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PIN 与 PGP 生长素转运机制的相互作用。

Interactions of PIN and PGP auxin transport mechanisms.

作者信息

Bandyopadhyay A, Blakeslee J J, Lee O R, Mravec J, Sauer M, Titapiwatanakun B, Makam S N, Bouchard R, Geisler M, Martinoia E, Friml J, Peer W A, Murphy A S

机构信息

Department of Horticulture, Purdue University, West Lafayette, IN 47907-2010, USA.

出版信息

Biochem Soc Trans. 2007 Feb;35(Pt 1):137-41. doi: 10.1042/BST0350137.

Abstract

Polarized transport of the plant hormone auxin influences multiple growth processes in plants and is regulated by plasma-membrane-localized efflux and uptake carriers. The PGP (P-glycoprotein) ABC transporters (ATP-binding-cassette transporters), PIN (pin-formed) subfamily of major facilitator proteins and members of AUX/LAX families have been shown to independently transport auxin both in planta and in heterologous systems. However, PIN- and PGP-mediated transport in heterologous systems exhibits decreased substrate specificity and inhibitor-sensitivity compared with what is seen in plants and plant cells. To determine whether PIN-PGP interactions enhance transport specificity, we analysed interactions of the representative auxin-transporting PGPs with PIN1 and AUX1 in planta and in heterologous systems. Here, we provide evidence that PINs and PGPs interact and function both independently and co-ordinately to control polar auxin transport and impart transport specificity and directionality. These interactions take place in protein complexes stabilized by PGPs in detergent-resistant microdomains.

摘要

植物激素生长素的极性运输影响植物的多种生长过程,并受质膜定位的外排和摄取载体调控。PGP(P-糖蛋白)ABC转运蛋白(ATP结合盒转运蛋白)、主要协助转运蛋白的PIN(pin-formed)亚家族以及AUX/LAX家族成员已被证明在植物体内和异源系统中均可独立转运生长素。然而,与在植物和植物细胞中观察到的情况相比,异源系统中PIN和PGP介导的转运表现出底物特异性和抑制剂敏感性降低。为了确定PIN-PGP相互作用是否增强转运特异性,我们分析了代表性生长素转运PGP与PIN1和AUX1在植物体内和异源系统中的相互作用。在此,我们提供证据表明,PIN和PGP相互作用,既能独立发挥作用,也能协同控制生长素极性运输,并赋予运输特异性和方向性。这些相互作用发生在由PGP稳定的去污剂抗性微区中的蛋白质复合物中。

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