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ABCB19/PGP19在拟南芥的膜微区中稳定PIN1。

ABCB19/PGP19 stabilises PIN1 in membrane microdomains in Arabidopsis.

作者信息

Titapiwatanakun Boosaree, Blakeslee Joshua J, Bandyopadhyay Anindita, Yang Haibing, Mravec Jozef, Sauer Michael, Cheng Yan, Adamec Jiri, Nagashima Akitomo, Geisler Markus, Sakai Tatsuya, Friml Jiri, Peer Wendy Ann, Murphy Angus S

机构信息

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

出版信息

Plant J. 2009 Jan;57(1):27-44. doi: 10.1111/j.1365-313X.2008.03668.x. Epub 2008 Oct 4.

Abstract

Auxin transport is mediated at the cellular level by three independent mechanisms that are characterised by the PIN-formed (PIN), P-glycoprotein (ABCB/PGP) and AUX/LAX transport proteins. The PIN and ABCB transport proteins, best represented by PIN1 and ABCB19 (PGP19), have been shown to coordinately regulate auxin efflux. When PIN1 and ABCB19 coincide on the plasma membrane, their interaction enhances the rate and specificity of auxin efflux and the dynamic cycling of PIN1 is reduced. However, ABCB19 function is not regulated by the dynamic cellular trafficking mechanisms that regulate PIN1 in apical tissues, as localisation of ABCB19 on the plasma membrane was not inhibited by short-term treatments with latrunculin B, oryzalin, brefeldin A (BFA) or wortmannin--all of which have been shown to alter PIN1 and/or PIN2 plasma membrane localisation. When taken up by endocytosis, the styryl dye FM4-64 labels diffuse rather than punctuate intracellular bodies in abcb19 (pgp19), and some aggregations of PIN1 induced by short-term BFA treatment did not disperse after BFA washout in abcb19. Although the subcellular localisations of ABCB19 and PIN1 in the reciprocal mutant backgrounds were like those in wild type, PIN1 plasma membrane localisation in abcb19 roots was more easily perturbed by the detergent Triton X-100, but not other non-ionic detergents. ABCB19 is stably associated with sterol/sphingolipid-enriched membrane fractions containing BIG/TIR3 and partitions into Triton X-100 detergent-resistant membrane (DRM) fractions. In the wild type, PIN1 was also present in DRMs, but was less abundant in abcb19 DRMs. These observations suggested a rationale for the observed lack of auxin transport activity when PIN1 is expressed in a non-plant heterologous system. PIN1 was therefore expressed in Schizosaccharomyces pombe, which has plant-like sterol-enriched microdomains, and catalysed auxin transport in these cells. These data suggest that ABCB19 stabilises PIN1 localisation at the plasma membrane in discrete cellular subdomains where PIN1 and ABCB19 expression overlaps.

摘要

生长素运输在细胞水平上由三种独立机制介导,这些机制以PIN形成蛋白(PIN)、P-糖蛋白(ABCB/PGP)和AUX/LAX转运蛋白为特征。PIN和ABCB转运蛋白,以PIN1和ABCB19(PGP19)最为典型,已被证明可协同调节生长素外流。当PIN1和ABCB19在质膜上重合时,它们的相互作用会提高生长素外流的速率和特异性,并且PIN1的动态循环会减少。然而,ABCB19的功能不受调节顶端组织中PIN1的动态细胞运输机制的调控,因为用拉特鲁毒素B、抑草磷、布雷菲德菌素A(BFA)或渥曼青霉素进行短期处理均未抑制ABCB19在质膜上的定位,而这些处理均已被证明会改变PIN1和/或PIN2的质膜定位。当通过内吞作用被摄取时,苯乙烯基染料FM4-64标记abcb19(pgp19)中弥散而非点状的细胞内小体,并且在abcb19中,短期BFA处理诱导的一些PIN1聚集在BFA洗脱后并未分散。尽管在相互突变背景下ABCB19和PIN1的亚细胞定位与野生型相似,但abcb19根中PIN1的质膜定位更容易受到去污剂Triton X-100的干扰,而不受其他非离子去污剂的影响。ABCB19与富含固醇/鞘脂的膜组分稳定相关,这些膜组分含有BIG/TIR3,并可分配到Triton X-100抗去污剂膜(DRM)组分中。在野生型中,PIN1也存在于DRM中,但在abcb19的DRM中含量较少。这些观察结果为在非植物异源系统中表达PIN1时观察到的生长素运输活性缺乏提供了一个理论依据。因此,PIN1在粟酒裂殖酵母中表达,该酵母具有类似植物的富含固醇的微区,并在这些细胞中催化生长素运输。这些数据表明,ABCB19在PIN1和ABCB19表达重叠的离散细胞亚域中稳定PIN1在质膜上的定位。

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