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A激酶锚定蛋白(AKAPs)竞争性肽HT31破坏蛋白激酶A(PKA)对RhoA活性的抑制作用。

AKAPs competing peptide HT31 disrupts the inhibitory effect of PKA on RhoA activity.

作者信息

Wang Ying, Chen Yongchang, Chen Min, Xu Wenrong

机构信息

School of Medicine, Jiangu University, Jiangu Province 212001, P.R. China.

出版信息

Oncol Rep. 2006 Oct;16(4):755-61.

Abstract

A-kinase can inhibit RhoA activation through phosphorylating ser188 of RhoA. AKAP is a novel protein that can target PKA to different subcellular compartment. Evidence has been presented that PKA anchorage by AKAP is important for the kinase to exert its function. This study analyzed the role of PKA anchorage in PKA-induced antagonism against RhoA activity and function. The cells transfected with pcDNA HT31wt/mut were treated with LPA and/or CPT-cAMP. The amount of GTP-RhoA and phosphorylation of RhoA was detected by Western blotting with specific antibodies. The formation of stress fiber was visualized under fluorescent microscope. The gene expression activity was analyzed by luciferase reporter gene assay. The motility and the anchorage-independent growth assays were carried out with stably transfected cells expressing the AKAP inhibitory peptide HT31. The results showed that HT31 not only blocked the PKA-induced phosphorylation of RhoA but also prevented the PKA-induced inhibition on RhoA activation. The disruption of PKA anchorage abolished its inhibition on the LPA-induced expression of reporter gene SRE-luciferase. The ability of PKA to antagonize the LPA-induced stress fiber formation was partly impaired upon the disruption of the PKA anchorage. The control of PKA on migration and the proliferation excited by LPA disappeared in stably transfected cells highly expressing HT31. The results revealed that PKA anchorage was necessary for the kinase to exert its inhibitory effect on RhoA activation and RhoA-dependent biological activities.

摘要

A激酶可通过磷酸化RhoA的丝氨酸188来抑制RhoA的激活。A激酶锚定蛋白(AKAP)是一种能将蛋白激酶A(PKA)靶向到不同亚细胞区室的新型蛋白质。已有证据表明,AKAP对PKA的锚定作用对于该激酶发挥其功能很重要。本研究分析了PKA锚定在PKA诱导的对RhoA活性和功能的拮抗作用中的作用。用脂质磷酸酶A(LPA)和/或环磷腺苷-磷酸(CPT-cAMP)处理转染了pcDNA HT31野生型/突变型的细胞。用特异性抗体通过蛋白质免疫印迹法检测GTP-RhoA的量和RhoA的磷酸化情况。在荧光显微镜下观察应力纤维的形成。通过荧光素酶报告基因测定法分析基因表达活性。对稳定转染表达AKAP抑制肽HT31的细胞进行迁移和非锚定依赖性生长测定。结果表明,HT31不仅阻断了PKA诱导的RhoA磷酸化,还阻止了PKA诱导的对RhoA激活的抑制作用。PKA锚定的破坏消除了其对LPA诱导的报告基因SRE-荧光素酶表达的抑制作用。PKA锚定破坏后,PKA拮抗LPA诱导的应力纤维形成的能力部分受损。在高表达HT31的稳定转染细胞中,PKA对LPA刺激的迁移和增殖的控制作用消失。结果表明,PKA锚定对于该激酶发挥对RhoA激活和RhoA依赖性生物学活性的抑制作用是必要的。

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