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Mutational analysis of the proteins BtuB and TonB: Their roles in cobalamin transport.

机译:蛋白质BtuB和TonB的突变分析:它们在钴胺素转运中的作用。

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摘要

The E. coli transporter, BtuB, is an integral membrane protein which translocates vitamin B12 (CNCbl) and other cobalamin derivatives from the extracellular milieu into the periplasmic compartment by an active transport process. BtuB is part of a membrane system that can be utilized in vitro and in vivo providing a model system for the study of active transport. Substrate-induced structural changes of the wild-type and mutant BtuB proteins relating to the enzyme mechanism have been examined. Radiolabeled CNCbl substrate was used to probe transport in whole cells and purified membranes. The binding and transport of CNCbl was affected by mutations in the Tonbox that resulted in transport-negative mutants.;In this study, we show that substitutions in the amino-terminal Tonbox residues (6-DTLVVTA-12) alter CNCbl binding at the extracellular face of BtuB. Cold-chase experiments show that the substitution of five alanines in the Tonbox of a functional mutant (V10C) results in a BtuB mutant named 5AV10C (BtuB-6A+7A+8A+9A+10C+11A) with a 60-fold slower release rate of bound CNCbl. Interestingly, the 5AV10C mutant with higher affinity for substrate still interacts with TonB. Experiments using N-biotinoyl- N'-6-maleimideohexanoyl-hydrazide labeling and probe dynamics by electron paramagnetic resonance analysis of the 5AV10C mutant amino-terminus shows a constitutively accessible Tonbox. These data suggest that the Tonbox of a mutant with higher affinity for CNCbl may be in an extended conformation. Furthermore, in the presence of uncouplers of the proton motive force, the constitutively accessible conformation of the Tonbox was evident in the V10C mutant which has wild-type activity.;A proposed mechanism for active transport that is consistent with these observations is a BtuB protein recycling model. In this model substrate binding, transport and release from one side of the membrane to the other is dependent on three factors: (1) Specific residues in the Tonbox; (2) a functional proton motive force; and (3) an unaltered communication signal between the Tonbox and substrate binding site. In sum, we have identified critical specificity determinants in the periplasmic face of BtuB that is required for active transport of cobalamin in E. coli.
机译:大肠杆菌转运蛋白BtuB是一种完整的膜蛋白,通过主动转运过程将维生素B12(CNCbl)和其他钴胺素衍生物从细胞外环境转运到周质区室。 BtuB是膜系统的一部分,可在体外和体内使用,为研究主动转运提供了模型系统。已研究了底物诱导的与酶机制有关的野生型和突变型BtuB蛋白的结构变化。放射性标记的CNCbl1底物用于探测全细胞和纯化膜的转运。 CNCbl的结合和运输受到Tonbox中突变的影响,该突变导致运输阴性突变体。;在这项研究中,我们表明氨基末端Tonbox残基(6-DTLVVTA-12)中的取代改变了细胞外CNCbl的结合。 BtuB的脸。冷追实验表明,功能性突变体(V10C)的Tonbox中五个丙氨酸的取代导致BtuB突变体名为5AV10C(BtuB-6A + 7A + 8A + 9A + 10C + 11A)的释放速度降低了60倍结合率有趣的是,对底物具有更高亲和力的5AV10C突变体仍与TonB相互作用。使用N-biotinoyl-N'-6-马来酰亚胺亚己基酰肼标记和通过5AV10C突变氨基末端的电子顺磁共振分析进行探针动力学的实验显示,Tonbox具有可组成性。这些数据表明,对CNCbl具有更高亲和力的突变体的Tonbox可能处于延伸构象。此外,在存在质子动力解偶联剂的情况下,在具有野生型活性的V10C突变体中,Tonbox的组成型可及构象很明显。与这些观察结果一致的一种主动转运机制是BtuB蛋白。回收模型。在该模型中,底物从膜的一侧到另一侧的结合,运输和释放取决于三个因素:(1)Tonbox中的特定残基; (2)功能性质子动力; (3)Tonbox和底物结合位点之间的通讯信号未改变。总之,我们已经在大肠杆菌中主动转运钴胺素所需的BtuB周质表面​​确定了关键特异性决定因素。

著录项

  • 作者

    Barekzi, Nazir.;

  • 作者单位

    University of Virginia.;

  • 授予单位 University of Virginia.;
  • 学科 Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 202 p.
  • 总页数 202
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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