调节b细胞分化:抗mu抗体对细菌脂多糖和8-巯基鸟苷刺激的b细胞分化有相反的作用。

L A Rollins-Smith, A R Lawton
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引用次数: 0

摘要

细胞增殖和分化被独立调控的机制是细胞生物学中最有趣和最复杂的问题之一。细菌脂多糖(LPS)对小鼠B细胞的多克隆活化为研究这些现象提供了一个有用的模型。用高浓度的IgM受体二价抗体处理lps刺激的细胞,使这些正常关联的过程分离,增强增殖,同时抑制分化。最近几个实验室的一致结论表明,IgM受体的调节主要通过阻断通常由LPS触发的转录速率增加而大大降低了mu链和k链的mRNA水平。其他分化相关蛋白的表达,例如J链和内源性逆转录病毒蛋白,也同样下调。mu-delta复合物和其他组成性表达基因(如I类和II类MHC基因)的基础转录不受影响。在这个系统中,抑制分化和增强增殖都依赖于抗mu和LPS的同时存在——细胞用饱和浓度的抗mu处理,清洗,然后在LPS中培养,不受抑制,而细胞在LPS培养前用这两种药物短暂脉冲被抑制。这些观察结果使我们研究了抗mu抗体与另一种有效的多克隆B细胞激活剂8-巯基鸟苷(8SGuo)的相互作用。在本报告中,我们发现抗mu抗体对8SGuo和LPS诱导的b细胞分化具有极性作用。前者诱导的分化被强烈增强,而后者诱导的分化被抑制。LPS和anti-mu共同刺激诱导的信号是显性的,当LPS加入到受8SGuo和anti-mu刺激的细胞中,在96小时培养开始或最晚48小时时,会发生抑制。我们提出的初步证据表明,8SGuo和anti-mu联合刺激引起的b细胞分化增强依赖于培养前24小时释放的可溶性因子。这些结果提供了额外的证据,表明抑制lps驱动的b细胞分化是一个活跃的过程,可能是由反式作用的转录抑制因子介导的。8SGuo和anti-mu相互作用促进b细胞分化的机制尚不清楚。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regulation of B-cell differentiation: anti-mu antibodies have opposite effects on differentiation stimulated by bacterial lipopolysaccharide and 8-mercaptoguanosine.

The mechanisms by which proliferation and differentiation are independently regulated are among the most interesting and complex problems in cell biology. Polyclonal activation of mouse B cells by bacterial lipopolysaccharide (LPS) has served as a useful model for study of these phenomena. Treatment of LPS-stimulated cells with high concentrations of bivalent antibodies to the IgM receptor uncouples these normally linked processes, enhancing proliferation while suppressing differentiation. A consensus summary of recent results from several laboratories suggests that modulation of the IgM receptor greatly reduces mRNA levels for mu and k chains, primarily by blocking the increased rate of transcription usually triggered by LPS. The expression of other differentiation-linked proteins, for example J chain and endogenous retroviral proteins, is similarly downregulated. Basal transcription of the mu-delta complex and other constitutively expressed genes, such as Class I and Class II MHC genes, is not affected. Both suppression of differentiation and enhancement of proliferation in this system depend upon the simultaneous presence of anti-mu and LPS--cells treated with saturating concentrations of anti-mu, washed, and then cultured in LPS are not suppressed, while cells pulsed briefly with both agents before culture with LPS are suppressed. These observations have led us to examine interactions of anti-mu antibody with another potent polyclonal B cell activator, 8-mercaptoguanosine (8SGuo). In this report, we show that anti-mu antibodies have polar effects on B-cell differentiation induced by 8SGuo and LPS. Differentiation induced by the former is strongly enhanced, while that induced by the latter is suppressed. The signal induced by co-stimulation with LPS and anti-mu is dominant, as suppression occurs when LPS is added to cells stimulated with 8SGuo and anti-mu at initiation or as late as 48 hours of a 96-hour culture. We present preliminary evidence that augmented B-cell differentiation caused by combined stimulation with 8SGuo and anti-mu is dependent upon a soluble factor released during the first 24 hours of culture. These results provide additional evidence that suppression of LPS-driven B-cell differentiation is an active process, probably mediated by a trans-acting repressor of transcription. The mechanisms by which 8SGuo and anti-mu interact to enhance B-cell differentiation remain to be determined.

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