Department of Plant Biology, College of Biological Sciences, University of California, Davis, CA 95616, USA.
Plant Cell. 2012 Sep;24(9):3630-48. doi: 10.1105/tpc.112.101063. Epub 2012 Sep 7.
In plants, a population of non-cell-autonomous proteins (NCAPs), including numerous transcription factors, move cell to cell through plasmodesmata (PD). In many cases, the intercellular trafficking of these NCAPs is regulated by their interaction with specific PD components. To gain further insight into the functions of this NCAP pathway, coimmunoprecipitation experiments were performed on a tobacco (Nicotiana tabacum) plasmodesmal-enriched cell wall protein preparation using as bait the NCAP, pumpkin (Cucurbita maxima) PHLOEM PROTEIN16 (Cm-PP16). A Cm-PP16 interaction partner, Nt-PLASMODESMAL GERMIN-LIKE PROTEIN1 (Nt-PDGLP1) was identified and shown to be a PD-located component. Arabidopsis thaliana putative orthologs, PDGLP1 and PDGLP2, were identified; expression studies indicated that, postgermination, these proteins were preferentially expressed in the root system. The PDGLP1 signal peptide was shown to function in localization to the PD by a novel mechanism involving the endoplasmic reticulum-Golgi secretory pathway. Overexpression of various tagged versions altered root meristem function, leading to reduced primary root but enhanced lateral root growth. This effect on root growth was corrected with an inability of these chimeric proteins to form stable PD-localized complexes. PDGLP1 and PDGLP2 appear to be involved in regulating primary root growth by controlling phloem-mediated allocation of resources between the primary and lateral root meristems.
在植物中,一群非细胞自主蛋白(NCAPs),包括许多转录因子,通过胞间连丝(PD)在细胞间移动。在许多情况下,这些 NCAPs 的细胞间运输受其与特定 PD 成分的相互作用调节。为了更深入地了解这个 NCAP 途径的功能,使用 NCAP 南瓜(Cucurbita maxima)PHLOEM PROTEIN16(Cm-PP16)作为诱饵,对烟草(Nicotiana tabacum)质膜丰富细胞壁蛋白制剂进行了共免疫沉淀实验。鉴定到 Cm-PP16 的相互作用伙伴 Nt-PLASMODESMAL GERMIN-LIKE PROTEIN1(Nt-PDGLP1),并证明它是一个位于 PD 的组成部分。鉴定出拟南芥的 PDGLP1 和 PDGLP2 假定同源物;表达研究表明,萌发后,这些蛋白质在根系中优先表达。PDGLP1 信号肽通过一种新的机制发挥其在 PD 中的定位功能,该机制涉及内质网-高尔基体分泌途径。各种标记版本的过表达改变了根分生组织的功能,导致主根减少但侧根生长增强。这种对根生长的影响可以通过这些嵌合蛋白不能形成稳定的 PD 定位复合物来纠正。PDGLP1 和 PDGLP2 似乎通过控制韧皮部介导的资源在主根和侧根分生组织之间的分配来参与调节主根生长。