Toussaint Frédéric, Pierman Baptiste, Bertin Aurélie, Lévy Daniel, Boutry Marc
Institut des Sciences de la Vie, Université catholique de Louvain, B-1348 Louvain-la-Neuve, Belgium.
Laboratoire Physico Chimie Curie, Institut Curie, PSL Research University, CNRS UMR168, 75005 Paris, France.
Biochem J. 2017 May 4;474(10):1689-1703. doi: 10.1042/BCJ20170108.
Pleiotropic drug resistance (PDR) transporters belong to the ABCG subfamily of ATP-binding cassette (ABC) transporters and are involved in the transport of various molecules across plasma membranes. During evolution, genes appeared independently in fungi and in plants from a duplication of a half-size ABC gene. The enzymatic properties of purified PDR transporters from yeast have been characterized. This is not the case for any plant PDR transporter, or, incidentally, for any purified plant ABC transporter. Yet, plant PDR transporters play important roles in plant physiology such as hormone signaling or resistance to pathogens or herbivores. Here, we describe the expression, purification, enzymatic characterization and 2D analysis by electron microscopy of NpABCG5/NpPDR5 from , which has been shown to be involved in the plant defense against herbivores. We constitutively expressed NpABCG5/NpPDR5, provided with a His-tag in a homologous system: suspension cells from (Bright Yellow 2 line). NpABCG5/NpPDR5 was targeted to the plasma membrane and was solubilized by dodecyl maltoside and purified by Ni-affinity chromatography. The ATP-hydrolyzing specific activity (27 nmol min mg) was stimulated seven-fold in the presence of 0.1% asolectin. Electron microscopy analysis indicated that NpABCG5/NpPDR5 is monomeric and with dimensions shorter than those of known ABC transporters. Enzymatic data (optimal pH and sensitivity to inhibitors) confirmed that plant and fungal PDR transporters have different properties. These data also show that suspension cells are a convenient host for the purification and biochemical characterization of ABC transporters.
多药耐药性(PDR)转运蛋白属于ATP结合盒(ABC)转运蛋白的ABCG亚家族,参与各种分子跨质膜的转运。在进化过程中,该基因通过一个半大小ABC基因的复制在真菌和植物中独立出现。酵母中纯化的PDR转运蛋白的酶学特性已得到表征。然而,任何植物PDR转运蛋白,或者顺便说,任何纯化的植物ABC转运蛋白都并非如此。不过,植物PDR转运蛋白在植物生理学中发挥着重要作用,如激素信号传导或对病原体或食草动物的抗性。在此,我们描述了烟草NpABCG5/NpPDR5的表达、纯化、酶学特性以及电子显微镜二维分析,该蛋白已被证明参与植物对食草动物的防御。我们在同源系统中组成型表达了带有His标签的NpABCG5/NpPDR5:烟草(亮黄2系)的悬浮细胞。NpABCG5/NpPDR5定位于质膜,用十二烷基麦芽糖苷溶解并通过镍亲和层析纯化。在存在0.1%大豆卵磷脂的情况下,ATP水解比活性(27 nmol min mg)提高了7倍。电子显微镜分析表明,NpABCG5/NpPDR5是单体,其尺寸比已知的ABC转运蛋白短。酶学数据(最适pH和对抑制剂的敏感性)证实植物和真菌PDR转运蛋白具有不同的特性。这些数据还表明,烟草悬浮细胞是用于ABC转运蛋白纯化和生化特性分析的便捷宿主。