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优化的小分子下拉实验将 MLBP1 定义为一种酰基脂结合蛋白。

Optimized small-molecule pull-downs define MLBP1 as an acyl-lipid-binding protein.

机构信息

The Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture, the Hebrew University of Jerusalem, Rehovot, 7610001, Israel.

Department of Botany and Plant Sciences, Center for Plant Cell Biology and Institute for Integrative Genome Biology, University of California, Riverside, CA, 92521, USA.

出版信息

Plant J. 2019 Jun;98(5):928-941. doi: 10.1111/tpj.14272. Epub 2019 Mar 19.

Abstract

Abscisic acid (ABA) receptors belong to the START domain superfamily, which encompasses ligand-binding proteins present in all kingdoms of life. START domain proteins contain a central binding pocket that, depending on the protein, can couple ligand binding to catalytic, transport or signaling functions. In Arabidopsis, the best characterized START domain proteins are the 14 PYR/PYL/RCAR ABA receptors, while the other members of the superfamily do not have assigned ligands. To address this, we used affinity purification of biotinylated proteins expressed transiently in Nicotiana benthamiana coupled to untargeted LC-MS to identify candidate binding ligands. We optimized this method using ABA-PYL interactions and show that ABA co-purifies with wild-type PYL5 but not a binding site mutant. The K of PYL5 for ABA is 1.1 μm, which suggests that the method has sufficient sensitivity for many ligand-protein interactions. Using this method, we surveyed a set of 37 START domain-related proteins, which resulted in the identification of ligands that co-purified with MLBP1 (At4G01883) or MLP165 (At1G35260). Metabolite identification and the use of authentic standards revealed that MLBP1 binds to monolinolenin, which we confirmed using recombinant MLBP1. Monolinolenin also co-purified with MLBP1 purified from transgenic Arabidopsis, demonstrating that the interaction occurs in a native context. Thus, deployment of this relatively simple method allowed us to define a protein-metabolite interaction and better understand protein-ligand interactions in plants.

摘要

脱落酸(ABA)受体属于 START 结构域超家族,该家族包含存在于所有生命领域的配体结合蛋白。START 结构域蛋白包含一个中央结合口袋,根据蛋白的不同,该口袋可将配体结合与催化、运输或信号转导功能偶联。在拟南芥中,研究最为深入的 START 结构域蛋白是 14 个 PYR/PYL/RCAR ABA 受体,而该超家族的其他成员没有指定的配体。为了解决这个问题,我们使用在本氏烟草中瞬时表达的生物素化蛋白的亲和纯化,结合非靶向 LC-MS 来鉴定候选结合配体。我们使用 ABA-PYL 相互作用优化了这种方法,并表明 ABA 与野生型 PYL5 共纯化,但不与结合位点突变体共纯化。PYL5 与 ABA 的 Kd 为 1.1 μm,这表明该方法对许多配体-蛋白相互作用具有足够的灵敏度。使用这种方法,我们调查了一组 37 个与 START 结构域相关的蛋白质,结果鉴定出与 MLBP1(At4G01883)或 MLP165(At1G35260)共纯化的配体。代谢物鉴定和使用真实标准品,揭示了 MLBP1 结合的是单顺式-9-十八烯酸,我们使用重组 MLBP1 证实了这一点。单顺式-9-十八烯酸也与从转基因拟南芥中纯化的 MLBP1 共纯化,证明该相互作用发生在天然环境中。因此,部署这种相对简单的方法使我们能够定义蛋白质-代谢物相互作用,并更好地理解植物中的蛋白质-配体相互作用。

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