Department of Plant Molecular Biology, University of Lausanne, Lausanne 1015, Switzerland.
Department of Plant Physiology and Biochemistry, Faculty of Biology, Saint Petersburg State University, Saint Petersburg 199034, Russia.
Plant Physiol. 2023 May 31;192(2):1000-1015. doi: 10.1093/plphys/kiad123.
Cell wall synthesis and protein glycosylation require the import of nucleotide diphosphate-sugar conjugates into the Golgi that must be counterbalanced by phosphate (Pi) export. Numerous Golgi nucleotide-sugar transporters have been characterized, but transporters mediating Golgi Pi export remain poorly understood. We used plant and yeast genetics to characterize the role of 2 Arabidopsis (Arabidopsis thaliana) proteins possessing an EXS domain, namely ERD1A and ERD1B, in Golgi Pi homeostasis. ERD1A and ERD1B localized in cis-Golgi and were broadly expressed in vegetative and reproductive tissues. We identified ERD1 putative orthologs in algae, bryophytes, and vascular plants. Expressing ERD1A and ERD1B in yeast complemented the erd1 mutant phenotype of cellular Pi loss via exocytosis associated with reduced Golgi Pi export. The Arabidopsis erd1a mutant had a similar phenotype of apoplastic Pi loss dependent on exocytosis. ERD1A overexpression in Nicotiana benthamiana and Arabidopsis led to partial mislocalization of ERD1A to the plasma membrane and specific Pi export to the apoplastic space. Arabidopsis erd1a had defects in cell wall biosynthesis, which were associated with reduced shoot development, hypocotyl growth, cell wall extensibility, root elongation, pollen germination, pollen tube elongation, and fertility. We identified ERD1 proteins as Golgi Pi exporters that are essential for optimal plant growth and fertility.
细胞壁合成和蛋白质糖基化需要将核苷酸二磷酸糖缀合物导入高尔基体,这必须通过磷酸盐 (Pi) 输出来平衡。已经鉴定了许多高尔基体核苷酸 - 糖转运体,但介导高尔基体 Pi 输出的转运体仍知之甚少。我们使用植物和酵母遗传学来表征具有 EXS 结构域的 2 种拟南芥 (Arabidopsis thaliana) 蛋白 ERD1A 和 ERD1B 在高尔基体 Pi 动态平衡中的作用。ERD1A 和 ERD1B 定位于顺式高尔基体,在营养和生殖组织中广泛表达。我们在藻类、苔藓植物和维管植物中鉴定了 ERD1 的假定直系同源物。在酵母中表达 ERD1A 和 ERD1B 可补充 erd1 突变体通过与高尔基体 Pi 输出减少相关的胞吐作用导致的细胞 Pi 损失的表型。拟南芥 erd1a 突变体具有依赖胞吐作用的质外体 Pi 损失的类似表型。在烟草 (Nicotiana benthamiana) 和拟南芥中过表达 ERD1A 导致 ERD1A 部分错误定位到质膜,并将特定的 Pi 输出到质外空间。拟南芥 erd1a 在细胞壁生物合成中存在缺陷,这与茎发育、下胚轴生长、细胞壁延展性、根伸长、花粉萌发、花粉管伸长和育性降低有关。我们将 ERD1 蛋白鉴定为高尔基体 Pi 外排蛋白,对植物生长和育性至关重要。