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Identifying ionic interactions within a membrane using BLaTM, a genetic tool to measure homo- and heterotypic transmembrane helix-helix interactions

机译:使用BLATM,遗传工具鉴定膜内的离子相互作用以测量同源和异质型跨膜螺旋螺旋相互作用

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The assembly of integral membrane protein complexes is frequently supported by transmembrane domain (TMD) interactions. Here, we present the BLaTM assay that measures homotypic as well as heterotypic TMD-TMD interactions in a bacterial membrane. The system is based on complementation of β-lactamase fragments genetically fused to interacting TMDs, which confers ampicillin resistance to expressing cells. We validated BLaTM by showing that the assay faithfully reports known sequence-specific interactions of both types. In a practical application, we used BLaTM to screen a focussed combinatorial library for heterotypic interactions driven by electrostatic forces. The results reveal novel patterns of ionizable amino acids within the isolated TMD pairs. Those patterns indicate that formation of heterotypic TMD pairs is most efficiently supported by closely spaced ionizable residues of opposite charge. In addition, TMD heteromerization can apparently be driven by hydrogen bonding between basic or between acidic residues.
机译:整体膜蛋白复合物的组装经常通过跨膜结构域(TMD)相互作用来支持。在这里,我们介绍了衡量均型的BLATM测定,以及细菌膜中的异型TMD-TMD相互作用。该系统基于β-内酰胺酶片段的互补族融合以与相互作用的TMDS融合,这赋予氨苄青霉素抗性对表达细胞。通过表明测定忠实地报告了两种类型的已知序列特异性相互作用,验证了Blatm。在实际应用中,我们使用BLATM筛选聚焦组合库,用于由静电力驱动的异型相互作用。结果揭示了分离的TMD对内的可电离氨基酸的新型模式。这些图案表明,通过相反电荷的紧密间隔的可电离残留物,最有效地支持异质型TMD对的形成。另外,显然可以通过基础或酸性残基之间的氢键来驱动TMD异构化。

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