Division of Biochemistry, Department of Biology, Friedrich-Alexander University Erlangen-Nuremberg, Staudtstr 5, D-91058, Erlangen, Germany.
Plant J. 2017 Nov;92(4):696-709. doi: 10.1111/tpj.13702. Epub 2017 Oct 6.
In plants, intercellular communication and exchange are highly dependent on cell wall bridging structures between adhering cells, so-called plasmodesmata (PD). In our previous genetic screen for PD-deficient Arabidopsis mutants, we described choline transporter-like 1 (CHER1) being important for PD genesis and maturation. Leaves of cher1 mutant plants have up to 10 times less PD, which do not develop to complex structures. Here we utilize the T-DNA insertion mutant cher1-4 and report a deep comparative proteomic workflow for the identification of cell-wall-embedded PD-associated proteins. Analyzing triplicates of cell-wall-enriched fractions in depth by fractionation and quantitative high-resolution mass spectrometry, we compared > 5000 proteins obtained from fully developed leaves. Comparative data analysis and subsequent filtering generated a list of 61 proteins being significantly more abundant in Col-0. This list was enriched for previously described PD-associated proteins. To validate PD association of so far uncharacterized proteins, subcellular localization analyses were carried out by confocal laser-scanning microscopy. This study confirmed the association of PD for three out of four selected candidates, indicating that the comparative approach indeed allowed identification of so far undescribed PD-associated proteins. Performing comparative cell wall proteomics of Nicotiana benthamiana tissue, we observed an increase in abundance of these three selected candidates during sink to source transition. Taken together, our comparative proteomic approach revealed a valuable data set of potential PD-associated proteins, which can be used as a resource to unravel the molecular composition of complex PD and to investigate their function in cell-to-cell communication.
在植物中,细胞间的通讯和交换高度依赖于粘附细胞之间的细胞壁桥接结构,即所谓的胞间连丝(PD)。在我们之前的 PD 缺陷型拟南芥突变体的遗传筛选中,我们描述了胆碱转运蛋白样 1(CHER1)对 PD 的发生和成熟很重要。cher1 突变体植物的叶片中 PD 的含量减少了多达 10 倍,而且不能发育成复杂的结构。在这里,我们利用 T-DNA 插入突变体 cher1-4,并报告了一个用于鉴定细胞壁嵌入 PD 相关蛋白的深度比较蛋白质组学工作流程。通过分级和定量高分辨率质谱法对细胞壁富集部分的三个重复进行深度分析,我们比较了来自完全发育的叶片中获得的 >5000 种蛋白质。比较数据分析和随后的过滤生成了一个在 Col-0 中明显更丰富的 61 种蛋白质列表。该列表富含先前描述的 PD 相关蛋白。为了验证迄今为止尚未表征的蛋白质与 PD 的关联,通过共焦激光扫描显微镜进行了亚细胞定位分析。这项研究证实了其中四个选定候选者中的三个与 PD 的关联,表明比较方法确实可以鉴定迄今为止尚未描述的 PD 相关蛋白。对烟草原生质体组织进行比较细胞壁蛋白质组学分析时,我们观察到在从汇到源的转变过程中这些三个选定候选者的丰度增加。总之,我们的比较蛋白质组学方法揭示了一组有价值的潜在 PD 相关蛋白数据集,可作为揭示复杂 PD 的分子组成并研究其在细胞间通讯中功能的资源。