果胶多糖,特别是同质半乳糖醛酸聚糖 (HG)。在这里,我们鉴定了一种植物特异性的 DUF1068 蛋白,称为 NKS1/ELMO4,它是中层完整性和细胞黏附所必需的。NKS1 定位于高尔基体,NKS1 的缺失导致高尔基体结构和功能发生变化。该 突变体还表现出 HG 缺乏表型,包括幼苗生长受阻、细胞壁成分改变和组织完整性缺陷。这些表型与 和 突变体相似,它们在 HG 生物合成中存在缺陷。值得注意的是,遗传相互作用表明 NKS1 和 QUAs 共同作用于一个共同的途径。蛋白质相互作用分析和建模证实,它们与其他果胶相关蛋白一起形成一个稳定的蛋白质复合物。我们提出 NKS1 是一个大型果胶合成蛋白复合物的组成部分,该复合物的正常功能对于支持高尔基体的结构和功能是很重要的。