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The human parasite Leishmania amazonensis downregulates iNOS expression via NF-κB p50/p50 homodimer: role of the PI3K/Akt pathway

机译:人类寄生虫亚马逊利什曼原虫通过NF-κBp50 / p50同型二聚体下调iNOS表达:PI3K / Akt途径的作用

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摘要

Leishmania amazonensis activates the NF-κB transcriptional repressor homodimer (p50/p50) and promotes nitric oxide synthase (iNOS) downregulation. We investigated the role of PI3K/Akt in p50/p50 NF-κB activation and the effect on iNOS expression in L. amazonensis infection. The increased occupancy of p50/p50 on the iNOS promoter of infected macrophages was observed and we demonstrated that both p50/p50 NF-κB induction and iNOS downregulation in infected macrophages depended on PI3K/Akt activation. Importantly, the intracellular growth of the parasite was also impaired during PI3K/Akt signalling inhibition and in macrophages knocked-down for Akt 1 expression. It was also observed that the increased nuclear levels of p50/p50 in L. amazonensis-infected macrophages were associated with reduced phosphorylation of 907 Ser p105, the precursor of p50. Corroborating these data, we demonstrated the increased levels of phospho-9 Ser GSK3β in infected macrophages, which is associated with GSK3β inhibition and, consequently, its inability to phosphorylate p105. Remarkably, we found that the levels of pPTEN 370 Ser, a negative regulator of PI3K, increased due to L. amazonensis infection. Our data support the notion that PI3K/Akt activity is sustained during the parasite infection, leading to NF-κB 105 phosphorylation and further processing to originate p50/p50 homodimers and the consequent downregulation of iNOS expression.
机译:亚马逊利什曼原虫激活NF-κB转录阻遏物同源二聚体(p50 / p50),并促进一氧化氮合酶(iNOS)下调。我们调查了PI3K / Akt在p50 / p50NF-κB活化中的作用以及对亚马逊L.感染中iNOS表达的影响。观察到感染的巨噬细胞的iNOS启动子上p50 / p50的占用增加,并且我们证明感染的巨噬细胞中的p50 / p50NF-κB诱导和iNOS下调均取决于PI3K / Akt的激活。重要的是,在PI3K / Akt信号传导抑制期间以及在敲除Akt 1表达的巨噬细胞中,寄生虫的细胞内生长也受到损害。还观察到,被亚马逊菌感染的巨噬细胞中p50 / p50的核水平升高与p50前体907 Ser p105的磷酸化降低有关。证实了这些数据,我们证明了感染的巨噬细胞中磷酸9 SerGSK3β的水平增加,这与GSK3β的抑制作用有关,因此,它不能使p105磷酸化。值得注意的是,我们发现PI3K的负调节剂pPTEN 370 Ser的水平由于亚马逊乳杆菌的感染而增加。我们的数据支持以下观点:PI3K / Akt活性在寄生虫感染期间持续存在,导致NF-κB105磷酸化并进一步加工以产生p50 / p50同型二聚体,并因此下调iNOS表达。

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