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Delayed Onset of Positive Feedback Activation of Rab5 by Rabex-5 and Rabaptin-5 in Endocytosis

机译:Rabex-5和Rabaptin-5在胞吞作用中延迟正反馈激活Rab5的发作

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Background Rabex-5 is a guanine nucleotide exchange factor (GEF) that specifically activates Rab5, i.e., converting Rab5-GDP to Rab5-GTP, through two distinct pathways to promote endosome fusion and endocytosis. The direct pathway involves a pool of membrane-associated Rabex-5 that targets to the membrane via an early endosomal targeting (EET) domain. The indirect pathway, on the other hand, involves a cytosolic pool of Rabex-5/Rabaptin-5 complex. The complex is recruited to the membrane via Rabaptin-5 binding to Rab5-GTP, suggesting a positive feedback mechanism. The relationship of these two pathways for Rab5 activation in the cell is unclear. Methodology/Principal Findings We dissect the relative contribution of each pathway to Rab5 activation via mathematical modeling and kinetic analysis in the cell. These studies show that the indirect pathway constitutes a positive feedback loop for converting Rab5-GDP to Rab5-GTP on the endosomal membrane and allows sensitive regulation of endosome fusion activity by the levels of Rab5 and Rabex-5 in the cell. The onset of this positive feedback effect, however, contains a threshold, which requires above endogenous levels of Rab5 or Rabex-5 in the cell. We term this novel phenomenon “delayed response”. The presence of the direct pathway reduces the delay by increasing the basal level of Rab5-GTP, thus facilitates the function of the Rabex-5/Rabaptin-5-mediated positive feedback loop. Conclusion Our data support the mathematical model. With the model's guidance, the data reveal the affinity of Rabex-5/Rabaptin-5/Rab5-GTP interaction in the cell, which is quantitatively related to the Rabex-5 concentration for the onset of the indirect positive feedback pathway. The presence of the direct pathway and increased Rab5 concentration can reduce the Rabex-5 concentration required for the onset of the positive feedback loop. Thus the direct and indirect pathways cooperate in the regulation of early endosome fusion.
机译:背景Rabex-5是一种鸟嘌呤核苷酸交换因子(GEF),可通过两种不同的途径特异性地激活Rab5,即将Rab5-GDP转化为Rab5-GTP,以促进内体融合和内吞作用。直接途径包括与膜相关的Rabex-5池,其通过早期的内体靶向(EET)结构域靶向膜。另一方面,间接途径涉及Rabex-5 / Rabaptin-5复合物的胞质池。该复合物通过与Rab5-GTP结合的Rabaptin-5募集到膜上,表明存在积极的反馈机制。细胞中Rab5激活的这两个途径之间的关系尚不清楚。方法/主要发现我们通过细胞中的数学建模和动力学分析来剖析每种途径对Rab5激活的相对贡献。这些研究表明,间接途径构成了将Rab5-GDP转化为内体膜上的Rab5-GTP的正反馈回路,并允许通过细胞中Rab5和Rabex-5的水平敏感地调节内体融合活性。但是,这种正反馈效应的发作包含一个阈值,该阈值要求细胞中Rab5或Rabex-5的内源性水平高于上述水平。我们称这种新现象为“延迟响应”。直接通路的存在通过增加Rab5-GTP的基础水平来减少延迟,从而促进Rabex-5 / Rabaptin-5介导的正反馈回路的功能。结论我们的数据支持数学模型。在该模型的指导下,数据揭示了细胞中Rabex-5 / Rabaptin-5 / Rab5-GTP相互作用的亲和力,这与Rabex-5浓度在间接正反馈途径中的发生定量相关。直接通路的存在和Rab5浓度的增加可以降低正反馈回路开始所需的Rabex-5浓度。因此,直接和间接途径在早期内体融合的调节中协同作用。

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