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Trafficking modulator TENin1 inhibits endocytosis, causes endomembrane protein accumulation at the pre-vacuolar compartment and impairs gravitropic response in Arabidopsis thaliana

机译:贩运调节剂Tenin1抑制内吞作用,导致在真空腔室中的子宫内膜蛋白积累并损害拟南芥的重力反应

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摘要

Auxin gradients are established and maintained by polarized distribution of auxin transporters that undergo constitutive endocytic recycling from the PM (plasma membrane) and are essential for the gravitropic response in plants. The present study characterizes an inhibitor of endomembrane protein trafficking, TE1 (trafficking and endocytosis inhibitor 1/TENin1) that reduces gravitropic root bending in Arabidopsis thaliana seedlings. Short-term TE1 treatment causes accumulation of PM proteins, including the BR (brassinosteroid) receptor BRI1 (BR insensitive 1), PIP2a (PM intrinsic protein 2a) and the auxin transporter PIN2 (PIN-FORMED 2) in a PVC (pre-vacuolar related compartment), which is sensitive to BFA (Brefeldin A). This compound inhibits endocytosis from the PM and promotes trafficking to the vacuole, consistent with inhibition of retrieval of proteins to the TGN (trans-Golgi network) from the PVC and the PM. However, trafficking of newly synthesized proteins to the PM is unaffected. The short-term protein trafficking inhibition and long-term effect on plant growth and survival caused by TE1 were fully reversible upon drug washout. Structure-activity relationship studies revealed that only minor modifications were possible without loss of biological activity. Diversity in Arabidopsis ecotypes was also exploited to identify two Arabidopsis accessions that display reduced sensitivity to TE1. This compound and the resistant Arabidopsis accessions may be used as a resource in future studies to better understand endomembrane trafficking in plants.
机译:生长素梯度是通过生长素转运蛋白的极化分布来建立和维持的,生长素转运蛋白是从PM(质膜)进行组成型内吞再循环的,对于植物的重力反应至关重要。本研究的特点是一种内膜蛋白运输抑制剂TE1(运输和内吞抑制剂1 / TENin1),可减少拟南芥幼苗中趋向性根弯曲。短期TE1治疗会导致PM蛋白堆积,其中包括BR(油菜素类固醇)受体BRI1(BR不敏感1),PIP2a(PM固有蛋白2a)和生长素转运蛋白PIN2(PIN形成2)在PVC(真空前)中。相关隔室),它对BFA(布雷菲德菌素A)敏感。该化合物抑制了PM的内吞作用,并促进了向液泡的运输,这与抑制蛋白质从PVC和PM回收到TGN(反高尔基网络)的作用相一致。但是,新合成的蛋白质向PM的运输不受影响。药物洗脱后,TE1引起的短期蛋白运输抑制和对植物生长及存活的长期影响是完全可逆的。结构-活性关系研究表明,只有很小的修饰是可能的,而不会丧失生物活性。还利用拟南芥生态型的多样性来鉴定两个对TE1敏感性降低的拟南芥种质。该化合物和抗性拟南芥种可以用作未来研究的资源,以更好地了解植物的内膜运输。

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