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Axl Promotes Zika Virus Entry and Modulates the Antiviral State of Human Sertoli Cells

机译:Axl促进寨卡病毒进入并调节人类支持细胞的抗病毒状态

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Recent Zika virus (ZIKV) outbreaks have identified sexual transmission as a new route of disease spread not reported for other flaviviruses. ZIKV crosses the blood-testis barrier and establishes infection in seminiferous tubules, the site for spermatozoa development. Currently, there are no therapies to treat ZIKV infection, and the immune mechanisms underlying testicular persistence are unclear. We found that multiple human testicular cell types, except Leydig cells, support ZIKV infection. Axl receptor, which plays a pivotal role in maintaining the immunosuppressive milieu of the testis, is highly expressed in Sertoli cells and augments ZIKV infection by promoting virus entry and negatively regulating the antiviral state. By using testicular organoids, we further describe the antiviral role of Axl inhibition. The significance of our research lies in defining cross talk between Axl and type I interferon signaling as an essential mechanism of immune control that can inform therapeutic efforts to clear ZIKV from the testis. ABSTRACT Zika virus (ZIKV) is unique among mosquito-borne flaviviruses in its ability to be sexually transmitted. Persistent ZIKV infection in the testes, which are immune privileged organs, long after peripheral clearance suggests involvement of immunosuppressive pathways; however, the underlying mechanisms remain undetermined. We recently demonstrated that ZIKV infects human Sertoli cells (SC), the major cell type of the seminiferous epithelium responsible for maintaining the immune privileged compartment of seminiferous tubules. Recent reports have identified the TAM (Tyro3, Axl, Mer) receptor tyrosine kinase Axl as an entry receptor and/or immune modulator for ZIKV in a cell type-specific manner. Interestingly, the seminiferous epithelium exhibits high basal expression of the Axl receptor where it is involved in clearance of apoptotic germ cells and immunosuppression. Here, we show that Axl was highly expressed in SC compared to Leydig cells (LC) that correlated with robust ZIKV infection of SC, but not LC. Further, neutralization of Axl receptor and its ligand Gas6 strongly attenuated virus entry in SC. However, inhibition of Axl kinase did not affect ZIKV entry but instead led to decreased protein levels of suppressor of cytokine signaling 1 (SOCS1) and SOCS3, increased expression of interferon-stimulated genes (ISGs), and reduced ZIKV replication. Similarly, treatment of multicellular human testicular organoids with an Axl kinase inhibitor attenuated ZIKV replication and increased ISG expression. Together, our data demonstrate that Axl promotes ZIKV entry and negatively regulates the antiviral state of SC to augment ZIKV infection of the testes and provides new insights into testis antiviral immunity and ZIKV persistence.
机译:最近的寨卡病毒(ZIKV)爆发已确定性传播为其他黄病毒未报告的新疾病传播途径。 ZIKV穿过血液-睾丸屏障,并在生精小管(精子发育的部位)中建立感染。目前,尚无用于治疗ZIKV感染的疗法,并且睾丸持续存在的免疫机制尚不清楚。我们发现除Leydig细胞外,多种人类睾丸细胞类型均支持ZIKV感染。 Axl受体在维持睾丸的免疫抑制环境中起关键作用,在Sertoli细胞中高度表达,并通过促进病毒进入和负调节抗病毒状态而增加ZIKV感染。通过使用睾丸类器官,我们进一步描述了Axl抑制的抗病毒作用。我们研究的意义在于将Axl与I型干扰素信号转导之间的串扰定义为免疫控制的重要机制,该机制可为从睾丸清除ZIKV的治疗工作提供信息。摘要Zika病毒(ZIKV)在蚊子传播的黄病毒中具有独特的性传播能力。外周清除后很长一段时间,持久性ZIKV感染是睾丸(属于免疫特权的器官),提示存在免疫抑制途径。但是,其潜在机制仍然不确定。我们最近证明ZIKV感染人类的​​Sertoli细胞(SC),这是生精上皮细胞的主要细胞类型,负责维持生精小管的免疫特权区室。最近的报道已经鉴定出TAM(Tyro3,Axl,Mer)受体酪氨酸激酶Axl以细胞类型特异性方式作为ZIKV的进入受体和/或免疫调节剂。有趣的是,生精上皮表现出Axl受体的高基础表达,它参与凋亡性生殖细胞的清除和免疫抑制。在这里,我们显示,与Leydig细胞(LC)相比,Axl在SC中高度表达,而Leydig细胞(SC)与SC的强劲ZIKV感染相关,但与LC没有相关性。此外,Axl受体及其配体Gas6的中和作用大大减弱了SC中的病毒进入。但是,抑制Axl激酶并不影响ZIKV进入,而是导致细胞因子信号传导抑制因子1(SOCS1)和SOCS3的蛋白水平降低,干扰素刺激基因(ISGs)的表达增加,并且ZIKV复制减少。同样,用Axl激酶抑制剂治疗多细胞人睾丸类器官会减弱ZIKV复制并增加ISG表达。在一起,我们的数据表明Axl促进ZIKV进入并负面调节SC的抗病毒状态,以增加睾丸的ZIKV感染,并提供了对睾丸抗病毒免疫力和ZIKV持久性的新见解。

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