Drake James R
Department of Immunology and Microbial Disease, Albany Medical College, Albany, NY 12208
Immunohorizons. 2019 Jan 18;3(1):28-36. doi: 10.4049/immunohorizons.1800078.
In addition to functioning as a ligand to engage TCRs and drive TCR signaling, MHC class II molecules are signaling molecules that generate a number of signals within APCs, such as B lymphocytes. Moreover, MHC class II signaling is critical for B cell activation and development of a robust humoral immune response. Murine class II molecules exist in two distinct conformational states, based primarily on the differential pairing of transmembrane domain GxxxG dimerization motifs (i.e., M1- and M2-paired class II). This laboratory has previously reported that the binding of a multimerized form of an anti-class II mAb that selectively recognizes M1-paired I-A class II drives intracellular calcium signaling in resting murine B cells and that this signaling is dependent on both src and Syk protein tyrosine kinase activity. In contrast, multimerized forms of two different anti-I-A mAbs that bind both M1- and M2-paired class II fail to elicit a response. In this report, a flow cytometry-based calcium flux assay is used to demonstrate that coligation of M1- and M2-paired I-A class II results in the active and selective inhibition of M1-paired I-A class II B cell calcium signaling by M2-paired class II molecules. Because M1- and M2-paired class II can be loaded with different sets of peptides derived from Ags acquired by distinct pathways of endocytosis, these findings suggest an MHC class II signaling-based mechanism by which CD4 T cells of differing specificities can either enhance or suppress B cell activation.
除了作为配体与TCR结合并驱动TCR信号传导外,MHC II类分子还是信号分子,可在诸如B淋巴细胞等抗原呈递细胞(APC)内产生多种信号。此外,MHC II类信号传导对于B细胞活化和强大的体液免疫反应的发展至关重要。小鼠II类分子以两种不同的构象状态存在,主要基于跨膜结构域GxxxG二聚化基序的差异配对(即M1和M2配对的II类分子)。本实验室先前报道,一种选择性识别M1配对的I-A II类分子的抗II类单克隆抗体的多聚体形式的结合可驱动静息小鼠B细胞内的钙信号传导,并且该信号传导依赖于src和Syk蛋白酪氨酸激酶活性。相反,两种结合M1和M2配对的II类分子的不同抗I-A单克隆抗体的多聚体形式未能引发反应。在本报告中,基于流式细胞术的钙流测定法用于证明M1和M2配对的I-A II类分子的共连接导致M2配对的II类分子对M1配对的I-A II类分子B细胞钙信号传导的主动和选择性抑制。由于M1和M2配对的II类分子可以负载通过不同内吞途径获得的抗原衍生的不同肽组,这些发现提示了一种基于MHC II类信号传导的机制,通过该机制不同特异性的CD4 T细胞可以增强或抑制B细胞活化。