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通过易发生耐受的未成熟小鼠B淋巴细胞表面IgM进行信号传导。成年和新生小鼠脾脏B细胞跨膜信号传导中受发育调节的差异。

Signaling through surface IgM in tolerance-susceptible immature murine B lymphocytes. Developmentally regulated differences in transmembrane signaling in splenic B cells from adult and neonatal mice.

作者信息

Yellen A J, Glenn W, Sukhatme V P, Cao X M, Monroe J G

机构信息

Department of Pathology and Laboratory Medicine, University of Pennsylvania School of Medicine, Philadelphia 19104.

出版信息

J Immunol. 1991 Mar 1;146(5):1446-54.

PMID:1847161
Abstract

During the course of B lymphocyte development, newly emerging surface Ig+ B cells pass through a stage when Ag-Ag receptor interactions lead not to immune responsiveness but to a state of functional tolerance. We have explored the molecular basis of antigenic nonresponsiveness and tolerance susceptibility using tolerance-susceptible surface Ig+ splenic B lymphocytes from neonatal mice and anti-mu chain antibodies as a polyclonal ligand. In this population of cells, surface IgM is uncoupled from the inositol phospholipid (PI)-hydrolysis pathway at a point proximal to the receptor; anti-mu antibodies did not stimulate inositol phosphate generation despite the fact that PI-hydrolysis was observed after treatment with A1F4, implicating the existence of a functional G protein and phospholipase C. Further evidence for a difference early in the signal transduction pathway stems from the finding that anti-mu stimulation does not induce the expression of two immediate/early PKC-linked genes egr-1 and c-fos. This appears to be the primary signaling difference between the mature and immature B cells from the neonatal mouse splenic population, as these cells undergo a G0-G1 cell cycle phase transition when surface IgM is bypassed using phorbol diester and calcium ionophore. Interestingly, despite undetectable levels of PI-hydrolysis, we observed equivalent receptor-mediated changes in intracellular calcium when comparing the immature and mature populations. These results indicate incomplete coupling of surface IgM to the signal transduction machinery operative in mature, immunocompetent B cells and suggests a molecular mechanism accounting for the differential processing of surface IgM signals into activation vs tolerogenic responses observed in these two stages of B cell development.

摘要

在B淋巴细胞发育过程中,新出现的表面Ig⁺ B细胞会经历一个阶段,此时抗原-抗原受体相互作用不会导致免疫反应,而是导致功能耐受状态。我们使用来自新生小鼠的易耐受表面Ig⁺脾B淋巴细胞和抗μ链抗体作为多克隆配体,探索了抗原无反应性和耐受易感性的分子基础。在这群细胞中,表面IgM在受体近端的一点与肌醇磷脂(PI)水解途径解偶联;尽管在用AlF₄处理后观察到PI水解,但抗μ抗体并未刺激肌醇磷酸生成,这意味着存在功能性G蛋白和磷脂酶C。信号转导途径早期存在差异的进一步证据来自于抗μ刺激不会诱导两个立即/早期PKC相关基因egr-1和c-fos表达的发现。这似乎是新生小鼠脾细胞群体中成熟和未成熟B细胞之间的主要信号差异,因为当使用佛波酯和钙离子载体绕过表面IgM时,这些细胞会经历G₀-G₁细胞周期阶段转换。有趣的是,尽管未检测到PI水解水平,但在比较未成熟和成熟群体时,我们观察到细胞内钙的受体介导变化相当。这些结果表明表面IgM与成熟的、具有免疫活性的B细胞中起作用的信号转导机制不完全偶联,并提示了一种分子机制,解释了在B细胞发育的这两个阶段观察到的表面IgM信号在激活与致耐受反应中的差异处理。

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