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生长素与拟南芥生长素内流转运蛋白AUX1的结合。

The binding of auxin to the Arabidopsis auxin influx transporter AUX1.

作者信息

Carrier David J, Bakar Norliza Tendot Abu, Swarup Ranjan, Callaghan Richard, Napier Richard M, Bennett Malcolm J, Kerr Ian D

机构信息

School of Biomedical Sciences, University of Nottingham, Queen's Medical Centre, Nottingham NG7 2UH, United Kingdom.

出版信息

Plant Physiol. 2008 Sep;148(1):529-35. doi: 10.1104/pp.108.122044. Epub 2008 Jul 9.

Abstract

The cellular import of the hormone auxin is a fundamental requirement for the generation of auxin gradients that control a multitude of plant developmental processes. The AUX/LAX family of auxin importers, exemplified by AUX1 from Arabidopsis (Arabidopsis thaliana), has been shown to mediate auxin import when expressed heterologously. The quantitative nature of the interaction between AUX1 and its transport substrate indole-3-acetic acid (IAA) is incompletely understood, and we sought to address this in the present investigation. We expressed AUX1 to high levels in a baculovirus expression system and prepared membrane fragments from baculovirus-infected insect cells. These membranes proved suitable for determination of the binding of IAA to AUX1 and enabled us to determine a K(d) of 2.6 mum, comparable with estimates for the K(m) for IAA transport. The efficacy of a number of auxin analogues and auxin transport inhibitors to displace IAA binding from AUX1 has also been determined and can be rationalized in terms of their physiological effects. Determination of the parameters describing the initial interaction between a plant transporter and its hormone ligand provides novel quantitative data for modeling auxin fluxes.

摘要

激素生长素的细胞内转运是形成生长素梯度的基本条件,而生长素梯度控制着众多植物发育过程。以拟南芥的AUX1为例的AUX/LAX生长素转运蛋白家族,已被证明在异源表达时可介导生长素的转运。AUX1与其转运底物吲哚 - 3 - 乙酸(IAA)之间相互作用的定量性质尚未完全了解,我们试图在本研究中解决这一问题。我们在杆状病毒表达系统中高水平表达AUX1,并从杆状病毒感染的昆虫细胞中制备膜片段。这些膜被证明适用于测定IAA与AUX1的结合,并使我们能够确定解离常数(K(d))为2.6 μM,这与IAA转运的米氏常数(K(m))估计值相当。还测定了多种生长素类似物和生长素转运抑制剂从AUX1上取代IAA结合的效力,并可根据它们的生理效应进行合理解释。确定描述植物转运蛋白与其激素配体之间初始相互作用的参数,为模拟生长素通量提供了新的定量数据。

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