Chaturvedi Deepti, Mahalakshmi Radhakrishnan
Molecular Biophysics Laboratory, Department of Biological Sciences , Indian Institute of Science Education and Research , Bhopal - 462066 , India.
Biochemistry. 2018 Apr 3;57(13):1987-1996. doi: 10.1021/acs.biochem.8b00012. Epub 2018 Mar 20.
Transmembrane β-barrel proteins (OMPs) are highly robust structures for engineering and development of nanopore channels, surface biosensors, and display libraries. Expanding the applications of designed OMPs requires the identification of elements essential for β-barrel scaffold formation and stability. Here, we have designed chimeric 8-stranded OMPs composed of strand hybrids of Escherichia coli OmpX and Yersinia pestis Ail, and identified molecular motifs essential for β-barrel scaffold formation. For the OmpX/Ail chimeras, we find that the central hairpin strands β4-β5 in tandem are vital for β-barrel folding. We also show that the central hairpin can facilitate OMP assembly even when present as the N- or C-terminal strands. Further, the C-terminal β-signal and strand length are important but neither sufficient nor mutually exclusive for β-barrel assembly. Our results point to a nonstochastic model for assembly of chimeric β-barrels in lipidic micelles. The assembly likely follows a predefined nucleation at the central hairpin only when presented in tandem, with some influence from its absolute position in the barrel. Our findings can lead to the design of engineered barrels that retain the OMP assembly elements necessary to attain well-folded, stable, yet malleable scaffolds, for bionanotechnology applications.
跨膜β-桶蛋白(外膜蛋白,OMPs)是用于纳米孔通道、表面生物传感器和展示文库工程与开发的高度稳健的结构。拓展设计的OMPs的应用需要鉴定β-桶支架形成和稳定性所必需的元件。在此,我们设计了由大肠杆菌OmpX和鼠疫耶尔森菌Ail的链杂合体组成的嵌合8链OMPs,并鉴定了β-桶支架形成所必需的分子基序。对于OmpX/Ail嵌合体,我们发现串联的中央发夹链β4-β5对β-桶折叠至关重要。我们还表明,即使中央发夹作为N端或C端链存在,它也能促进OMP组装。此外,C端β信号和链长度很重要,但对于β-桶组装既不充分也不相互排斥。我们的结果指向脂质微团中嵌合β-桶组装的非随机模型。仅当串联呈现时,组装可能仅在中央发夹处遵循预定义的成核作用,同时受到其在桶中的绝对位置的一些影响。我们的发现能够促成工程化桶的设计,这些桶保留了获得折叠良好、稳定但具有可塑性的支架所需的OMP组装元件,用于生物纳米技术应用。