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Caspase-1-Dependent and -Independent Cell Death Pathways in Burkholderia pseudomallei Infection of Macrophages

机译:巨噬细胞伯克霍尔德菌假mallei感染中胱天蛋白酶1依赖和独立的细胞死亡途径。

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摘要

The cytosolic pathogen Burkholderia pseudomallei and causative agent of melioidosis has been shown to regulate IL-1β and IL-18 production through NOD-like receptor NLRP3 and pyroptosis via NLRC4. Downstream signalling pathways of those receptors and other cell death mechanisms induced during B. pseudomallei infection have not been addressed so far in detail. Furthermore, the role of B. pseudomallei factors in inflammasome activation is still ill defined. In the present study we show that caspase-1 processing and pyroptosis is exclusively dependent on NLRC4, but not on NLRP3 in the early phase of macrophage infection, whereas at later time points caspase-1 activation and cell death is NLRC4- independent. In the early phase we identified an activation pathway involving caspases-9, -7 and PARP downstream of NLRC4 and caspase-1. Analyses of caspase-1/11-deficient infected macrophages revealed a strong induction of apoptosis, which is dependent on activation of apoptotic initiator and effector caspases. The early activation pathway of caspase-1 in macrophages was markedly reduced or completely abolished after infection with a B. pseudomallei flagellin FliC or a T3SS3 BsaU mutant. Studies using cells transfected with the wild-type and mutated T3SS3 effector protein BopE indicated also a role of this protein in caspase-1 processing. A T3SS3 inner rod protein BsaK mutant failed to activate caspase-1, revealed higher intracellular counts, reduced cell death and IL-1β secretion during early but not during late macrophage infection compared to the wild-type. Intranasal infection of BALB/c mice with the BsaK mutant displayed a strongly decreased mortality, lower bacterial loads in organs, and reduced levels of IL-1β, myeloperoxidase and neutrophils in bronchoalveolar lavage fluid. In conclusion, our results indicate a major role for a functional T3SS3 in early NLRC4-mediated caspase-1 activation and pyroptosis and a contribution of late caspase-1-dependent and -independent cell death mechanisms in the pathogenesis of B. pseudomallei infection.
机译:胞质病原体伯氏假单胞菌和类鼻疽病的病因已显示可通过NOD样受体NLRP3调节IL-1β和IL-18的产生,并通过NLRC4调节细胞的凋亡。到目前为止,尚未详细讨论假芽孢杆菌感染期间诱导的那些受体的下游信号传导途径和其他细胞死亡机制。此外,假马来芽孢杆菌因子在炎性体活化中的作用仍不清楚。在本研究中,我们显示caspase-1的加工和热解仅依赖于NLRC4,而在巨噬细胞感染的早期并不依赖于NLRP3,而在较晚的时间点,caspase-1的激活和细胞死亡与NLRC4无关。在早期阶段,我们确定了一个激活途径,涉及NLRC4和caspase-1下游的caspases-9,-7和PARP。对caspase-1 / 11缺陷型感染巨噬细胞的分析显示,细胞凋亡具有较强的诱导作用,这依赖于凋亡引发剂和效应胱天蛋白酶的活化。感染了假芽孢杆菌鞭毛蛋白FliC或T3SS3 BsaU突变体后,巨噬细胞中caspase-1的早期激活途径被明显减少或完全消除。使用野生型和突变的T3SS3效应蛋白BopE转染的细胞进行的研究表明,该蛋白在caspase-1加工中也发挥了作用。与野生型相比,T3SS3内杆蛋白BsaK突变体未能激活caspase-1,在早期但不是晚期巨噬细胞感染期间显示更高的细胞内计数,减少的细胞死亡和IL-1β分泌。 BsaK突变体对BALB / c小鼠的鼻内感染显示死亡率大大降低,器官中细菌含量降低,支气管肺泡灌洗液中的IL-1β,髓过氧化物酶和中性粒细胞水平降低。总之,我们的研究结果表明功能性T3SS3在早期NLRC4介导的caspase-1活化和焦磷酸化中起主要作用,并在拟假芽孢杆菌感染的发病机理中发挥后期caspase-1依赖性和非依赖性细胞死亡机制的作用。

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