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深度突变扫描揭示了控制 B 细胞抗原受体表面表达的跨膜特征。

Deep mutational scanning reveals transmembrane features governing surface expression of the B cell antigen receptor.

机构信息

Structural Biology Division, Walter and Eliza Hall Institute of Medical Research, Parkville, VIC, Australia.

Department of Medical Biology, University of Melbourne, Parkville, VIC, Australia.

出版信息

Front Immunol. 2024 Jul 23;15:1426795. doi: 10.3389/fimmu.2024.1426795. eCollection 2024.

Abstract

B cells surveil the body for foreign matter using their surface-expressed B cell antigen receptor (BCR), a tetrameric complex comprising a membrane-tethered antibody (mIg) that binds antigens and a signaling dimer (CD79AB) that conveys this interaction to the B cell. Recent cryogenic electron microscopy (cryo-EM) structures of IgM and IgG isotype BCRs provide the first complete views of their architecture, revealing that the largest interaction surfaces between the mIg and CD79AB are in their transmembrane domains (TMDs). These structures support decades of biochemical work interrogating the requirements for assembly of a functional BCR and provide the basis for explaining the effects of mutations. Here we report a focused saturating mutagenesis to comprehensively characterize the nature of the interactions in the mIg TMD that are required for BCR surface expression. We examined the effects of 600 single-amino-acid changes simultaneously in a pooled competition assay and quantified their effects by next-generation sequencing. Our deep mutational scanning results reflect a feature-rich TMD sequence, with some positions completely intolerant to mutation and others requiring specific biochemical properties such as charge, polarity or hydrophobicity, emphasizing the high value of saturating mutagenesis over, for example, alanine scanning. The data agree closely with published mutagenesis and the cryo-EM structures, while also highlighting several positions and surfaces that have not previously been characterized or have effects that are difficult to rationalize purely based on structure. This unbiased and complete mutagenesis dataset serves as a reference and framework for informed hypothesis testing, design of therapeutics to regulate BCR surface expression and to annotate patient mutations.

摘要

B 细胞通过其表面表达的 B 细胞抗原受体 (BCR) 来监测体内的外来物质,BCR 是一种四聚体复合物,由结合抗原的膜结合抗体 (mIg) 和传递这种相互作用的信号二聚体 (CD79AB) 组成。最近使用低温电子显微镜 (cryo-EM) 技术获得的 IgM 和 IgG 同种型 BCR 结构提供了其结构的首个完整视图,揭示了 mIg 和 CD79AB 之间最大的相互作用表面位于它们的跨膜结构域 (TMD) 中。这些结构支持了几十年来对组装功能性 BCR 的要求进行的生化研究,并为解释突变的影响提供了基础。在这里,我们报告了一项集中的饱和诱变研究,以全面描述 mIg TMD 中对 BCR 表面表达至关重要的相互作用的性质。我们在一个汇集竞争测定中同时检查了 600 个单一氨基酸变化的影响,并通过下一代测序对其影响进行了量化。我们的深度突变扫描结果反映了富含特征的 TMD 序列,一些位置完全不能耐受突变,而其他位置则需要特定的生化特性,如电荷、极性或疏水性,这强调了饱和诱变相对于例如丙氨酸扫描的高价值。这些数据与已发表的诱变和 cryo-EM 结构非常吻合,同时还突出了一些以前没有被描述过的位置和表面,或者基于结构很难合理解释其影响的位置和表面。这个无偏和完整的诱变数据集可作为参考和框架,用于进行有根据的假设检验、设计调节 BCR 表面表达的治疗药物以及注释患者突变。

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