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Negative Regulation of the Endocytic Adaptor Disabled-2 (Dab2) in Mitosis

机译:在有丝分裂中的内吞适配器Disabled-2(Dab2)的负调控。

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摘要

Mitotic cells undergo extensive changes in shape and size through the altered regulation and function of their membrane trafficking machinery. Disabled 2 (Dab2), a multidomain cargo-specific endocytic adaptor and a mediator of signal transduction, is a potential integrator of trafficking and signaling. Dab2 binds effectors of signaling and trafficking that localize to different intracellular compartments. Thus, differential localization is a putative regulatory mechanism of Dab2 function. Furthermore, Dab2 is phosphorylated in mitosis and is thus regulated in the cell cycle. However, a detailed description of the intracellular localization of Dab2 in the different phases of mitosis and an understanding of the functional consequences of its phosphorylation are lacking. Here, we show that Dab2 is progressively displaced from the membrane in mitosis. This phenomenon is paralleled by a loss of co-localization with clathrin. Both phenomena culminate in metaphase/anaphase and undergo partial recovery in cytokinesis. Treatment with 2-methoxyestradiol, which arrests cells at the spindle assembly checkpoint, induces the same effects observed in metaphase cells. Moreover, 2-methoxyestradiol also induced Dab2 phosphorylation and reduced Dab2/clathrin interactions, endocytic vesicle motility, clathrin exchange dynamics, and the internalization of a receptor endowed with an NPXY endocytic signal. Serine/threonine to alanine mutations, of residues localized to the central region of Dab2, attenuated its phosphorylation, reduced its membrane displacement, and maintained its endocytic abilities in mitosis. We propose that the negative regulation of Dab2 is part of an accommodation of the cell to the altered physicochemical conditions prevalent in mitosis, aimed at allowing endocytic activity throughout the cell cycle.
机译:有丝分裂细胞通过改变其膜运输机制的调节和功能而发生形状和大小的广泛变化。残疾人2(Dab2)是一种多域货物特异性的内吞适配器,是信号转导的介体,是潜在的运输和信号整合者。 Dab2结合位于不同细胞内区室的信号传导和运输效应子。因此,差异化定位是Dab2功能的一种假定的调节机制。此外,Dab2在有丝分裂中被磷酸化,因此在细胞周期中受到调节。然而,缺乏对Dab2在有丝分裂的不同阶段的细胞内定位的详细描述以及对其磷酸化的功能后果的了解。在这里,我们显示Dab2在有丝分裂中逐渐从膜上移开。这种现象与与网格蛋白的共定位丧失有关。两种现象都在中期/后期达到顶点,并在胞质分裂中部分恢复。用2-甲氧基雌二醇处理可将细胞阻滞在纺锤体装配检查点,从而诱导中期细胞中观察到的相同作用。此外,2-甲氧基雌二醇还诱导Dab2磷酸化并减少Dab2 / clathrin相互作用,内吞小泡运动性,网格蛋白交换动力学以及赋予NPXY内吞信号的受体的内在化。位于Dab2中心区域的残基的丝氨酸/苏氨酸至丙氨酸突变,减弱了其磷酸化作用,减少了其膜移位,并保持了其在有丝分裂中的内吞能力。我们提出,Dab2的负调控是细胞适应有丝​​分裂中普遍发生的改变的理化条件的一部分,目的是在整个细胞周期中允许内吞活性。

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