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The role of PKCzeta in cord blood T-cell maturation towards Th1 cytokine profile and its epigenetic regulation by fish oil

机译:pKCzeta在脐血T细胞成熟过程中对Th1细胞因子谱的作用及其对鱼油的表观遗传调控

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摘要

While immunodeficiency of immaturity of the neonate has been considered important as the basis for unusual susceptibility to infection, it has also been recognized that the ability to progress from an immature Th2 cytokine predominance to a Th1 profile has relevance in determining whether children will develop allergy, providing an opportunity for epigenetic regulation through environmental pressures. However, this notion remains relatively unexplored. Here, we present evidence that there are two major control points to explain the immunodeficiency in cord blood (CB) T-cells, a deficiency in interleukin (IL)-12 (IL-12) producing and IL-10 overproducing accessory cells, leading to a decreased interferon γ (IFNγ) synthesis and the other, an intrinsic defect in T-cell protein kinase C (PKC) ζ (PKCζ) expression. An important finding was that human CB T-cells rendered deficient in PKCζ, by shRNA knockdown, develop into low tumour necrosis factor α (TNFα) and IFNγ but increased IL-13 producing cells. Interestingly, we found that the increase in PKCζ levels in CB T-cells caused by prenatal supplementation with fish oil correlated with modifications of histone acetylation at the PKCζ gene (PRKCZ) promoter. The data demonstrate that PKCζ expression regulates the maturation of neonatal T-cells into specific functional phenotypes and that environmental influences may work via PKCζ to regulate these phenotypes and disease susceptibility.
机译:新生儿不成熟的免疫缺陷被认为是引起异常感染的重要基础,但也已经认识到,从未成熟的Th2细胞因子优势发展为Th1谱的能力与确定儿童是否会发展过敏相关,提供通过环境压力进行表观遗传调控的机会。但是,这一概念仍未得到充分探索。在这里,我们提供的证据表明,有两个主要的控制点来解释脐带血(CB)T细胞的免疫缺陷,白细胞介素(IL)-12(IL-12)的产生和IL-10产生的辅助细胞的不足,导致导致干扰素γ(IFNγ)合成减少,另一个是T细胞蛋白激酶C(PKC)ζ(PKCζ)表达的固有缺陷。一个重要的发现是,通过shRNA的敲除使人CB T细胞在PKCζ缺陷中发展为低肿瘤坏死因子α(TNFα)和IFNγ,但增加了产生IL-13的细胞。有趣的是,我们发现由产前补充鱼油引起的CB T细胞PKCζ水平的增加与PKCζ基因(PRKCZ)启动子上组蛋白乙酰化的修饰有关。数据表明,PKCζ表达将新生儿T细胞的成熟调节为特定的功能性表型,环境影响可能通过PKCζ发挥作用,以调节这些表型和疾病易感性。

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