鱼氏爱德华菌T3SS效应体EseJ抑制巨噬细胞PANoptosis。

IF 5.1 1区 生物学 Q1 BIOLOGY
Tian Tian He, Pu Yu Tang, Xiu Long Jiang, Shan Shan Sun, Pin Nie, Hai Xia Xie
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引用次数: 0

摘要

爱德华氏菌T3SS蛋白EseJ具有双重作用。EseJ作为一种调节因子,抑制1型菌毛,抑制FimH刺激的巨噬细胞凋亡。作为一种效应物,它能促进piscicida在宿主细胞中的复制。本研究探讨了EseJ在小鼠巨噬细胞中将凋亡细胞围合转化为热噬细胞破裂的机制。在ΔfimH菌株中过表达EseJ通过使caspase-8和NLRP3炎性体失活来抑制小鼠巨噬细胞的焦亡。这可以通过药物抑制剂z-IETD-fmk(一种caspase-8抑制剂)和MCC950(一种NLRP3抑制剂)的预处理,或通过敲低caspase-8和NLRP3来证明。这一发现支持了EseJ参与抑制焦亡的观点。此外,EseJ易位显著增加TAK1的磷酸化,同时减少坏死下垂,这是由受体相互作用蛋白激酶1 (RIPK1)的激活和混合谱系激酶结构域样(p-MLKL)的磷酸化驱动的。因此,EseJ通过激活TAK1和破坏NLRP3-caspase-8-RIPK1 PANoptosome的形成来抑制PANoptosis(焦亡、凋亡和坏死)。有趣的是,piscicida在EseJ耗尽后会减弱,特别是在感染后的早期阶段。这些发现揭示了piscicida绕过宿主细胞死亡途径,从而增加其毒力的新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
T3SS effector EseJ in Edwardsiella piscicida inhibits PANoptosis in macrophages.

Edwardsiella piscicida T3SS protein EseJ plays a dual role. As a regulator, EseJ suppresses type 1 fimbriae, inhibiting macrophage apoptosis stimulated by FimH. As an effector, it promotes E. piscicida replication in host cells. In this study, the mechanism of EseJ in converting apoptotic cell rounding to pyroptotic cell rupture in murine macrophages was explored. Overexpressing EseJ in the ΔfimH strain suppresses pyroptosis in murine macrophages by deactivating the caspase-8 and NLRP3 inflammasome. This is evidenced by pretreatment with the pharmacological inhibitors z-IETD-fmk (a caspase-8 inhibitor) and MCC950 (an NLRP3 inhibitor), or by knocking down caspase-8 and NLRP3. This finding lends support to the idea that EseJ is involved in the inhibition of pyroptosis. Furthermore, EseJ translocation significantly increased the phosphorylation of TAK1, while reducing necroptosis, which is driven by the activation of receptor-interacting protein kinase 1 (RIPK1) and the phosphorylation of mixed lineage kinase domain-like (p-MLKL). Therefore, EseJ inhibits PANoptosis (pyroptosis, apoptosis and necroptosis) by activating TAK1 and disrupting the formation of the NLRP3-caspase-8-RIPK1 PANoptosome. Interestingly, E. piscicida is attenuated upon EseJ depletion, especially in the early phase after infection. These findings reveal a new way in which E. piscicida circumvents host cell death pathways, thereby increasing its virulence.

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来源期刊
Communications Biology
Communications Biology Medicine-Medicine (miscellaneous)
CiteScore
8.60
自引率
1.70%
发文量
1233
审稿时长
13 weeks
期刊介绍: Communications Biology is an open access journal from Nature Research publishing high-quality research, reviews and commentary in all areas of the biological sciences. Research papers published by the journal represent significant advances bringing new biological insight to a specialized area of research.
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