HCMV pUS28通过激活Pyk2激酶启动促迁移信号。

Jennifer Vomaske, Susan Varnum, Ryan Melnychuk, Patricia Smith, Ljiljana Pasa-Tolic, Janani I Shutthanandan, Daniel N Streblow
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引用次数: 27

摘要

背景:人类巨细胞病毒(HCMV)与血管疾病和慢性同种异体移植排斥反应的加速有关。最近,这种病毒被发现与胶质母细胞瘤和其他肿瘤有关。我们之前已经证明hcmv编码的趋化因子受体pUS28介导平滑肌细胞(SMC)和巨噬细胞的运动,这种活性与血管疾病的加速有关。pUS28诱导的SMC迁移涉及蛋白酪氨酸激酶(PTKs) Src和黏附激酶以及小GTPase RhoA的激活。PTK Pyk2已被证明在细胞迁移和癌症形成中发挥作用,特别是胶质母细胞瘤。Pyk2在pUS28信号传导和迁移中的作用尚不清楚。方法:在目前的研究中,我们研究了PTK Pyk2在pus28诱导的细胞运动中的作用。我们利用SMC的体外迁移来确定pUS28促迁移信号对Pyk2的要求。为了确定pUS28迁移的机制,我们对pUS28激活后的Pyk2信号进行了生化分析。我们对Pyk2复合物进行质谱分析,以鉴定新的Pyk2结合伙伴。结果:缺乏自磷酸化位点(Tyr-402)的Pyk2突变体的表达阻断了pus28介导的SMC对CCL5的迁移,而激酶无活性的Pyk2突变体未能对迁移产生相同的负面影响。CCL5刺激pUS28可导致Pyk2 Tyr-402的配体依赖性和钙依赖性磷酸化,并诱导形成含有几种新型Pyk2结合蛋白的活性Pyk2激酶复合物。自磷酸化零突变体Pyk2 F402Y的表达并没有消除活性Pyk2激酶复合物的形成,而是阻止了pus28介导的RhoA活化。此外,pUS28在U373胶质母细胞瘤细胞中通过Pyk2激活RhoA。有趣的是,U373中的Pyk2激酶复合物含有几种已知参与胶质瘤发生的蛋白质。结论:这些发现首次证明了pUS28通过Pyk2发出信号,并且该PTK通过激活RhoA参与了pUS28介导的细胞运动。此外,这些结果提供了HCMV-pUS28与胶质母细胞瘤细胞活化之间的潜在机制联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

HCMV pUS28 initiates pro-migratory signaling via activation of Pyk2 kinase.

HCMV pUS28 initiates pro-migratory signaling via activation of Pyk2 kinase.

HCMV pUS28 initiates pro-migratory signaling via activation of Pyk2 kinase.

HCMV pUS28 initiates pro-migratory signaling via activation of Pyk2 kinase.

Background: Human Cytomegalovirus (HCMV) has been implicated in the acceleration of vascular disease and chronic allograft rejection. Recently, the virus has been associated with glioblastoma and other tumors. We have previously shown that the HCMV-encoded chemokine receptor pUS28 mediates smooth muscle cell (SMC) and macrophage motility and this activity has been implicated in the acceleration of vascular disease. pUS28 induced SMC migration involves the activation of the protein tyrosine kinases (PTKs) Src and Focal adhesion kinase as well as the small GTPase RhoA. The PTK Pyk2 has been shown to play a role in cellular migration and formation of cancer, especially glioblastoma. The role of Pyk2 in pUS28 signaling and migration are unknown.

Methods: In the current study, we examined the involvement of the PTK Pyk2 in pUS28-induced cellular motility. We utilized in vitro migration of SMC to determine the requirements for Pyk2 in pUS28 pro-migratory signaling. We performed biochemical analysis of Pyk2 signaling in response to pUS28 activation to determine the mechanisms involved in pUS28 migration. We performed mass spectrometric analysis of Pyk2 complexes to identify novel Pyk2 binding partners.

Results: Expression of a mutant form of Pyk2 lacking the autophosphorylation site (Tyr-402) blocks pUS28-mediated SMC migration in response to CCL5, while the kinase-inactive Pyk2 mutant failed to elicit the same negative effect on migration. pUS28 stimulation with CCL5 results in ligand-dependent and calcium-dependent phosphorylation of Pyk2 Tyr-402 and induced the formation of an active Pyk2 kinase complex containing several novel Pyk2 binding proteins. Expression of the autophosphorylation null mutant Pyk2 F402Y did not abrogate the formation of an active Pyk2 kinase complex, but instead prevented pUS28-mediated activation of RhoA. Additionally, pUS28 activated RhoA via Pyk2 in the U373 glioblastoma cells. Interestingly, the Pyk2 kinase complex in U373 contained several proteins known to participate in glioma tumorigenesis.

Conclusions: These findings represent the first demonstration that pUS28 signals through Pyk2 and that this PTK participates in pUS28-mediated cellular motility via activation of RhoA. Furthermore, these results provide a potential mechanistic link between HCMV-pUS28 and glioblastoma cell activation.

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