首页> 美国卫生研究院文献>Journal of Virology >Ex Vivo and In Vivo Biological Effects of a Truncated Form of the Receptor Tyrosine Kinase Stk When Activated by Interaction with the Friend Spleen Focus-Forming Virus Envelope Glycoprotein or by Point Mutation
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Ex Vivo and In Vivo Biological Effects of a Truncated Form of the Receptor Tyrosine Kinase Stk When Activated by Interaction with the Friend Spleen Focus-Forming Virus Envelope Glycoprotein or by Point Mutation

机译:截短形式的受体酪氨酸激酶Stk通过与朋友脾脏形成聚焦病毒包膜糖蛋白相互作用或点突变激活后的体内和体外生物学效应

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摘要

The erythroleukemia-inducing Friend spleen focus-forming virus (SFFV) encodes a unique envelope protein, gp55, which interacts with the erythropoietin (Epo) receptor complex, causing proliferation and differentiation of erythroid cells in the absence of Epo. Susceptibility to SFFV-induced erythroleukemia is conferred by the Fv-2 gene, which encodes a short form of the receptor tyrosine kinase Stk/Ron (sf-Stk) only in susceptible strains of mice. We recently demonstrated that sf-Stk becomes activated by forming a strong interaction with SFFV gp55. To examine the biological consequences of activated sf-Stk on erythroid cell growth, we prepared retroviral vectors which express sf-Stk, either in conjunction with gp55 or alone in a constitutively activated mutant form, and tested them for their ability to induce Epo-independent erythroid colonies ex vivo and disease in mice. Our data indicate that both gp55-activated sf-Stk and the constitutively activated mutant of sf-Stk induce erythroid cells from Fv-2-susceptible and Fv-2-resistant (sf-Stk null) mice to form Epo-independent colonies. Mutational analysis of sf-Stk indicated that a functional kinase domain and 8 of its 12 tyrosine residues are required for the induction of Epo-independent colonies. Further studies demonstrated that coexpression of SFFV gp55 with sf-Stk significantly extends the half-life of the kinase. When injected into Fv-2-resistant mice, neither the gp55-activated sf-Stk nor the constitutively activated mutant caused erythroleukemia. Surprisingly, both Fv-2-susceptible and -resistant mice injected with the gp55-sf-Stk vector developed clinical signs not previously associated with SFFV-induced disease. We conclude that sf-Stk, activated by either point mutation or interaction with SFFV gp55, is sufficient to induce Epo-independent erythroid colonies from both Fv-2-susceptible and -resistant mice but is unable to cause erythroleukemia in Fv-2-resistant mice.
机译:诱发红白血病的朋友脾脏聚焦形成病毒(SFFV)编码独特的包膜蛋白gp55,该蛋白与促红细胞生成素(Epo)受体复合物相互作用,在没有Epo的情况下引起红系细胞增殖和分化。 Fv-2基因赋予SFFV诱导的红血球白血病易感性,该基因仅在易感小鼠品系中编码受体酪氨酸激酶Stk / Ron(sf-Stk)的短形式。我们最近证明,sf-Stk通过与SFFV gp55形成强烈的相互作用而被激活。为了检查活化的sf-Stk对红系细胞生长的生物学影响,我们制备了与gp55一起或以组成型活化突变体形式单独表达sf-Stk的逆转录病毒载体,并测试了它们诱导Epo独立的能力离体红系集落和小鼠疾病。我们的数据表明,gp55激活的sf-Stk和sf-Stk的组成型激活突变体均诱导了来自Fv-2易感和Fv-2抗性(sf-Stk null)小鼠的类红细胞形成Epo独立的菌落。 sf-Stk的突变分析表明,功能性激酶结构域及其12个酪氨酸残基中的8个是诱导Epo非依赖性菌落所必需的。进一步的研究表明SFFV gp55与sf-Stk的共表达显着延长了激酶的半衰期。当注射入抗Fv-2的小鼠中时,gp55激活的sf-Stk或组成型激活的突变体均不会引起红白血病。出人意料的是,注射了gp55-sf-Stk载体的Fv-2易感小鼠和耐药小鼠均出现了以前与SFFV诱导的疾病无关的临床体征。我们得出结论,通过点突变或与SFFV gp55相互作用激活的sf-Stk足以从Fv-2易感和耐药小鼠中诱导Epo非依赖性红系集落,但不能在Fv-2耐药性中引起红白血病老鼠。

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