Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA, USA.
Program in Cellular and Molecular Medicine, Boston Children's Hospital, Boston, MA, USA.
Nature. 2022 Dec;612(7938):156-161. doi: 10.1038/s41586-022-05412-7. Epub 2022 Oct 13.
The B cell antigen receptor (BCR) is composed of a membrane-bound class M, D, G, E or A immunoglobulin for antigen recognition and a disulfide-linked Igα (also known as CD79A) and Igβ (also known as CD79B) heterodimer (Igα/β) that functions as the signalling entity through intracellular immunoreceptor tyrosine-based activation motifs (ITAMs). The organizing principle of the BCR remains unknown. Here we report cryo-electron microscopy structures of mouse full-length IgM BCR and its Fab-deleted form. At the ectodomain (ECD), the Igα/β heterodimer mainly uses Igα to associate with Cµ3 and Cµ4 domains of one heavy chain (µHC) while leaving the other heavy chain (µHC') unbound. The transmembrane domain (TMD) helices of µHC and µHC' interact with those of the Igα/β heterodimer to form a tight four-helix bundle. The asymmetry at the TMD prevents the recruitment of two Igα/β heterodimers. Notably, the connecting peptide between the ECD and TMD of µHC intervenes in between those of Igα and Igβ to guide TMD assembly through charge complementarity. Weaker but distinct density for the Igβ ITAM nestles next to the TMD, suggesting potential autoinhibition of ITAM phosphorylation. Interfacial analyses suggest that all BCR classes utilize a general organizational architecture. Our studies provide a structural platform for understanding B cell signalling and designing rational therapies against BCR-mediated diseases.
B 细胞抗原受体 (BCR) 由一个膜结合的 M、D、G、E 或 A 类免疫球蛋白组成,用于抗原识别,以及一个二硫键连接的 Igα(也称为 CD79A)和 Igβ(也称为 CD79B)异二聚体(Igα/β)组成,作为通过细胞内免疫受体酪氨酸基激活基序 (ITAMs) 的信号实体。BCR 的组织原则仍然未知。在这里,我们报告了小鼠全长 IgM BCR 及其 Fab 缺失形式的冷冻电子显微镜结构。在外显子(ECD)中,Igα/β 异二聚体主要使用 Igα 与一个重链(µHC)的 Cµ3 和 Cµ4 结构域结合,而另一个重链(µHC')则未结合。µHC 和 µHC'的跨膜结构域(TMD)螺旋与 Igα/β 异二聚体的螺旋相互作用,形成一个紧密的四螺旋束。TMD 上的不对称性阻止了两个 Igα/β 异二聚体的募集。值得注意的是,µHC 的 ECD 和 TMD 之间的连接肽介入 Igα 和 Igβ 之间,通过电荷互补引导 TMD 组装。较弱但明显的 µHC TMD 上的 Igβ ITAM 密度依偎在 TMD 旁边,表明 ITAM 磷酸化的潜在自身抑制。界面分析表明,所有 BCR 类都利用通用的组织架构。我们的研究为理解 B 细胞信号转导和设计针对 BCR 介导疾病的合理治疗方法提供了结构平台。