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Identification of IAA Transport Inhibitors Including Compounds Affecting Cellular PIN Trafficking by Two Chemical Screening Approaches Using Maize Coleoptile Systems

机译:利用玉米胚芽鞘系统通过两种化学筛选方法鉴定IAA转运抑制剂,包括影响细胞PIN转运的化合物

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The monocot coleoptile tip region has been generally supposed to be the source of IAA to supply IAA to basal parts by the polar IAA transport system, which results in gravi- and phototropic curvature of coleoptiles. Based on this IAA transport system and gravitropism of maize coleoptiles, we have developed two screening methods to identify small molecules from a large chemical library that inhibit IAA transport. The methods detect molecules that affect (i) gravitropic curvature of coleoptiles; and (ii) the amount of IAA transported from the tip. From 10,000 chemicals, eight compounds were identified and categorized into two groups. Four chemicals in group A decreased IAA transport from the tip, and increased endogenous IAA levels in the tip. The structures of two compounds resembled that of 1-N-naphthylphthalamic acid (NPA), but those of the other two differed from structures of known IAA transport inhibitors. Four chemicals in group B strongly inhibited IAA transport from the tip, but IAA levels at the tip were only slightly affected. At higher concentrations, group B compounds inhibited germination of Arabidopsis, similarly to brefeldin A (BFA). Analysis of the cellular distribution of PIN2–green fluorescent protein (GFP) and PIN1–GFP in Arabidopsis revealed that one of the four chemicals in group B induced internalization of PIN1 and PIN2 proteins into vesicles smaller than BFA bodies, suggesting that this compound affects cellular vesicle trafficking systems related to PIN trafficking. The eight chemicals identified here will be a useful tool for understanding the mechanisms of IAA transport in plants.
机译:通常认为单子叶植物胚芽鞘尖端区域是IAA的来源,它通过极性IAA转运系统向基础部分提供IAA,这会导致胚芽鞘的重力和光致弯曲。基于此IAA转运系统和玉米胚芽鞘的重力,我们开发了两种筛选方法,可从大型化学文库中识别抑制IAA转运的小分子。该方法检测影响(i)胚芽鞘的重力弯曲的分子; (ii)从烟头运输的IAA量。从10,000种化学物中,鉴定出8种化合物并将其分为两组。 A组中的四种化学物质降低了IAA从尖端的转运,并增加了尖端的内源性IAA水平。两种化合物的结构类似于1-N-萘基邻苯二甲酸(NPA)的结构,但另两种化合物的结构与已知的IAA转运抑制剂的结构不同。 B组中的四种化学物质强烈抑制了IAA从尖端的转运,但尖端的IAA水平受到的影响很小。与布雷菲德菌素A(BFA)相似,在较高浓度下,B组化合物抑制拟南芥的发芽。对拟南芥中PIN2–绿色荧光蛋白(GFP)和PIN1–GFP的细胞分布的分析表明,B组中的四种化学物质之一将PIN1和PIN2蛋白内化为小于BFA体的囊泡,表明该化合物影响细胞与PIN贩运有关的囊泡贩运系统。此处确定的八种化学物质将成为了解植物中IAA转运机制的有用工具。

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