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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >p21-activated kinase 2 regulates HSPC cytoskeleton, migration, and homing via CDC42 activation and interaction with beta-Pix
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p21-activated kinase 2 regulates HSPC cytoskeleton, migration, and homing via CDC42 activation and interaction with beta-Pix

机译:P21激活激酶2通过CDC42激活和与Beta-Pix的相互作用来调节Hspc细胞骨架,迁移和归巢

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摘要

Cytoskeletal remodeling of hematopoietic stem and progenitor cells (HSPCs) is essential for homing to the bone marrow (BM). The Ras-related C3 botulinum toxin substrate (Rac)/cell division control protein 42 homolog (CDC42) effector p21-activated kinase (Pak2) has been implicated in HSPC homing and engraftment. However, the molecular pathways mediating Pak2 functions in HSPCs are unknown. Here, we demonstrate that both Pak2 kinase activity and its interaction with the PAK-interacting exchange factor-beta (beta-Pix) are required to reconstitute defective Pak2(Delta/Delta) HSPC homing to the BM. Pak2 serine/threonine kinase activity is required for stromal-derived factor-1 (SDF1 alpha) chemokine-induced HSPC directional migration, whereas Pak2 interaction with beta-Pix is required to regulate the velocity of HSPC migration and precise F-actin assembly. Lack of SDF1 alpha-induced filopodia and associated abnormal cell protrusions seen in Pak2(Delta/Delta) HSPCs were rescued by wild-type (WT) Pak2 but not by a Pak2-kinase dead mutant (KD). Expression of a beta-Pix interaction-defective mutant of Pak2 rescued filopodia formation but led to abnormal F-actin bundles. Although CDC42 has previously been considered an upstream regulator of Pak2, we found a paradoxical decrease in baseline activation of CDC42in Pak2(Delta/Delta) HSPCs, which was rescued by expression of Pak2-WT but not by Pak2-KD; defective homing of Pak2-deleted HSPCs was rescued by constitutive active CDC42. These data demonstrate that both Pak2 kinase activity and its interaction with beta-Pix are essential for HSPC filopodia formation, cytoskeletal integrity, and homing via activation of CDC42. Taken together, we provide mechanistic insights into the role of Pak2 in HSPC migration and homing.
机译:造血干细胞和祖细胞(Hspcs)的细胞骨骼重塑对于归类骨髓(BM)是必不可少的。 RAS相关的C3肉毒杆菌毒素基质(RAC)/细胞分裂控制蛋白42同源物(CDC42)效应器P21-活化激酶(PAK2)涉及HSPC归巢和植入。然而,在Hspcs中介导PAK2功能的分子途径是未知的。在这里,我们证明PAK2激酶活性及其与Pak交换交换因子-β(Beta-Pix的相互作用是将缺陷的PAK2(Delta / delta)Hspc归位到BM中。基质衍生因子-1(SDF1α)趋化因子诱导的HSPC定向迁移需要PAK2丝氨酸/苏氨酸激酶活性,而PAK2与β-PIX的相互作用是调节HSPC迁移和精确F-ACTIN组件的速度。缺乏SDF1α诱导的氟化碳和PAK2(Delta / delta)Hspcs中的相关异常细胞突起被野生型(wt)pak2救出,但不是pak2-激酶死突变体(Kd)。 β-PIX的表达PAK2救出的箔形成形成的缺陷型突变体,但导致了异常F-肌动蛋白束。虽然CDC42先前被认为是PAK2的上游调节因子,但我们发现CDC42IN PAK2(Delta / delta)Hspcs的基线激活矛盾的降低,这通过表达PAK2-WT而不是PAK2-KD来救出;通过本组成型活性CDC42拯救PAK2缺失的HSPC的杂交杂交。这些数据表明,PAK2激酶活性及其与β - PIX的相互作用对HSPC氟覆面积形成,细胞骨架完整性和通过活化CDC42的寄生至归巢至关重要。我们一起参加,我们为PAK2在HSPC迁移和归巢中的作用提供机械洞察力。

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