Research School of Biology, Australian National University, Canberra, ACT, 0200, Australia.
School of Chemistry and Molecular Biosciences, The University of Queensland, Brisbane, QLD, 4072, Australia.
Nat Commun. 2018 Apr 11;9(1):1395. doi: 10.1038/s41467-018-03593-2.
Bacterial autotransporters comprise a C-terminal β-barrel domain, which must be correctly folded and inserted into the outer membrane to facilitate translocation of the N-terminal passenger domain to the cell exterior. Once at the surface, the passenger domains of most autotransporters are folded into an elongated β-helix. In a cellular context, key molecules catalyze the assembly of the autotransporter β-barrel domain. However, how the passenger domain folds into its functional form is poorly understood. Here we use mutational analysis on the autotransporter Pet to show that the β-hairpin structure of the fifth extracellular loop of the β-barrel domain has a crucial role for passenger domain folding into a β-helix. Bioinformatics and structural analyses, and mutagenesis of a homologous autotransporter, suggest that this function is conserved among autotransporter proteins with β-helical passenger domains. We propose that the autotransporter β-barrel domain is a folding vector that nucleates folding of the passenger domain.
细菌自转运蛋白包含一个 C 端的β-桶结构域,该结构域必须正确折叠并插入外膜,以促进 N 端的载体结构域转运到细胞外。一旦到达表面,大多数自转运蛋白的载体结构域折叠成一个拉长的β-螺旋。在细胞环境中,关键分子催化自转运蛋白β-桶结构域的组装。然而,载体结构域如何折叠成其功能形式还知之甚少。在这里,我们使用 Pet 自转运蛋白的突变分析表明,β-桶结构域的第五个细胞外环的β-发夹结构对于载体结构域折叠成β-螺旋具有关键作用。生物信息学和结构分析,以及同源自转运蛋白的突变,表明这种功能在具有β-螺旋载体结构域的自转运蛋白中是保守的。我们提出自转运蛋白β-桶结构域是一个折叠载体,它可以引发载体结构域的折叠。