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Characterization of the murine alpha interferon gene family.

机译:特征的小鼠α干扰素基因家族。

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Mouse and human genomes carry more than a dozen genes coding for closely related alpha interferon (IFN-alpha) subtypes. IFN-alpha, as well as IFN-beta, IFN-kappa, IFN-epsilon, and limitin, are thought to bind the same receptor, raising the question of whether different IFN subtypes possess specific functions. As some confusion existed in the identity and characteristics of mouse IFN-alpha subtypes, the availability of data from the mouse genome sequence prompted us to characterize the murine IFN-alpha family. A total of 14 IFN-alpha genes were detected in the mouse genome, in addition to three IFN-alpha pseudogenes. Four IFN-alpha genes (IFN-alpha1, IFN-alpha7/10, IFN-alpha8/6, and IFN-alpha11) exhibited surprising allelic divergence between 129/Sv and C57BL/6 mice. All IFN-alpha subtypes were found to be stable at pH 2 and to exhibit antiviral activity. Interestingly, some IFN subtypes (IFN-alpha4, IFN-alpha11, IFN-alpha12, IFN-beta, and limitin) showed higher biological activity levels than others, whereas IFN-alpha7/10 exhibited lower activity. Most murine IFN-alpha turned out to be N-glycosylated. However, no correlation was found between N-glycosylation and activity. The various IFN-alpha subtypes displayed a good correlation between their antiviral and antiproliferative potencies, suggesting that IFN-alpha subtypes did not diverge primarily to acquire specific biological activities but probably evolved to acquire specific expression patterns. In L929 cells, IFN genes activated in response to poly(I*C) transfection or to viral infection were, however, similar.
机译:老鼠和人类基因组携带超过一打α干扰素基因编码密切相关的(IFN-alpha)亚型。IFN-beta、IFN-kappa IFN-epsilon limitin,被认为是相同的受体结合,提高是否不同的干扰素亚型拥有特定功能。中存在的身份和特点鼠标IFN-alpha亚型的可用性老鼠基因组序列的数据提示我们的小鼠IFN-alpha家庭。共有14 IFN-alpha基因被检测到老鼠基因组,除了三个IFN-alpha假基因。IFN-alpha7/10、IFN-alpha8/6 IFN-alpha11)表现出令人惊讶的等位基因之间的分歧129 / Sv和C57BL / 6小鼠。被发现是pH值稳定在2和展览吗抗病毒活性。亚型(IFN-alpha4 IFN-alpha11 IFN-alpha12,IFN-beta和limitin)显示更高的生物比其他的活动水平,而IFN-alpha7/10表现出较低的活动。小鼠IFN-alpha是N-glycosylated。然而,之间不存在相关性N-glycosylation和活动。IFN-alpha亚型显示良好的相关性在他们的抗病毒和抗增殖的效能,这表明IFN-alpha亚型不偏离主要是为了获取特定的但可能进化到生物活动获得特定的表达模式。细胞,激活干扰素基因的反应保利(我* C)转染或病毒感染不过,类似的。

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