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Mechanisms and concepts paving the way towards a complete transport cycle of plant vacuolar sorting receptors.

机译:机制和概念为植物液泡分选受体的完整运输周期铺平了道路。

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Delivery of proteins to the lytic vacuole in plants is a complex cascade of selective interactions that specifically excludes residents of the endoplasmic reticulum and secreted proteins. Vacuolar transport must be highly efficient to avoid mistargeting of hydrolytic enzymes to locations where they could be harmful. While plant vacuolar sorting signals have been well described for two decades, it is only during the last 5 years that a critical mass of data was gathered that begins to reveal how vacuolar sorting receptors (VSRs) may complete a full transport cycle. Yet, the field is far from reaching a consensus regarding the organelles that could be involved in vacuolar sorting, their potential biogenesis, and the ultimate recycling of membranes and protein machinery that maintain this pathway. This review will highlight the important landmarks in our understanding of VSR function and compare recent transport models that have been proposed so that an emerging picture of plant vacuolar sorting mechanisms can be drawn.Digital Object Identifier http://dx.doi.org/10.1105/tpc.112.095679
机译:蛋白质向植物中的溶解液泡的传递是一个复杂的选择性相互作用的级联反应,该相互作用特别排除了内质网和分泌蛋白的居民。液泡运输必须高效,以避免将水解酶错误地靶向可能有害的位置。尽管植物液泡分选信号已经被描述了二十年,但是直到最近五年才收集了关键数据,才开始揭示液泡分选受体(VSR)如何完成整个运输周期。然而,在可能参与液泡分选的细胞器,其潜在的生物发生以及维持该途径的膜和蛋白质机器的最终回收方面,该领域远未达成共识。这篇综述将突出我们对VSR功能的理解中的重要里程碑,并比较最近提出的运输模型,以便可以绘制出植物液泡分选机制的新兴图景。数字对象标识符http://dx.doi.org/10.1105 /tpc.112.095679

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