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Modulation of Feline Immunodeficiency Virus Infection by Stromal Cell-Derived Factor

机译:基质细胞衍生因子调节猫免疫缺陷病毒感染。

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摘要

The α-chemokine receptor CXCR4 has recently been shown to support syncytium formation mediated by strains of feline immunodeficiency virus (FIV) that have been selected for growth in the Crandell feline kidney cell line (CrFK-tropic virus). Given that both human and feline CXCR4 support syncytium formation mediated by FIV, we investigated whether human stromal cell-derived factor (SDF-1) would inhibit infection with FIV. Human SDF-1α and SDF-1β bound with a high affinity (KDs of 12.0 and 10.4 nM, respectively) to human cells stably expressing feline CXCR4, and treatment of CrFK cells with human SDF-1α resulted in a dose-dependent inhibition of infection by FIVPET. No inhibitory activity was detected when the interleukin-2 (IL-2)-dependent feline T-cell line Mya-1 was used in place of CrFK cells, suggesting the existence of a CXCR4-independent mechanism of infection. Furthermore, neither the human β-chemokines RANTES, MIP-1α, MIP-1β, and MCP-1 nor the α-chemokine IL-8 had an effect on infection of either CrFK or Mya-1 cells with CrFK-tropic virus. Envelope glycoprotein purified from CrFK-tropic virus competed specifically for binding of SDF-1α to feline CXCR4 and CXCR4 expression was reduced in FIV-infected cells, suggesting that the inhibitory activity of SDF-1α in CrFK cells may be the result of steric hindrance of the virus-receptor interaction following the interaction between SDF and CXCR4. Prolonged incubation of CrFK cells with SDF-1α led to an enhancement rather than an inhibition of infection. Flow cytometric analysis revealed that this effect may be due largely to up-regulation of CXCR4 expression by SDF-1α on CrFK cells, an effect mimicked by treatment of the cells with phorbol myristate acetate. The data suggest that infection of feline cells with FIV can be mediated by CXCR4 and that, depending on the assay conditions, infection can be either inhibited or enhanced by SDF-1α. Infection with FIV may therefore prove a valuable model in which to study the development of novel therapeutic interventions for the treatment of AIDS.
机译:最近显示,α-趋化因子受体CXCR4支持由猫免疫缺陷病毒(FIV)株介导的合胞体形成,该株已选择在Crandell猫肾细胞系(CrFK-嗜性病毒)中生长。鉴于人类和猫CXCR4均支持FIV介导的合胞体形成,我们研究了人类基质细胞衍生因子(SDF-1)是否会抑制FIV感染。人SDF-1α和SDF-1β与稳定表达猫CXCR4的人细胞具有高亲和力(KD分别为12.0和10.4 nM),并且用人SDF-1α处理CrFK细胞导致剂量依赖性感染抑制由FIVPET。当使用白介素2(IL-2)依赖性的猫T细胞系Mya-1代替CrFK细胞时,未检测到抑制活性,表明存在不依赖CXCR4的感染机制。此外,人β趋化因子RANTES,MIP-1α,MIP-1β和MCP-1或α趋化因子IL-8都不对CrFK嗜性病毒感染CrFK或Mya-1细胞。从CrFK嗜性病毒纯化的包膜糖蛋白竞争SDF-1α与猫CXCR4的结合,FIV感染细胞中CXCR4的表达降低,提示SDF-1α对CrFK细胞的抑制活性可能是其空间障碍的结果。 SDF和CXCR4之间相互作用之后的病毒-受体相互作用。 CrFK细胞与SDF-1α的长时间孵育导致感染的增强而不是抑制。流式细胞仪分析表明,这种作用可能主要归因于SDF-1α对CrFK细胞的CXCR4表达上调,这种作用可以通过用佛波肉豆蔻酸酯乙酸盐处理细胞来模仿。数据表明,猫感染FIV的细胞可以通过CXCR4介导,并且取决于检测条件,感染可以被SDF-1α抑制或增强。因此,FIV感染可能证明是一种有价值的模型,可用于研究开发治疗艾滋病的新型治疗性干预措施。

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