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首页> 外文期刊>Mechanisms of Development >Posttranslational modification and trafficking of PIN auxin efflux carriers. (Special Issue: Developmental plasticity and adaptation in plants.)
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Posttranslational modification and trafficking of PIN auxin efflux carriers. (Special Issue: Developmental plasticity and adaptation in plants.)

机译:PIN植物生长素外排载体的翻译后修饰和运输。 (特刊:植物的发育可塑性和适应性。)

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摘要

Cell-to-cell communication is absolutely essential for multicellular organisms. Both animals and plants use chemicals called hormones for intercellular signaling. However, multicellularity of plants and animals has evolved independently, which led to establishment of distinct strategies in order to cope with variations in an ever-changing environment. The phytohormone auxin is crucial to plant development and patterning. PIN auxin efflux carrier-driven polar auxin transport regulates plant development as it controls asymmetric auxin distribution (auxin gradients), which in turn modulates a wide range of developmental processes. Internal and external cues trigger a number of posttranslational PIN auxin carrier modifications that were demonstrated to decisively influence variations in adaptive growth responses. In this review, we highlight recent advances in the analysis of posttranslational modification of PIN auxin efflux carriers, such as phosphorylation and ubiquitylation, and discuss their eminent role in directional vesicle trafficking, PIN protein de-/stabilization and auxin transport activity. We conclude with updated models, in which we attempt to integrate the mechanistic relevance of posttranslational modifications of PIN auxin carriers for the dynamic nature of plant development.
机译:细胞间通信对于多细胞生物绝对必要。动植物均使用称为激素的化学物质进行细胞间信号传导。但是,动植物的多细胞性已经独立发展,这导致建立独特的策略以应对不断变化的环境中的变化。植物激素生长素对植物发育和图案形成至关重要。 PIN生长素外排载体驱动的极性植物生长素运输控制植物生长素的不对称分布(植物生长素梯度),从而调节植物的发育,进而调节了广泛的发育过程。内部和外部提示触发了许多翻译后PIN生长素载体的修饰,这些修饰被证明对适应性生长反应的变化具有决定性的影响。在这篇综述中,我们着重介绍PIN植物生长素外排载体翻译后修饰的最新研究进展,例如磷酸化和泛素化,并讨论它们在定向囊泡运输,PIN蛋白去/稳定和植物生长素运输活性中的重要作用。我们以更新的模型结束,在该模型中,我们尝试将PIN生长素载体的翻译后修饰的机械相关性整合到植物发育的动态特性中。

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