Smulski Cristian R, Kury Patrick, Seidel Lea M, Staiger Hannah S, Edinger Anna K, Willen Laure, Seidl Maximilan, Hess Henry, Salzer Ulrich, Rolink Antonius G, Rizzi Marta, Schneider Pascal, Eibel Hermann
Center for Chronic Immunodeficiency, University Medical Center Freiburg, Freiburg im Breisgau, Baden-Württemberg 79106, Germany; Department of Biochemistry, University of Lausanne, Lausanne, Vaud 1066, Switzerland.
Center for Chronic Immunodeficiency, University Medical Center Freiburg, Freiburg im Breisgau, Baden-Württemberg 79106, Germany.
Cell Rep. 2017 Feb 28;18(9):2189-2202. doi: 10.1016/j.celrep.2017.02.005.
B cell activating factor (BAFF) provides B cells with essential survival signals. It binds to three receptors: BAFFR, TACI, and BCMA that are differentially expressed by B cell subsets. BAFFR is early expressed in circulating B cells and provides key signals for further maturation. Here, we report that highly regulated BAFFR processing events modulate BAFF responses. BAFFR processing is triggered by BAFF binding in B cells co-expressing TACI and it is executed by the metalloproteases ADAM10 and ADAM17. The degree of BAFF oligomerization, the expression of ADAM proteins in different B cell subsets, and the activation status of the cell determine the proteases involved in BAFFR processing. Inhibition of ADAM10 augments BAFF-dependent survival of primary human B cells, whereas inhibition of ADAM17 increases BAFFR expression levels on germinal center B cells. Therefore, BAFF-induced processing of BAFFR regulates BAFF-mediated B cell responses in a TACI-dependent manner.
B细胞活化因子(BAFF)为B细胞提供重要的存活信号。它与三种受体结合:BAFFR、TACI和BCMA,这些受体在B细胞亚群中差异表达。BAFFR在循环B细胞中早期表达,并为进一步成熟提供关键信号。在此,我们报告高度调控的BAFFR加工事件调节BAFF反应。BAFFR加工由共表达TACI的B细胞中的BAFF结合触发,并由金属蛋白酶ADAM10和ADAM17执行。BAFF寡聚化程度、不同B细胞亚群中ADAM蛋白的表达以及细胞的激活状态决定了参与BAFFR加工的蛋白酶。抑制ADAM10可增强原代人B细胞的BAFF依赖性存活,而抑制ADAM17可增加生发中心B细胞上BAFFR的表达水平。因此,BAFF诱导的BAFFR加工以TACI依赖性方式调节BAFF介导的B细胞反应。