Siegers Gabrielle M, Yang Jianying, Duerr Claudia U, Nielsen Peter J, Reth Michael, Schamel Wolfgang W A
Max Planck-Institut für Immunbiologie and University of Freiburg, Biologie III Stübeweg 51, 79108 Freiburg, Germany.
Int Immunol. 2006 Sep;18(9):1385-96. doi: 10.1093/intimm/dxl072. Epub 2006 Jul 28.
Structural information about immune receptor complexes is important for understanding signal transduction mechanisms. We have used the Drosophila S2 cell reconstitution system for identification of disulfide bonds within and between CD79a (Ig-alpha) and CD79b (Ig-beta), the heterodimeric signal transducing element of the B cell antigen receptor (BCR). Cysteines 113 and 135 of Ig-alpha and Ig-beta, respectively, form the intermolecular disulfide bridge stabilizing the Ig-alpha/Ig-beta heterodimer in both S2 cells and the B cell line J558L. Furthermore, using transfected S2 cells, two putative intramolecular disulfide bonds in the Ig-like domain of Ig-beta were identified. Ig-betaC65 and Ig-betaC120 form the canonical Ig fold disulfide bond. In addition, Ig-betaC43 and Ig-betaC124 also bind covalently. Individual cysteine to serine mutations in Ig-alpha had no influence on membrane-bound Ig (mIg)-M expression on the surface of S2 cells. In contrast, mIgM expression on the surface of B cells expressing Ig-alphaC113S was reduced, indicating that this intermolecular bond is prerequisite for efficient IgM-BCR formation. Our data also suggest that the Ig-alpha/Ig-beta heterodimer can assemble into oligomers.
免疫受体复合物的结构信息对于理解信号转导机制至关重要。我们利用果蝇S2细胞重组系统来鉴定B细胞抗原受体(BCR)的异二聚体信号转导元件CD79a(Ig-α)和CD79b(Ig-β)内部及之间的二硫键。Ig-α的半胱氨酸113和Ig-β的半胱氨酸135分别形成分子间二硫桥,在S2细胞和B细胞系J558L中稳定Ig-α/Ig-β异二聚体。此外,利用转染的S2细胞,在Ig-β的Ig样结构域中鉴定出两个推定的分子内二硫键。Ig-βC65和Ig-βC120形成典型的Ig折叠二硫键。另外,Ig-βC43和Ig-βC124也共价结合。Ig-α中单个半胱氨酸突变为丝氨酸对S2细胞表面膜结合Ig(mIg)-M的表达没有影响。相反,表达Ig-αC113S的B细胞表面mIgM表达降低,表明这种分子间键是高效形成IgM-BCR的先决条件。我们的数据还表明,Ig-α/Ig-β异二聚体可以组装成寡聚体。