作者
Clément Aussignargues, Maria-Eirini Pandelia, Markus Sutter, Jefferson S Plegaria, Jan Zarzycki, Aiko Turmo, Jingcheng Huang, Daniel C Ducat, Eric L Hegg, Brian R Gibney, Cheryl A Kerfeld
发表日期
2016/4/27
期刊
Journal of the American Chemical Society
卷号
138
期号
16
页码范围
5262-5270
出版商
American Chemical Society
简介
Bacterial microcompartments (BMCs) are self-assembling organelles composed of a selectively permeable protein shell and encapsulated enzymes. They are considered promising templates for the engineering of designed bionanoreactors for biotechnology. In particular, encapsulation of oxidoreductive reactions requiring electron transfer between the lumen of the BMC and the cytosol relies on the ability to conduct electrons across the shell. We determined the crystal structure of a component protein of a synthetic BMC shell, which informed the rational design of a [4Fe-4S] cluster-binding site in its pore. We also solved the structure of the [4Fe-4S] cluster-bound, engineered protein to 1.8 Å resolution, providing the first structure of a BMC shell protein containing a metal center. The [4Fe-4S] cluster was characterized by optical and EPR spectroscopies; it has a reduction potential of −370 mV vs the standard …
引用总数
2016201720182019202020212022202320244791189954
学术搜索中的文章
C Aussignargues, ME Pandelia, M Sutter, JS Plegaria… - Journal of the American Chemical Society, 2016