Wang M, Corlin D B, Heegaard N H H, Claesson M H, Nissen M H
Laboratory of Cellular Immunology, Department of International Health, Immunology and Microbiology, The Panum Institute, University of Copenhagen, Copenhagen, Denmark.
Scand J Immunol. 2008 Feb;67(2):105-12. doi: 10.1111/j.1365-3083.2007.02044.x. Epub 2007 Dec 7.
The monoclonal antibody 332-01 is a newly developed antibody which specifically recognizes human desLys58-beta2 microglobulin (dbeta2m). In the present study, we characterized the binding of 332-01 to peripheral blood mononuclear cells (PBMC), a number of human leukaemic and monocytic cell lines, and beta2m gene-deleted murine lymphocytes. dbeta2m was found to be expressed on non-activated and activated monocytes. When cells were pre-exposed to dbeta2m, 332-01 also bound to non-activated T lymphocytes. dbeta2m was expressed on the monocytic cell lines U937 and TIB-202, and binding was significantly increased when cells were pre-incubated with dbeta2m and when TIB-202 cells were exposed to lipopolysaccharide. dbeta2m was also expressed on T leukaemic Jurkat cells as well as on low HLA-expressing erythroleukaemic K562 cells. beta2m gene-deleted murine splenocytes only bound 332-01 after pre-exposure to dbeta2m. Binding of 332-01 antibody could not be displaced by addition of high concentrations of native beta2m. In conclusion, our data indicate that dbeta2m - in contrast to native beta2m - binds to a hitherto unknown cell surface receptor independent of classical MHC class I molecules. As beta2m has previously been shown to display biological activities such as the induction of both growth promotion and apoptosis, C1 complement activity, shown to mediate cleavage of beta2m, could be involved in these processes.
单克隆抗体332 - 01是一种新开发的抗体,它能特异性识别人类去赖氨酸58 - β2微球蛋白(dbeta2m)。在本研究中,我们对332 - 01与外周血单核细胞(PBMC)、多种人类白血病和单核细胞系以及β2m基因缺失的小鼠淋巴细胞的结合特性进行了表征。发现dbeta2m在未活化和活化的单核细胞上均有表达。当细胞预先暴露于dbeta2m时,332 - 01也能与未活化的T淋巴细胞结合。dbeta2m在单核细胞系U937和TIB - 202上表达,当细胞与dbeta2m预孵育以及TIB - 202细胞暴露于脂多糖时,结合显著增加。dbeta2m也在T白血病Jurkat细胞以及低表达HLA的红白血病K562细胞上表达。β2m基因缺失的小鼠脾细胞只有在预先暴露于dbeta2m后才会与332 - 01结合。添加高浓度的天然β2m不能取代332 - 01抗体的结合。总之,我们的数据表明,与天然β2m不同,dbeta2m与一种迄今未知的细胞表面受体结合,且不依赖于经典的MHC I类分子。由于先前已证明β2m具有诸如促进生长和诱导凋亡等生物学活性,显示能介导β2m裂解的C1补体活性可能参与了这些过程。