Wilkens S, Dahlquist F W, McIntosh L P, Donaldson L W, Capaldi R A
Institute of Molecular Biology, University of Oregon, Eugene 97401, USA.
Nat Struct Biol. 1995 Nov;2(11):961-7. doi: 10.1038/nsb1195-961.
The tertiary fold of the epsilon subunit of the Escherichia coli F1F0 ATPsynthase (ECF1F0) has been determined by two- and three-dimensional heteronuclear (13C, 15N) NMR spectroscopy. The epsilon subunit exhibits a distinct two domain structure, with the N-terminal 84 residues of the protein forming a 10-stranded beta-structure, and with the C-terminal 48 amino acids arranged as two alpha-helices running antiparallel to one another (two helix hairpin). The beta-domain folds as a beta-sandwich with a hydrophobic interior between the two layers of the sandwich. The C-terminal two-helix hairpin folds back to the N-terminal domain and interacts with one side of the beta-domain. The arrangement of the epsilon subunit in the intact F1F0 ATP synthase involves interaction of the two helix hairpin with the F1 part, and binding of the open side of the beta-sandwich to the c subunits of the membrane-embedded F0 part.
通过二维和三维异核(13C、15N)核磁共振波谱法确定了大肠杆菌F1F0 ATP合酶(ECF1F0)ε亚基的三级结构。ε亚基呈现出独特的双结构域结构,蛋白质的N端84个残基形成一个10股β结构,C端48个氨基酸排列成两个彼此反平行的α螺旋(双螺旋发夹结构)。β结构域折叠成一个β三明治结构,在三明治的两层之间有一个疏水内部。C端双螺旋发夹结构折回到N端结构域,并与β结构域的一侧相互作用。ε亚基在完整的F1F0 ATP合酶中的排列涉及双螺旋发夹结构与F1部分的相互作用,以及β三明治结构的开放侧与膜嵌入F0部分的c亚基的结合。