Xu X, Press B, Wagle N M, Cho H, Wandinger-Ness A, Pierce S K
Department of Biochemistry, Molecular Biology and Cell Biology, Northwestern University, Evanston, IL 60208, USA.
Int Immunol. 1996 Dec;8(12):1867-76. doi: 10.1093/intimm/8.12.1867.
In B cells, processing of antigens in the context of MHC class II molecules is initiated by the binding of antigen to the B cell antigen receptor (BCR). BCR-mediated processing is highly efficient, as a consequence of the BCR's linked roles of delivering antigen to the class II peptide-loading compartment and of signaling for increased antigen-processing activity. Evidence is emerging that receptor signaling regulates intracellular transport through the activities of kinases. These in turn have been implicated in the regulation of small mol. wt GTPases which govern membrane transport. Therefore, we investigated the changes in the phosphoprotein and GTPase profiles associated with the class II peptide-loading compartment following BCR cross-linking. We first show that protein kinase inhibitors, known to block BCR signal transduction, inhibit BCR-enhanced antigen processing, demonstrating the critical dependence of enhanced processing on the signaling activity of the BCR. Consistent with this observation, the phosphoprotein profile of the class II peptide-loading compartment underwent rapid and transient changes following BCR cross-linking. We also observed a marked increase in the low mol. wt GTPases associated with the class II peptide-loading compartment within 5 min of BCR cross-linking. The observed changes in both the phosphoprotein and GTPase profiles associated with the peptide-loading compartment were blocked by kinase inhibitors and were not accompanied by overall gross changes in the protein composition of the subcellular compartments. Thus, signal cascades initiated by BCR cross-linking at the plasma membrane are translated into changes in specific subsets of regulatory proteins associated with the peptide-loading compartment.
在B细胞中,抗原在MHC II类分子背景下的加工过程由抗原与B细胞抗原受体(BCR)的结合启动。由于BCR具有将抗原递送至II类肽装载区室以及发出信号以增强抗原加工活性的双重作用,BCR介导的加工过程非常高效。越来越多的证据表明,受体信号传导通过激酶的活性调节细胞内运输。这些激酶又与调控膜运输的小分子GTP酶的调节有关。因此,我们研究了BCR交联后与II类肽装载区室相关的磷蛋白和GTP酶谱的变化。我们首先表明,已知能阻断BCR信号转导的蛋白激酶抑制剂可抑制BCR增强的抗原加工,这表明增强的加工过程对BCR的信号活性至关重要。与这一观察结果一致,BCR交联后,II类肽装载区室的磷蛋白谱发生了快速且短暂的变化。我们还观察到,BCR交联后5分钟内,与II类肽装载区室相关的低分子量GTP酶显著增加。与肽装载区室相关的磷蛋白和GTP酶谱的观察变化被激酶抑制剂阻断,且亚细胞区室的蛋白质组成并未发生总体上的明显变化。因此,质膜上BCR交联引发的信号级联反应转化为与肽装载区室相关的特定调节蛋白亚群的变化。