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首页> 外文期刊>Plant physiology >Multiple roles of ADP-ribosylation factor 1 in plant cells include spatially regulated recruitment of coatomer and elements of the golgi matrix
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Multiple roles of ADP-ribosylation factor 1 in plant cells include spatially regulated recruitment of coatomer and elements of the golgi matrix

机译:ADP-核糖基化因子1在植物细胞中的多种作用包括空间调节募集的涂料和高尔基体的元素

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摘要

Recent evidence indicates that ADP-ribosylation factor 1 (ARF1) carries out multiple roles in plant cells that may be independent from the established effector complex COPI. To investigate potential COPI-independent functions, we have followed the dynamics of ARF1 and a novel putative effector, the plant golgin GRIP-related ARF-binding domain-containing Arabidopsis (Arabidopsis thaliana) protein 1 (GDAP1) in living plant cells. We present data that ascribe a new role to ARF1 in plant cell membrane traffic by showing that the GTPase functions to recruit GDAP1 to membranes. In addition, although ARF1 appears to be central to the recruitment of both COPI components and the golgin, we have established a different subcellular distribution of these ARF1 effectors. Live cell imaging demonstrates that GDAP1 and COPI are distributed on Golgi membranes. However, GDAP1 is also found on ARF1-labeled structures that lack coatomer, suggesting that the membrane environment, rather than ARF1 alone, influences the differential recruitment of ARF1 effectors. In support of this hypothesis, fluorescence recovery after photobleaching analyses demonstrated that GDAP1 and COPI have different kinetics on membranes during the cycle of activation and inactivation of ARF1. Therefore, our data support a model where modulation of the cellular functions of ARF1 in plant cells encompasses not only the intrinsic activities of the effectors, but also differential recruitment onto membranes that is spatially regulated.
机译:最近的证据表明,ADP-核糖基化因子1(ARF1)在植物细胞中发挥多种作用,而这些作用可能与已建立的效应子复合物COPI独立。为了研究潜在的独立于COPI的功能,我们跟踪了ARF1和一种新型推定的效应物,即在活植物细胞中含有植物golgin GRIP相关ARF结合域的拟南芥(Arabidopsis thaliana)蛋白1(GDAP1)的动力学。我们目前的数据通过显示GTPase的功能来募集GDAP1到膜上,从而赋予ARF1在植物细胞膜运输中的新作用。此外,尽管ARF1似乎是招募COPI组件和古尔金的核心,但我们已经建立了这些ARF1效应子的不同亚细胞分布。活细胞成像表明GDAP1和COPI分布在高尔基体膜上。但是,GDAP1也存在于缺乏涂层剂的ARF1标记结构上,这表明膜环境而不是单独的ARF1影响ARF1效应子的差异募集。为支持这一假设,光漂白分析后的荧光恢复表明,GDAP1和COPI在ARF1激活和失活的循环过程中在膜上具有不同的动力学。因此,我们的数据支持一种模型,其中植物细胞中ARF1的细胞功能调节不仅包括效应子的内在活性,而且还包括在空间调节的膜上的差异募集。

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