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A symmetric geometry of transmembrane domains inside the B cell antigen receptor complex

机译:B细胞抗原受体复合物内跨膜结构域的对称几何

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摘要

B lymphocytes have the ability to sense thousands of structurally different antigens and produce cognate antibodies against these molecules. For this they carry on their surface multiple copies of the B cell antigen receptor (BCR) comprising the membrane-bound Ig (mIg) molecule and the Igα/Igβ heterodimer functioning as antigen binding and signal transducing components, respectively. The mIg is a symmetric complex of 2 identical membrane-bound heavy chains (mHC) and 2 identical light chains. How the symmetric mIg molecule is asymmetrically associated with only one Igα/Igβ heterodimer has been a puzzle. Here we describe that Igα and Igβ both carry on one side of their α-helical transmembrane domain a conserved amino acid motif. By a mutational analysis in combination with a BCR rebuilding approach, we show that this motif is required for the retention of unassembled Igα or Igβ molecules inside the endoplasmic reticulum and the binding of the Igα/Igβ heterodimer to the mIg molecule. We suggest that the BCR forms within the lipid bilayer of the membrane a symmetric Igα-mHC:mHC-Igβ complex that is stabilized by an aromatic proline-tyrosine interaction. Outside the membrane this symmetry is broken by the disulfide-bridged dimerization of the extracellular Ig domains of Igα and Igβ. However, symmetry of the receptor can be regained by a dimerization of 2 BCR complexes as suggested by the dissociation activation model.
机译:B淋巴细胞具有感知数千种结构上不同的抗原并产生针对这些分子的同源抗体的能力。为此,它们在其表面上携带B细胞抗原受体(BCR)的多个副本,该副本包含分别与膜结合的Ig(mIg)分子和Igα/Igβ异二聚体,分别充当抗原结合和信号转导成分。 mIg是2条相同的膜结合重链(mHC)和2条相同的轻链的对称复合物。对称的mIg分子如何仅与一个Igα/Igβ异二聚体不对称结合一直是一个难题。在这里,我们描述了Igα和Igβ都在其α-螺旋跨膜结构域的一侧带有保守的氨基酸基序。通过结合BCR重建方法的突变分析,我们表明该基序是内质网内未组装的Igα或Igβ分子的保留以及Igα/Igβ异二聚体与mIg分子结合的必需条件。我们建议BCR在膜的脂双层内形成对称的Igα-mHC:mHC-Igβ复合物,该复合物通过芳香族脯氨酸-酪氨酸相互作用而稳定。在膜外,这种对称性被Igα和Igβ胞外Ig域的二硫键桥接二聚化破坏。然而,如解离激活模型所暗示的,受体的对称性可以通过2个BCR复合物的二聚化来恢复。

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