Oellerich Thomas, Grønborg Mads, Neumann Konstantin, Hsiao He-Hsuan, Urlaub Henning, Wienands Jürgen
Institute of Cellular and Molecular Immunology, Georg August University of Göttingen, Göttingen, Germany.
Mol Cell Proteomics. 2009 Jul;8(7):1738-50. doi: 10.1074/mcp.M800567-MCP200. Epub 2009 Apr 16.
Understanding intracellular signal transduction by cell surface receptors requires information about the precise order of relevant modifications on the early transducer elements. Here we introduce the B cell line DT40 and its genetically engineered variants as a model system to determine and functionally characterize post-translational protein modifications in general. This is accomplished by a customized strategy that combines mass spectrometric analyses of protein modifications with subsequent mutational studies. When applied to the B cell receptor (BCR)-proximal effector SLP-65, this approach uncovered a differential and highly dynamic engagement of numerous newly identified phospho-acceptor sites. Some of them serve as kinase substrates in resting cells and undergo rapid dephosphorylation upon BCR ligation. Stimulation-induced phosphorylation of SLP-65 can be early and transient, or early and sustained, or late. Functional elucidation of conspicuous phosphorylation at serine 170 in SLP-65 revealed a BCR-distal checkpoint for some but not all possible B cell responses. Our data show that SLP-65 phosphorylation acts upstream for signal initiation and also downstream during selective processing of the BCR signal. Such a phenomenon defines a receptor-specific signal integrator.
要理解细胞表面受体介导的细胞内信号转导,需要了解早期转导元件上相关修饰的精确顺序。在此,我们引入B细胞系DT40及其基因工程变体作为一个模型系统,以全面确定翻译后蛋白质修饰并对其进行功能表征。这是通过一种定制策略实现的,该策略将蛋白质修饰的质谱分析与后续的突变研究相结合。当应用于B细胞受体(BCR)近端效应器SLP-65时,这种方法揭示了许多新鉴定的磷酸化位点的差异性和高度动态的参与情况。其中一些位点在静息细胞中作为激酶底物,在BCR连接后迅速去磷酸化。刺激诱导的SLP-65磷酸化可以是早期且短暂的,或早期且持续的,或晚期的。对SLP-65中丝氨酸170处显著磷酸化的功能阐释揭示了一些但并非所有可能的B细胞反应的BCR远端检查点。我们的数据表明,SLP-65磷酸化在信号启动的上游起作用,在BCR信号的选择性处理过程中也在下游起作用。这种现象定义了一种受体特异性信号整合器。