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Baculovirus Caspase Inhibitors P49 and P35 Block Virus-Induced Apoptosis Downstream of Effector Caspase DrICE Activation in Drosophila melanogaster Cells▿

机译:杆状病毒胱天蛋白酶抑制剂P49和P35阻断病毒诱导的果蝇黑素细胞中效应胱天蛋白酶DrICE激活下游的凋亡

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摘要

Baculoviruses induce widespread apoptosis in invertebrates. To better understand the pathways by which these DNA viruses trigger apoptosis, we have used a combination of RNA silencing and overexpression of viral and host apoptotic regulators to identify cell death components in the model system of Drosophila melanogaster. Here we report that the principal effector caspase DrICE is required for baculovirus-induced apoptosis of Drosophila DL-1 cells as demonstrated by RNA silencing. proDrICE was proteolytically cleaved and activated during infection. Activation was blocked by overexpression of the cellular inhibitor-of-apoptosis proteins DIAP1 and SfIAP but not by the baculovirus caspase inhibitor P49 or P35. Rather, the substrate inhibitors P49 and P35 prevented virus-induced apoptosis by arresting active DrICE through formation of stable inhibitory complexes. Consistent with a two-step activation mechanism, proDrICE was cleaved at the large/small subunit junction TETD230-G by a DIAP1-inhibitable, P49/P35-resistant protease and then at the prodomain junction DHTD28-A by a P49/P35-sensitive protease. Confirming that P49 targeted DrICE and not the initiator caspase DRONC, depletion of DrICE by RNA silencing suppressed virus-induced cleavage of P49. Collectively, our findings indicate that whereas DIAP1 functions upstream to block DrICE activation, P49 and P35 act downstream by inhibiting active DrICE. Given that P49 has the potential to inhibit both upstream initiator caspases and downstream effector caspases, we conclude that P49 is a broad-spectrum caspase inhibitor that likely provides a selective advantage to baculoviruses in different cellular backgrounds.
机译:杆状病毒在无脊椎动物中诱导广泛的细胞凋亡。为了更好地了解这些DNA病毒触发凋亡的途径,我们使用了RNA沉默和病毒及宿主细胞凋亡调节剂的过表达组合,以鉴定果蝇果蝇模型系统中的细胞死亡成分。在这里我们报告RNA沉默证明杆状病毒诱导的果蝇DL-1细胞凋亡需要主要的半胱天冬酶DrICE。 proDrICE在感染过程中被蛋白水解切割并激活。激活被细胞凋亡抑制剂蛋白DIAP1和SfIAP的过表达所阻断,但未被杆状病毒胱天蛋白酶抑制剂P49或P35所阻断。相反,底物抑制剂P49和P35通过形成稳定的抑制复合物来阻止活性DrICE,从而阻止了病毒诱导的凋亡。与两步激活机制一致,proDrICE被DIAP1抑制的P49 / P35抗性蛋白酶在TETD230-G的大/小亚基连接处切割,然后被P49 / P35敏感的DHTD28-A在结构域连接处切割。蛋白酶。确认P49靶向DrICE而不是启动子胱天蛋白酶DRONC,RNA沉默导致的DrICE耗竭抑制了病毒诱导的P49裂解。总的来说,我们的发现表明,虽然DIAP1在上游发挥功能以阻止DrICE激活,但P49和P35通过抑制活性DrICE发挥下游作用。鉴于P49具有抑制上游启动子胱天蛋白酶和下游效应子胱天蛋白酶的潜力,我们得出结论,P49是一种广谱半胱天冬酶抑制剂,可能为不同细胞背景下的杆状病毒提供选择性优势。

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