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Arl4D-EB1 interaction promotes centrosomal recruitment of EB1 and microtubule growth

机译:ARL4D-EB1相互作用促进EB1和微管生长的中心募集

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ADP-ribosylation factor (Arf)-like 4D (Arl4D), one of the Arf-like small GTPases, functions in the regulation of cell morphology, cell migration, and actin cytoskeleton remodeling. End-binding 1 (EB1) is a microtubule (MT) plus-end tracking protein that preferentially localizes at the tips of the plus ends of growing MTs and at the centrosome. EB1 depletion results in many centrosome-related defects. Here, we report that Arl4D promotes the recruitment of EB1 to the centrosome and regulates MT nucleation. We first showed that Arl4D interacts with EB1 in a GTP-dependent manner. This interaction is dependent on the C-terminal EB homology region of EB1 and partially dependent on an SxLP motif of Arl4D. We found that Arl4D colocalized with γ-tubulin in centrosomes and the depletion of Arl4D resulted in a centrosomal MT nucleation defect. We further demonstrated that abolishing Arl4D-EB1 interaction decreased MT nucleation rate and diminished the centrosomal recruitment of EB1 without affecting MT growth rate. In addition, Arl4D binding to EB1 increased the association between the p150 subunit of dynactin and the EB1, which is important for MT stabilization. Together, our results indicate that Arl4D modulates MT nucleation through regulation of the EB1–p150 association at the centrosome.
机译:ADP-核糖基化因子(ARF) - 样4D(ARL4D),其中ARF样的小GTP酶之一,在调节细胞形态,细胞迁移和肌动蛋白细胞骨架重塑中的功能。末端结合1(EB1)是一种微管(MT)加端跟踪蛋白,其优于在生长MTS和中心体的加末端的尖端处定位。 EB1耗尽导致许多相关的相关缺陷。在这里,我们举报了ARL4D促进了EB1招募到Centosome并调节MT成核。我们首先表明ARL4D以GTP依赖方式与EB1交互。该相互作用依赖于EB1的C末端EB同源区域,部分依赖于ARL4D的SXLP基序。我们发现将γ-微管蛋白分成的Arl4d在CentroSomes中与ARL4D的耗竭导致Centrosomal MT成核缺陷。我们进一步证明,消除ARL4D-EB1相互作用降低了MT成核速率,并减少了EB1的中心募集而不影响MT生长速率。此外,与EB1的Arl4d结合增加了Dynactin和EB1的P150亚基之间的关联,这对于Mt稳定化是重要的。我们的结果表明,ARL4D通过在中心体上调节EB1-P150关联来调节MT成核。

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