Department of Biological Sciences, Pusan National University, Busan 46241, Korea.
Swammerdam Institute for Life Sciences, Section Plant Cell Biology, University of Amsterdam, 1098 XH Amsterdam, The Netherlands.
Plant Physiol. 2018 Feb;176(2):1559-1572. doi: 10.1104/pp.17.01297. Epub 2017 Nov 28.
Phosphatidylinositol 3-P (PI3P) is a signaling molecule that controls a variety of processes in endosomal, autophagic, and vacuolar/lysosomal trafficking in yeasts and mammals. Vacuolar protein sorting 34 (Vps34) is a conserved PI3K present in multiple complexes with specific functions and regulation. In yeast, the PI3K complex II consists of Vps34p, Vps15p, Vps30p/Atg6p, and Vps38p, and is essential for vacuolar protein sorting. Here, we describe the Arabidopsis () homolog of yeast Vps38p and human UV radiation resistance-associated gene protein. Arabidopsis VPS38 interacts with VPS30/ATG6 both in yeast and in planta. Although the level of PI3P in Arabidopsis mutants is similar to that in wild type, cells contain enlarged multivesicular endosomes and fewer organelles enriched in PI3P than the wild type. The mutants are defective in the trafficking of vacuolar cargo and its receptor VACUOLAR SORTING RECEPTOR2;1. The mutants also exhibit abnormal cytoplasmic distributions of endocytic cargo, such as auxin efflux carriers PINFORMED1 (PIN1) and PIN2. Constitutive autophagy is normal in the mutants but starvation-induced autophagy was slightly inhibited. We conclude that Arabidopsis VPS38 is dispensable for autophagy but essential for efficient targeting of biosynthetic and endocytic cargo to the vacuole.
磷脂酰肌醇 3-磷酸 (PI3P) 是一种信号分子,它控制着酵母和哺乳动物内体、自噬和液泡/溶酶体运输中的各种过程。液泡蛋白分选 34(Vps34)是一种在多种复合物中存在的保守 PI3K,具有特定的功能和调节作用。在酵母中,PI3K 复合物 II 由 Vps34p、Vps15p、Vps30p/Atg6p 和 Vps38p 组成,对于液泡蛋白分选是必不可少的。在这里,我们描述了拟南芥()与酵母 Vps38p 和人类紫外线辐射抗性相关基因蛋白的同源物。拟南芥 VPS38 与 VPS30/ATG6 在酵母和植物体内相互作用。尽管拟南芥突变体中的 PI3P 水平与野生型相似,但细胞中含有较大的多泡内体,并且含有 PI3P 的细胞器比野生型少。突变体在液泡货物及其受体 VACUOLAR SORTING RECEPTOR2;1 的运输中存在缺陷。突变体还表现出内吞货物如生长素外排载体 PINFORMED1 (PIN1) 和 PIN2 的细胞质分布异常。在突变体中组成型自噬是正常的,但饥饿诱导的自噬略有抑制。我们得出结论,拟南芥 VPS38 对于自噬是可有可无的,但对于将生物合成和内吞货物有效地靶向液泡是必不可少的。