Mielenz Dirk, Ruschel Anja, Vettermann Christian, Jäck Hans-Martin
Division of Molecular Immunology, Department of Internal Medicine III, Nikolaus-Fiebiger Center, University of Erlangen-Nürnberg, Erlangen, Germany.
J Immunol. 2003 Sep 15;171(6):3091-101. doi: 10.4049/jimmunol.171.6.3091.
Signals delivered by Ig receptors guide the development of functional B lymphocytes. For example, clonal expansion of early mu heavy chain ( mu HC)-positive pre-B cells requires the assembly of a signal-competent pre-B cell receptor complex (pre-BCR) consisting of a mu HC, a surrogate L chain, and the signal dimer Ig alpha beta. However, only a small fraction of the pre-BCR is transported to the cell surface, suggesting that pre-BCR signaling initiates already from an intracellular compartment, e.g., the endoplasmic reticulum (ER). The finding that differentiation of pre-B cells and allelic exclusion at the IgH locus take place in surrogate L chain-deficient mice further supports the presence of a mu HC-mediated intracellular signal pathway. To determine whether a signal-competent Ig complex can already be assembled in the ER, we analyzed the consequence of pervanadate on tyrosine phosphorylation of Ig alpha in J558L plasmacytoma and 38B9 pre-B cells transfected with either a transport-competent IgL chain-pairing or an ER-retained nonpairing micro HC. Flow cytometry, combined Western blot-immunoprecipitation-kinase assays, and confocal microscopy revealed that both the nonpairing and pairing mu HC assembled with the Ig alpha beta dimer; however, in contrast to a pairing mu HC, the nonpairing mu HC was retained in the ER-cis-Golgi compartment, and neither colocalized with the src kinase lyn nor induced tyrosine phosphorylation of Ig alpha after pervanadate treatment of cells. On the basis of these findings, we propose that a signal-competent Ig complex consisting of mu HC, Ig alpha beta, and associated kinases is assembled in a post-ER compartment, thereby supporting the idea that a pre-BCR must be transported to the cell surface to initiate pre-BCR signaling.
由免疫球蛋白(Ig)受体传递的信号引导功能性B淋巴细胞的发育。例如,早期μ重链(μHC)阳性前B细胞的克隆扩增需要组装一个具有信号传导能力的前B细胞受体复合物(pre-BCR),该复合物由μHC、替代轻链和信号二聚体Igαβ组成。然而,只有一小部分pre-BCR被转运到细胞表面,这表明pre-BCR信号传导已经从细胞内区室(如内质网(ER))开始。前B细胞的分化和IgH基因座的等位基因排斥在替代轻链缺陷小鼠中发生的这一发现进一步支持了μHC介导的细胞内信号通路的存在。为了确定一个具有信号传导能力的Ig复合物是否已经可以在内质网中组装,我们分析了过钒酸盐对J558L浆细胞瘤和转染了具有转运能力的Ig轻链配对或内质网滞留的非配对μHC的38B9前B细胞中Igα酪氨酸磷酸化的影响。流式细胞术、结合的蛋白质免疫印迹-免疫沉淀-激酶分析和共聚焦显微镜显示,非配对和配对的μHC都与Igαβ二聚体组装;然而,与配对的μHC不同,非配对的μHC保留在内质网-顺式高尔基体区室中,在过钒酸盐处理细胞后,既不与src激酶lyn共定位,也不诱导Igα的酪氨酸磷酸化。基于这些发现,我们提出由μHC、Igαβ和相关激酶组成的具有信号传导能力的Ig复合物是在内质网后的区室中组装的,从而支持了pre-BCR必须转运到细胞表面才能启动pre-BCR信号传导的观点。