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Structural Arrangement Of The Transmission Interface In The Antigen Abc Transport Complex Tap

机译:抗原ABC转运复合物丝锥的传输界面的结构安排

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The transporter associated with antigen processing (TAP) represents a focal point in the immune recognition of virally or malignantly transformed cells by translocating proteasomal degradation products into the endoplasmic reticulum-lumen for loading of MHC class I molecules. Based on a number of experimental data and the homology to the bacterial ABC exporter Sav1866, we constructed a 3D structural model of the core TAP complex and used it to examine the interface between the transmembrane and nucleotide-binding domains (NBO) by cysteine-scanning and cross-linking approaches. Herein, we demonstrate the functional importance of the newly identified X-loop in the NBD in coupling substrate binding to downstream events in the transport cycle. We further verified domain swapping in a heterodimeric ABC half-transporter complex by cysteine cross-linking. Strikingly, either substrate binding or translocation can be blocked by cross-linking the X-loop to coupling helix 2 or 1, respectively. These results resolve the structural arrangement of the transmission interface and point to different functions of the cytosolic loops and coupling helices in substrate binding, signaling, and transport.
机译:通过将蛋白酶体降解产物转移到内质网腔中以装载I类MHC分子,与抗原加工(TAP)相关的转运蛋白成为病毒或恶性转化细胞免疫识别的重点。基于大量实验数据和与细菌ABC出口商Sav1866的同源性,我们构建了核心TAP复合物的3D结构模型,并用其通过半胱氨酸扫描检查了跨膜和核苷酸结合域(NBO)之间的界面和交联方法。在本文中,我们证明了NBD中新发现的X环在偶联底物与运输循环中下游事件的结合中的功能重要性。我们通过半胱氨酸交联进一步验证了异二聚ABC半转运复合物中的结构域交换。引人注目的是,可以通过将X环分别交联到耦合螺旋2或1来阻止底物结合或易位。这些结果解决了传输界面的结构安排,并指出了底物结合,信号传导和转运中胞质环和偶联螺旋的不同功能。

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