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BEX5/RabA1b regulates trans-Golgi network-to-plasma membrane protein trafficking in Arabidopsis.

机译:BEX5 / RabA1b调节拟南芥中反高尔基网络到质膜蛋白的运输。

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Constitutive endocytic recycling is a crucial mechanism allowing regulation of the activity of proteins at the plasma membrane and for rapid changes in their localization, as demonstrated in plants for PIN-FORMED (PIN) proteins, the auxin transporters. To identify novel molecular components of endocytic recycling, mainly exocytosis, we designed a PIN1-green fluorescent protein fluorescence imaging-based forward genetic screen for Arabidopsis thaliana mutants that showed increased intracellular accumulation of cargos in response to the trafficking inhibitor brefeldin A (BFA). We identified bex5 (for BFA-visualized exocytic trafficking defective), a novel dominant mutant carrying a missense mutation that disrupts a conserved sequence motif of the small GTPase, RAS GENES FROM RAT BRAINA1b. bex5 displays defects such as enhanced protein accumulation in abnormal BFA compartments, aberrant endosomes, and defective exocytosis and transcytosis. BEX5/RabA1b localizes to trans-Golgi network/early endosomes (TGN/EE) and acts on distinct trafficking processes like those regulated by GTP exchange factors on ADP-ribosylation factors GNOM-LIKE1 and HOPM INTERACTOR7/BFA-VISUALIZED ENDOCYTIC TRAFFICKING DEFECTIVE1, which regulate trafficking at the Golgi apparatus and TGN/EE, respectively. All together, this study identifies Arabidopsis BEX5/RabA1b as a novel regulator of protein trafficking from a TGN/EE compartment to the plasma membrane.
机译:本构内吞再循环是一种至关重要的机制,可以调节质膜上蛋白质的活性并快速改变其定位,正如植物中形成PIN的(PIN)蛋白质(生长素转运蛋白)所证明的那样。为了确定内吞再循环的主要分子成分,主要是胞吐作用,我们设计了基于PIN1绿色荧光蛋白荧光成像的拟南芥突变体正向遗传筛选,该突变体显示出响应于运输抑制剂布雷菲德菌素A(BFA)的货物细胞内积累增加。我们确定了bex5(针对BFA可视化的胞外运输缺陷),这是一种新型的显性突变体,带有突变的错义突变,该突变会破坏小GTPase的保守序列基序,即来自RAT BRAINA1b的RAS基因。 bex5表现出缺陷,例如在异常BFA隔室中增强的蛋白质积累,异常的内体以及缺陷的胞吐和胞吞作用。 BEX5 / RabA1b定位于反高尔基网络/早期内体(TGN / EE),并作用于不同的运输过程,例如由ADP-核糖基化因子GNOM-LIKE1和HOPM INTERACTOR7 / BFA可视化的内在人口贩运行为的GTP交换因子所调控的那些。分别监管高尔基体和TGN / EE的贩运。总之,这项研究将拟南芥BEX5 / RabA1b鉴定为一种新型蛋白质调节剂,其从TGN / EE室向质膜转运。

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