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Cytokines of birds: conserved functions-a largely different look.

机译:鸟类的细胞因子:保守的功能-相差很大。

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摘要

Targeted disruptions of the mouse genes for cytokines, cytokine receptors, or components of cytokine signaling cascades convincingly revealed the important roles of these molecules in immunologic processes. Cytokines are used at present as drugs to fight chronic microbial infections and cancer in humans, and they are being evaluated as immune response modifiers to improve vaccines. Until recently, only a few avian cytokines have been characterized, and potential applications thus have remained limited to mammals. Classic approaches to identify cytokine genes in birds proved difficult because sequence conservation is generally low. As new technology and high throughput sequencing became available, this situation changed quickly. We review here recent work that led to the identification of genes for the avian homologs of interferon-alpha/beta (IFN-alpha/beta) and IFN-gamma, various interleukins (IL), and several chemokines. From the initial data on the biochemical properties of these molecules, a picture is emerging that shows that avian and mammalian cytokines may perform similar tasks, although their primary structures in most cases are remarkably different.
机译:针对细胞因子,细胞因子受体或细胞因子信号传导级联元件的小鼠基因的靶向破坏令人信服地揭示了这些分子在免疫过程中的重要作用。目前,细胞因子被用作抵抗人类慢性微生物感染和癌症的药物,并且被评估为免疫应答调节剂以改善疫苗。直到最近,仅表征了几种禽细胞因子,因此潜在的应用仍然仅限于哺乳动物。事实证明,鉴定鸟类细胞因子基因的经典方法很困难,因为序列保守性通常较低。随着新技术和高通量测序的出现,这种情况迅速改变。我们在这里回顾了最近的工作,这些工作导致了干扰素-α/β(IFN-α/ beta)和IFN-γ,各种白介素(IL)和几种趋化因子的禽类同源基因的鉴定。从有关这些分子的生化特性的初步数据来看,有一张图片显示禽和哺乳动物细胞因子可能执行相似的任务,尽管在大多数情况下它们的主要结构显着不同。

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