Department of Biological Chemistry and Molecular Pharmacology, Blavatnik Institute, Harvard Medical School, Boston, United States.
Dana Farber Cancer Institute, Department of Cancer Biology, Boston, United States.
Elife. 2020 Apr 27;9:e52337. doi: 10.7554/eLife.52337.
CD81 and its binding partner CD19 are core subunits of the B cell co-receptor complex. While CD19 belongs to the extensively studied Ig superfamily, CD81 belongs to a poorly understood family of four-pass transmembrane proteins called tetraspanins. Tetraspanins play important physiological roles by controlling protein trafficking and other processes. Here, we show that CD81 relies on its ectodomain to traffic CD19 to the cell surface. Moreover, the anti-CD81 antibody 5A6, which binds selectively to activated B cells, recognizes a conformational epitope on CD81 that is masked when CD81 is bound to CD19. Mutations of CD81 in this interface suppress its CD19 export activity. These data indicate that the CD81 - CD19 interaction is dynamically regulated upon B cell activation and this dynamism can be exploited to regulate B cell function. These results are not only valuable for understanding B cell biology, but also have important implications for understanding tetraspanin function generally.
CD81 及其结合伴侣 CD19 是 B 细胞共受体复合物的核心亚基。虽然 CD19 属于广泛研究的 Ig 超家族,但 CD81 属于一种了解甚少的四跨膜蛋白家族,称为四跨膜蛋白。四跨膜蛋白通过控制蛋白质运输和其他过程发挥重要的生理作用。在这里,我们表明 CD81 依赖其胞外域将 CD19 转运到细胞表面。此外,选择性结合激活 B 细胞的抗 CD81 抗体 5A6 识别 CD81 上的构象表位,当 CD81 与 CD19 结合时,该表位被掩盖。该界面中 CD81 的突变抑制其 CD19 输出活性。这些数据表明,B 细胞激活时 CD81-CD19 相互作用受到动态调节,这种动态性可用于调节 B 细胞功能。这些结果不仅对理解 B 细胞生物学具有重要价值,而且对理解四跨膜蛋白的一般功能也具有重要意义。