Lee Hyeon-Cheol, Portnoff Alyse D, Rocco Mark A, DeLisa Matthew P
School of Chemical and Biomolecular Engineering, Cornell University, Ithaca, NY 14853 USA.
Department of Biomedical Engineering, Cornell University, Ithaca, NY 14853 USA.
Sci Rep. 2014 Dec 22;4:7570. doi: 10.1038/srep07570.
The bacterial twin-arginine translocation (Tat) pathway is well known to translocate correctly folded monomeric and dimeric proteins across the tightly sealed cytoplasmic membrane. We identified a naturally occurring heterotrimer, the Escherichia coli aldehyde oxidoreductase PaoABC, that is co-translocated by the Tat translocase according to a ternary "hitchhiker" mechanism. Specifically, the PaoB and PaoC subunits, each devoid of export signals, are escorted to the periplasm in a piggyback fashion by the Tat signal peptide-containing subunit PaoA. Moreover, export of PaoA was blocked when either PaoB or PaoC was absent, revealing a surprising interdependence for export that is not seen for classical secretory proteins. Inspired by this observation, we created a bacterial three-hybrid selection system that links the formation of ternary protein complexes with antibiotic resistance. As proof-of-concept, a bispecific antibody was employed as an adaptor that physically crosslinked one antigen fused to a Tat export signal with a second antigen fused to TEM-1 β-lactamase (Bla). The resulting non-covalent heterotrimer was exported in a Tat-dependent manner, delivering Bla to the periplasm where it hydrolyzed β-lactam antibiotics. Collectively, these results highlight the remarkable flexibility of the Tat system and its potential for studying and engineering ternary protein interactions in living bacteria.
众所周知,细菌双精氨酸转运(Tat)途径可将正确折叠的单体和二聚体蛋白转运穿过紧密密封的细胞质膜。我们鉴定出一种天然存在的异源三聚体,即大肠杆菌醛氧化还原酶PaoABC,它通过Tat转位酶根据三元“搭便车”机制进行共转运。具体而言,不含输出信号的PaoB和PaoC亚基,由含Tat信号肽的亚基PaoA以背负方式护送至周质。此外,当缺少PaoB或PaoC时,PaoA的输出被阻断,这揭示了一种经典分泌蛋白未见的、令人惊讶的输出相互依赖性。受此观察结果启发,我们创建了一种细菌三杂交筛选系统,该系统将三元蛋白复合物的形成与抗生素抗性联系起来。作为概念验证,使用双特异性抗体作为衔接子,将与Tat输出信号融合的一种抗原与与TEM-1β-内酰胺酶(Bla)融合的第二种抗原物理交联。所得的非共价异源三聚体以Tat依赖性方式输出,将Bla递送至周质,在那里它水解β-内酰胺抗生素。总体而言,这些结果突出了Tat系统的显著灵活性及其在研究和工程化活细菌中三元蛋白相互作用方面的潜力。