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A Quantitative Model for BicD2/Cargo Interactions

机译:BICD2 /货物相互作用的定量模型

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Dynein adaptor proteins such as Bicaudal D2 (BicD2) are integral components of the dynein transport machinery, as they recognize cargoes for cell cycle-specific transport and link them to the motor complex. Human BicD2 switches from selecting secretory and Golgi-derived vesicles for transport in G1 and S phase (by recognizing Rab6(GTP)), to selecting the nucleus for transport in G2 phase (by recognizing nuclear pore protein Nup358), but the molecular mechanisms governing this switch are elusive. Here, we have developed a quantitative model for BicD2/cargo interactions that integrates affinities, oligomeric states, and cellular concentrations of the reactants. BicD2 and cargo form predominantly 2:2 complexes. Furthermore, the affinity of BicD2 toward its cargo Nup358 is higher than that toward Rab6(GTP). Based on our calculations, an estimated 1000 BicD2 molecules per cell would be recruited to the nucleus through Nup358 in the absence of regulation. Notably, RanGTP is a negative regulator of the Nup358/BicD2 interaction that weakens the affinity by a factor of 10 and may play a role in averting dynein recruitment to the nucleus outside of the G2 phase. However, our quantitative model predicts that an additional negative regulator remains to be identified. In the absence of negative regulation, the affinity of Nup358 would likely be sufficient to recruit BicD2 to the nucleus in G2 phase. Our quantitative model makes testable predictions of how cellular transport events are orchestrated. These transport processes are important for brain development, cell cycle control, signaling, and neurotransmission at synapses.
机译:Dynein适配器蛋白如Bicaudal D2(BICD2)是Dynein运输机械的整体组分,因为它们识别用于细胞周期特异性的货物,并将它们连接到电动机络合物。人BICD2从选择分泌物和GOLGI衍生的囊泡切换用于在G1和S相中的转运(通过识别RAB6(GTP)),以选择G2相中转运的核(通过识别核孔蛋白NUP358),但是控制的分子机制此开关难以捉摸。在这里,我们开发了用于二重异性,低聚状态和反应物细胞浓度的BICD2 /货物相互作用的定量模型。 BICD2和货物形式主要是2:2个配合物。此外,BICD2朝向其货物NUP358的亲和力高于RAB6(GTP)。基于我们的计算,在没有调节的情况下,将通过NUP358通过NUP358募集每种细胞的估计1000bicd2分子。值得注意的是,RangTP是NUP358 / BICD2相互作用的负调节剂,其削弱了10系数10的亲和力,并且可能在将Dynein募集到G2期外的核升级中发挥作用。然而,我们的定量模型预测额外的负调节器仍有待识别。在没有负调节的情况下,NUP358的亲和力可能足以在G2相中募集BICD2至核。我们的定量模型可以进行蜂窝传输事件如何精心策划的可测试预测。这些运输过程对于突触的脑发育,细胞周期控制,信号和神经传递是重要的。

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