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高尔基定位锰转运蛋白 PML3 通过调节高尔基糖基化和细胞壁生物合成来调节拟南芥的生长。

Golgi-localised manganese transporter PML3 regulates Arabidopsis growth through modulating Golgi glycosylation and cell wall biosynthesis.

机构信息

Shanghai Center for Plant Stress Biology and National Key Laboratory of Plant Molecular Genetics, Center for Excellence in Molecular Plant Sciences, Chinese Academy of Sciences, Shanghai, 200032, China.

University of the Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

New Phytol. 2021 Sep;231(6):2200-2214. doi: 10.1111/nph.17209. Epub 2021 Feb 11.

Abstract

Golgi is a critical compartment for both the reutilisation of the essential micronutrient manganese (Mn) and its detoxification. However, whether Mn plays a role in the Golgi remains to be demonstrated in plants. We characterised the function of PML3, a member of the Unknown Protein Family UPF0016, in Mn transport and the regulation of plant growth, Golgi glycosylation and cell wall biosynthesis in Arabidopsis. We also investigated the relationship of PML3 with NRAMP2, a trans-Golgi network localised Mn transporter. PML3-GFP is preferentially localised in the cis-Golgi. PML3 can transport Mn to rescue the hypersensitivity of yeast mutant Δpmr1 to excess Mn. Two mutant alleles of PML3 displayed reduced plant growth and impaired seed development under Mn-deficient conditions. The pml3 mutants also showed impaired Golgi glycosylation and cell wall biosynthesis under Mn deficiency. Double mutations of PML3 and NRAMP2 showed improved plant growth compared with that of single mutants under Mn deficiency, implying that PML3 and NRAMP2 play opposite roles in the regulation of Golgi Mn levels. Our results suggest that PML3 mediates Mn uptake into the Golgi compartments, which is required for proper protein glycosylation and cell wall biosynthesis under Mn-deficient conditions.

摘要

高尔基氏体是再利用必需微量元素锰(Mn)及其解毒的关键部位。然而,Mn 是否在植物的高尔基氏体中发挥作用仍有待证明。我们研究了 PML3(未知蛋白家族 UPF0016 的一员)在 Mn 转运和植物生长、高尔基氏体糖基化和细胞壁生物合成中的调控作用,以及 PML3 与 NRAMP2(一种位于反高尔基网络的 Mn 转运蛋白)之间的关系。PML3-GFP 优先定位于顺式高尔基氏体。PML3 可以转运 Mn 以挽救酵母突变体 Δpmr1 对过量 Mn 的超敏反应。PML3 的两个突变等位基因在 Mn 缺乏条件下表现出植物生长减缓和种子发育受损。pml3 突变体在 Mn 缺乏下也表现出高尔基氏体糖基化和细胞壁生物合成受损。PML3 和 NRAMP2 的双突变体在 Mn 缺乏下的植物生长比单突变体有所改善,这表明 PML3 和 NRAMP2 在调节高尔基氏体 Mn 水平方面发挥相反的作用。我们的研究结果表明,PML3 介导 Mn 进入高尔基氏体腔室,这对于 Mn 缺乏条件下正确的蛋白质糖基化和细胞壁生物合成是必需的。

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