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IGF2BP1 promotes cell migration by regulating MK5 and PTEN signaling

机译:IGF2BP1通过调节MK5和PTEN信号传导促进细胞迁移

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摘要

In primary neurons, the oncofetal RNA-binding protein IGF2BP1 (IGF2 mRNA-binding protein 1) controls spatially restricted b-actin (ACTB) mRNA translation and modulates growth cone guidance. In cultured tumorderived cells, IGF2BP1 was shown to regulate the formation of lamellipodia and invadopodia. However, how and via which target mRNAs IGF2BP1 controls the motility of tumor-derived cells has remained elusive. In this study, we reveal that IGF2BP1 promotes the velocity and directionality of tumor-derived cell migration by determining the cytoplasmic fate of two novel target mRNAs: MAPK4 and PTEN. Inhibition of MAPK4 mRNA translation by IGF2BP1 antagonizes MK5 activation and prevents phosphorylation of HSP27, which sequesters actin monomers available for F-actin polymerization. Consequently, HSP27-ACTB association is reduced, mobilizing cellular G-actin for polymerization in order to promote the velocity of cell migration. At the same time, stabilization of the PTEN mRNA by IGF2BP1 enhances PTEN expression and antagonizes PIP 3-directed signaling. This enforces the directionality of cell migration in a RAC1-dependent manner by preventing additional lamellipodia from forming and sustaining cell polarization intrinsically. IGF2BP1 thus promotes the velocity and persistence of tumor cell migration by controlling the expression of signaling proteins. This fine-tunes and connects intracellular signaling networks in order to enhance actin dynamics and cell polarization.
机译:在原代神经元中,胎粪RNA结合蛋白IGF2BP1(IGF2 mRNA结合蛋白1)控制空间受限的b-肌动蛋白(ACTB)mRNA的翻译并调节生长锥的引导。在培养的肿瘤来源的细胞中,IGF2BP1被证明可调节片状脂质体和侵袭足细胞的形成。然而,如何以及通过哪种靶标mRNAs IGF2BP1控制肿瘤衍生细胞的运动性仍然不清楚。在这项研究中,我们揭示了IGF2BP1通过确定两种新型靶mRNA(MAPK4和PTEN)的细胞质命运,促进了肿瘤来源的细胞迁移的速度和方向性。 IGF2BP1抑制MAPK4 mRNA翻译可拮抗MK5激活并防止HSP27磷酸化,从而隔离可用于F-肌动蛋白聚合的肌动蛋白单体。因此,HSP27-ACTB缔合减少,从而动员细胞中的G-肌动蛋白进行聚合,从而促进细胞迁移的速度。同时,IGF2BP1对PTEN mRNA的稳定作用会增强PTEN的表达并拮抗PIP 3定向的信号传导。通过防止额外的片状脂膜形成并固有地维持细胞极化,这以RAC1依赖性方式增强了细胞迁移的方向性。因此,IGF2BP1通过控制信号蛋白的表达来促进肿瘤细胞迁移的速度和持久性。这可以微调并连接细胞内信号网络,以增强肌动蛋白的动力学和细胞极化。

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