Department of Plant Sciences, University of Oxford, Oxford OX1 3RB, UK.
J Cell Sci. 2009 Dec 1;122(Pt 23):4383-92. doi: 10.1242/jcs.053488. Epub 2009 Nov 10.
Rab GTPases of the Arabidopsis Rab-E subclass are related to mammalian Rab8 and are implicated in membrane trafficking from the Golgi to the plasma membrane. Using a yeast two-hybrid assay, Arabidopsis phosphatidylinositol-4-phosphate 5-kinase 2 (PtdIns(4)P 5-kinase 2; also known as PIP5K2), was shown to interact with all five members of the Rab-E subclass but not with other Rab subclasses residing at the Golgi or trans-Golgi network. Interactions in yeast and in vitro were strongest with RAB-E1d[Q74L] and weakest with the RAB-E1d[S29N] suggesting that PIP5K2 interacts with the GTP-bound form. PIP5K2 exhibited kinase activity towards phosphatidylinositol phosphates with a free 5-hydroxyl group, consistent with PtdIns(4)P 5-kinase activity and this activity was stimulated by Rab binding. Rab-E proteins interacted with PIP5K2 via its membrane occupancy and recognition nexus (MORN) domain which is missing from animal and fungal PtdIns(4)P 5-kinases. In plant cells, GFP:PIP5K2 accumulated at the plasma membrane and caused YFP:RAB-E1d to relocate there from its usual position at the Golgi. GFP:PIP5K2 was rapidly turned over by proteasomal activity in planta, and overexpression of YFP:PIP5K2 caused pleiotropic growth abnormalities in transgenic Arabidopsis. We propose that plant cells exhibit a novel interaction in which PIP5K2 binds GTP-bound Rab-E proteins, which may stimulate temporally or spatially localized PtdIns(4,5)P(2) production at the plasma membrane.
拟南芥 Rab GTPases 的 Rab-E 亚类与哺乳动物 Rab8 相关,参与从高尔基体到质膜的膜运输。使用酵母双杂交测定法,表明拟南芥磷脂酰肌醇-4-磷酸 5-激酶 2(PtdIns(4)P 5-kinase 2;也称为 PIP5K2)与 Rab-E 亚类的所有五个成员相互作用,但不与驻留在高尔基体或跨高尔基网络中的其他 Rab 亚类相互作用。在酵母和体外的相互作用以 RAB-E1d[Q74L]最强,以 RAB-E1d[S29N]最弱,表明 PIP5K2 与 GTP 结合形式相互作用。PIP5K2 对具有游离 5-羟基的磷脂酰肌醇磷酸显示出激酶活性,与 PtdIns(4)P 5-激酶活性一致,并且该活性被 Rab 结合所刺激。Rab-E 蛋白通过其膜占据和识别枢纽(MORN)结构域与 PIP5K2 相互作用,该结构域在动物和真菌 PtdIns(4)P 5-激酶中缺失。在植物细胞中,GFP:PIP5K2 积累在质膜上,并导致 YFP:RAB-E1d 从其在高尔基体上的通常位置重新定位到那里。GFP:PIP5K2 在植物体内通过蛋白酶体活性迅速周转,并且 YFP:PIP5K2 的过表达导致转基因拟南芥的多效生长异常。我们提出,植物细胞表现出一种新的相互作用,其中 PIP5K2 结合 GTP 结合的 Rab-E 蛋白,这可能刺激质膜上 PtdIns(4,5)P(2)的时间或空间局部产生。