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首页> 外文期刊>The FASEB Journal >The immunoglobulin domain of the sodium channel β3 subunit contains a surface-localized disulfide bond that is required for homophilic binding
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The immunoglobulin domain of the sodium channel β3 subunit contains a surface-localized disulfide bond that is required for homophilic binding

机译:钠通道β3亚基的免疫球蛋白结构域包含表面定位的二硫键,这是同源结合所必需的

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The β subunits of voltage-gated sodium (Nav) channels possess an extracellular immunoglobulin (Ig) domain that is related to the L1 family of cell-adhesion molecules (CAMs). Here we show that in HEK293 cells, secretion of the free Ig domain of the β3 subunit is reduced significantly when it is coexpressed with the full-length β3 and β1 subunits but not with the β2 subunit. Using immunoprecipitation, we show that the β3 subunit can mediate trans homophilic-binding via its Ig domain and that the β3-Ig domain can associate heterophilically with the β1 subunit. Evolutionary tracing analysis and structural modeling identified a cluster of surface-localized amino acids fully conserved between the Ig domains of all known β3 and β1 sequences. A notable feature of this conserved surface cluster is the presence of two adjacent cysteine residues that previously we have suggested may form a disulfide bond. We now confirm the presence of the disulfide bond in β3 using mass spectrometry, and we show that its integrity is essential for the association of the full-length, membrane-anchored β3 subunit with itself. However, selective reduction of this surface disulfide bond did not inhibit homophilic binding of the purified β3-Ig domain in free solution. Hence, the disulfide bond itself is unlikely to be part of the homophilic binding site. Rather, we suggest that its integrity ensures the Ig domain of the membrane-tethered β3 subunit adopts the correct orientation for productive association to occur in vivo.—Yereddi, N. R., Cusdin, F. S., Namadurai, S., Packman, L. C., Monie, T. P., Slavny, P., Clare, J. C., Powell, A. J., Jackson, A. P. The immunoglobulin domain of the sodium channel β3 subunit contains a surface-localized disulfide bond that is required for homophilic binding.
机译:电压门控钠(Nav)通道的β亚基具有细胞外免疫球蛋白(Ig)域,该域与L1家族的细胞粘附分子(CAMs)相关。在这里,我们表明,在HEK293细胞中,当与全长β3和β1亚基共同表达而不与β2亚基共同表达时,β3亚基的游离Ig结构域的分泌显着减少。使用免疫沉淀,我们表明,β3亚基可以通过其Ig结构域介导反同型结合,并且β3-Ig结构域可以与β1亚基异源结合。进化追踪分析和结构建模确定了在所有已知β3和β1序列的Ig域之间完全保守的表面定位氨基酸簇。该保守的表面簇的显着特征是存在两个相邻的半胱氨酸残基,我们先前已经暗示它们可能形成二硫键。现在,我们使用质谱法确认了β3中二硫键的存在,并且我们证明了其完整性对于全长,锚定有膜的β3亚基与其自身的结合至关重要。然而,该表面二硫键的选择性还原在自由溶液中不抑制纯化的β3-Ig结构域的同源结合。因此,二硫键本身不太可能是同源结合位点的一部分。相反,我们建议其完整性确保膜连接的β3亚基的Ig结构域采用正确的方向进行体内的生产性结合。-Yereddi,NR,Cusdin,FS,Namadurai,S.,Packman,LC,Monie, TP,Slavny,P.,Clare,JC,Powell,AJ,Jackson,AP钠通道β3亚基的免疫球蛋白结构域包含表面定位的二硫键,这是同型结合所必需的。

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