Rhodes L D, Paull A T, Sibley C H
Department of Biological Structure, University of Washington, Seattle 98195.
Immunogenetics. 1994;40(3):199-209. doi: 10.1007/BF00167080.
The kappa immunoglobulin (Igk) light chain locus is transcriptionally silent in the mouse B-cell lymphoma 70Z/3. However, exposure to lipopolysaccharide (LPS) or interferon-gamma (IFN) causes a marked increase in Igk transcription. By immunoselection, we isolated two variants that are nonresponsive to IFN. One variant, AT7.2, has retained its response to LPS (IFN-LPS+), whereas the other, AT3.3, is also nonresponsive to LPS (IFN-LPS-). Stable transfection of an intact Igk gene does not rescue the phenotype of either variant. Both variants have intact Igk genes and neither is deficient in the binding or uptake of IFN. Nuclear extracts from LPS-treated wild-type 70Z/3 cells show strong increases in three transcription factors: OTF-2, NF-kappa B, and kBF-A. Remarkably, when the IFN-LPS- variant is treated with LPS, all three transcription factors are still observed in the nuclear extracts. Treatment of wild-type cells with either LPS or IFN also causes a decrease in nuclear complexes that bind to two other regions of the Igk intron enhancer, the octenh and the E kappa MHCIC regions. Both of these changes are also observed after LPS or IFN treatment of the IFN-LPS- variant. Thus, this variant transduces the IFN and LPS signals at least into the nuclear compartment, but still fails to activate Igk transcription. In contrast, the IFN-LPS+ variant decreases neither the octenh nor the E kappa MHCIC binding complexes in response to IFN. This variant may be defective in transducing the IFN signal to the nucleus. These variants will be useful in studying the activation of Igk transcription and the IFN signaling pathway in B cells.
κ免疫球蛋白(Igk)轻链基因座在小鼠B细胞淋巴瘤70Z/3中处于转录沉默状态。然而,暴露于脂多糖(LPS)或干扰素-γ(IFN)会导致Igk转录显著增加。通过免疫筛选,我们分离出两个对IFN无反应的变体。一个变体AT7.2保留了对LPS的反应(IFN-LPS+),而另一个变体AT3.3对LPS也无反应(IFN-LPS-)。完整Igk基因的稳定转染不能挽救任何一个变体的表型。两个变体都有完整的Igk基因,且在IFN的结合或摄取方面均无缺陷。经LPS处理的野生型70Z/3细胞的核提取物显示三种转录因子有强烈增加:OTF-2、NF-κB和kBF-A。值得注意的是,当用LPS处理IFN-LPS-变体时,在核提取物中仍可观察到所有这三种转录因子。用LPS或IFN处理野生型细胞也会导致与Igk内含子增强子的另外两个区域(八聚体增强子和EκMHCIC区域)结合的核复合物减少。在对IFN-LPS-变体进行LPS或IFN处理后也观察到了这两种变化。因此,该变体至少将IFN和LPS信号转导至核区室,但仍未能激活Igk转录。相比之下,IFN-LPS+变体在受到IFN刺激时,八聚体增强子和EκMHCIC结合复合物均未减少。该变体在将IFN信号转导至细胞核方面可能存在缺陷。这些变体将有助于研究B细胞中Igk转录的激活和IFN信号通路。