Zorn Michael, Ihling Christian H, Golbik Ralph, Sawers R Gary, Sinz Andrea
Department of Pharmaceutical Chemistry & Bioanalytics, Institute of Pharmacy, Martin-Luther University Halle-Wittenberg , Wolfgang-Langenbeck-Str. 4, D-06120 Halle (Saale), Germany.
J Proteome Res. 2014 Dec 5;13(12):5524-35. doi: 10.1021/pr5004906. Epub 2014 Oct 3.
During anaerobic growth Escherichia coli synthesizes two large, highly homologous respiratory formate dehydrogenases (Fdh's), Fdh-N and Fdh-O, which are associated with the inner membrane but have their respective active site located within the periplasm. The Fdh-N enzyme extends 90 Å into the periplasmic compartment, which in E. coli ranges between 100 and 150 Å from the inner to the outer membrane leaflet. To date, little is known about the interaction partners of Fdh-N and Fdh-O in the periplasmic space that might be involved in stabilizing these enzymes after maturation and translocation across the cytoplasmic membrane has occurred. To address this question, we performed chemical cross-linking in combination with mass spectrometry. We present for the first time the identification of cell envelope interaction partners of Fdh-N and -O from anaerobically grown E. coli using a heterobifunctional amine/photo-reactive cross-linker followed by mass spectrometric analysis of the cross-linked products. We additionally mapped the interface regions within the Fdh/protein complexes for four selected Fdh-binding partners, the chaperone Skp, the l,d-transpeptidase ErfK, OppA, and TolB. Our work yields first structural and functional insights into the mechanisms that support the postmaturation of the multisubunit enzymes Fdh-N and Fdh-O in the periplasm of E. coli.
在厌氧生长过程中,大肠杆菌合成两种大型、高度同源的呼吸型甲酸脱氢酶(Fdh),即Fdh-N和Fdh-O,它们与内膜相关,但各自的活性位点位于周质内。Fdh-N酶向周质区室延伸90 Å,在大肠杆菌中,从内膜小叶到外膜小叶的距离在100至150 Å之间。迄今为止,对于Fdh-N和Fdh-O在周质空间中的相互作用伙伴知之甚少,这些伙伴可能在成熟和跨细胞质膜转运后参与稳定这些酶。为了解决这个问题,我们结合化学交联和质谱进行了研究。我们首次使用异双功能胺/光反应性交联剂,随后对交联产物进行质谱分析,鉴定了厌氧生长的大肠杆菌中Fdh-N和 -O的细胞包膜相互作用伙伴。我们还绘制了四个选定的Fdh结合伙伴(伴侣蛋白Skp、l,d-转肽酶ErfK、OppA和TolB)在Fdh/蛋白质复合物中的界面区域。我们的工作首次对支持大肠杆菌周质中多亚基酶Fdh-N和Fdh-O成熟后机制的结构和功能提供了见解。