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Flavonol‐mediated stabilization of PIN efflux complexes regulates polar auxin transport

机译:FlaVonol介导的销渗透复合物的稳定调节极性养蛋白运输

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摘要

The transport of auxin controls the rate, direction and localization of plant growth and development. The course of auxin transport is defined by the polar subcellular localization of the PIN proteins, a family of auxin efflux transporters. However, little is known about the composition and regulation of the PIN protein complex. Here, using blue‐native PAGE and quantitative mass spectrometry, we identify native PIN core transport units as homo‐ and heteromers assembled from PIN1, PIN2, PIN3, PIN4 and PIN7 subunits only. Furthermore, we show that endogenous flavonols stabilize PIN dimers to regulate auxin efflux in the same way as does the auxin transport inhibitor 1‐naphthylphthalamic acid (NPA). This inhibitory mechanism is counteracted both by the natural auxin indole‐3‐acetic acid and by phosphomimetic amino acids introduced into the PIN1 cytoplasmic domain. Our results lend mechanistic insights into an endogenous control mechanism which regulates PIN function and opens the way for a deeper understanding of the protein environment and regulation of the polar auxin transport complex.
机译:蟾蜍素的运输控制了植物生长和发展的速率,方向和定位。养肝转运过程由PIN蛋白的极性亚细胞定位,是一种滋养剂流出转运蛋白的终端。然而,关于PIN蛋白复合物的组成和调节很少。这里,使用蓝色本机页面和定量质谱,我们仅将本机引脚核心传输单元识别为由Pin1,Pin2,PIN3,PIN4和PIN7子单元组装的同源物和异构体。此外,我们表明内源性黄酮溶胶稳定销二聚体以调节毒素渗透的同样的方式与制氮素转运抑制剂1-萘氨基酞酸(NPA)相同。该抑制机制由天然氧蛋白吲哚-3-乙酸和通过引入PIN1细胞质结构域中的磷酸氨基酸而抵消。我们的结果借入机械洞察力的内源性控制机制,该机制调节销功能,并为更深入了解蛋白质环境和极性砧蛋白传输复合物的调节方式。

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