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首页> 外文期刊>Cellular microbiology >The Akt/PKB pathway is constitutively activated in Theileria-transformed leucocytes, but does not directly control constitutive NF-kB activation
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The Akt/PKB pathway is constitutively activated in Theileria-transformed leucocytes, but does not directly control constitutive NF-kB activation

机译:Akt / PKB途径在Theileria转化的白细胞中被组成性激活,但不直接控制组成性NF-kB激活

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摘要

The intracellular protozoan parasites Theileria parva and Theileria annulata transform leucocytes by interfering with host cell signal transduction pathways. They differ from tumour cells, however, in that the transformation process can be entirely reversed by elimination of the parasite from the host cell cytoplasm using a specific parasiticidal drug. We investigated the state of activation of Akt/PKB, a downstream target of PI3-K-generated phosphoinositides, in Theileria-transformed leucocytes. Akt/PKB is constitutively activated in a PI3-K- and parasite-dependent manner, as judged by the specific phosphorylation of key residues, in vitro kinase assays and its cellular distribution. In previous work, we demonstrated that the parasite induces constitutive activation of the transcription factor NF-kB, providing protection against spontaneous apoptosis that accompanies transformation. In a number of other systems, a link has been established between the PI3-K-Akt/PKB pathway and NF-kB activation, resulting in protection against apoptosis. In Theileria-transformed leucocytes, activation of the NF-kB and the PI3-K-Akt/PKB pathways are not directly linked. The PI3-K-Akt/PKB pathway does not contribute to the persistent induction of IkBα phosphorylation, NF-kB DNA-binding or transcriptional activity. We show that the two pathways are downregulated with different kinetics when the parasite is eliminated from the host cell cytoplasm and that NF-kB- dependent protection against apoptosis is not dependent on a functional PI3-K-Akt/PKB pathway. We also demonstrate that Akt/PKB contributes, at least in part, to the proliferation of Theileria-transformed T cells.
机译:通过干扰宿主细胞信号转导途径,细胞内的原生动物寄生虫Theleria parva和Theileria annulata转化了白细胞。它们与肿瘤细胞不同,但是,通过使用特定的杀寄生虫药物从宿主细胞的细胞质中消除寄生虫,可以完全逆转转化过程。我们调查了在泰勒虫转化的白细胞中Akt / PKB(PI3-K生成的磷酸肌醇的下游靶标)的激活状态。通过关键残基的特异性磷酸化,体外激酶测定及其细胞分布来判断,Akt / PKB以PI3-K和寄生虫依赖性方式组成性激活。在以前的工作中,我们证明了该寄生虫诱导了转录因子NF-kB的组成型激活,从而保护了转化过程中自发的细胞凋亡。在许多其他系统中,已经在PI3-K-Akt / PKB途径与NF-kB活化之间建立了联系,从而防止了细胞凋亡。在经Theileria转化的白细胞中,NF-kB的激活和PI3-K-Akt / PKB途径的激活并不直接相关。 PI3-K-Akt / PKB途径不会持续诱导IkBα磷酸化,NF-kB DNA结合或转录活性。我们显示当从宿主细胞的细胞质中清除寄生虫时,这两种途径被不同的动力学下调,并且针对凋亡的NF-kB依赖性保护不依赖于功能性的PI3-K-Akt / PKB途径。我们还证明,Akt / PKB至少部分参与了Theileria转化T细胞的增殖。

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