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B淋巴瘤70Z/3的慢反应变体,在脂多糖激活核因子κB方面存在缺陷。

Slow response variant of the B lymphoma 70Z/3 defective in LPS activation of NF-kappa B.

作者信息

Rooney J W, Emery D W, Sibley C H

机构信息

Department of Genetics SK-50, University of Washington, Seattle 98195.

出版信息

Immunogenetics. 1990;31(2):65-72. doi: 10.1007/BF00661215.

Abstract

The mouse B cell lymphoma 70Z/3 is membrane immunoglobulin M (mIgM) negative, but treatment of the cells with bacterial lipopolysaccharide (LPS) induces the expression of kappa (kappa) light chain synthesis, and the cells become mIgM+. In wild type cells, this reaction is maximal after 24 h; we have isolated a variant, 1B8, which becomes mIgM+ only after a more prolonged incubation with LPS. This delayed response results from a reduced rate of accumulation of (kappa) mRNA and protein. The transcription factor, NF-kappa B is present in the cytoplasm of both the wild type and the variant cells in its inactive form. The delay in kappa expression is correlated with the failure of NF-kappa B to be activated and translocated to the nucleus. Although NF-kappa B cannot be activated by LPS, it can be activated by treatment with phorbol ester (PMA). In contrast to the clear defect in NF-kappa B, LPS treatment of 1B8 cells causes the octamer-binding factor OTF-2 to increase normally. We conclude that the defect in 1B8 cells is in an early part of the LPS activation pathway, prior to the activation of NF-kappa B, but after the signal for OTF-2 induction. The phenotype of 1B8 demonstrates that an increase in OTF-2 alone is sufficient to cause a large increase in kappa transcription in 70Z/3 cells, but that without NF-kappa B, the response is slow to develop. In this view, NF-kappa B functions to facilitate kappa transcription and to speed its rate of increase, but is not required for the long-term response of 70Z/3 cells to LPS.

摘要

小鼠B细胞淋巴瘤70Z/3细胞膜免疫球蛋白M(mIgM)呈阴性,但用细菌脂多糖(LPS)处理这些细胞可诱导κ轻链合成的表达,细胞变为mIgM阳性。在野生型细胞中,这种反应在24小时后达到最大值;我们分离出了一个变体1B8,它只有在与LPS进行更长时间的孵育后才变为mIgM阳性。这种延迟反应是由于κmRNA和蛋白质的积累速率降低所致。转录因子NF-κB以无活性形式存在于野生型和变体细胞的细胞质中。κ表达的延迟与NF-κB未能被激活并转运到细胞核有关。尽管NF-κB不能被LPS激活,但它可以被佛波酯(PMA)处理激活。与NF-κB的明显缺陷形成对比的是,用LPS处理1B8细胞会使八聚体结合因子OTF-2正常增加。我们得出结论,1B8细胞的缺陷在于LPS激活途径的早期,在NF-κB激活之前,但在OTF-2诱导信号之后。1B8的表型表明,单独OTF-2的增加足以导致70Z/3细胞中κ转录大幅增加,但没有NF-κB时,反应发展缓慢。从这个角度来看,NF-κB的作用是促进κ转录并加快其增加速率,但不是70Z/3细胞对LPS长期反应所必需的。

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