Sharma Onkar, Yamashita Eiki, Zhalnina Mariya V, Zakharov Stanislav D, Datsenko Kirill A, Wanner Barry L, Cramer William A
Department of Biological Sciences, Lilly Hall of Life Sciences, Purdue University, West Lafayette, Indiana 47907, USA.
J Biol Chem. 2007 Aug 10;282(32):23163-70. doi: 10.1074/jbc.M703004200. Epub 2007 Jun 4.
The crystal structure of the complex of the BtuB receptor and the 135-residue coiled-coil receptor-binding R-domain of colicin E3 (E3R135) suggested a novel mechanism for import of colicin proteins across the outer membrane. It was proposed that one function of the R-domain, which extends along the outer membrane surface, is to recruit an additional outer membrane protein(s) to form a translocon for passage colicin activity domain. A 3.5-A crystal structure of the complex of E2R135 and BtuB (E2R135-BtuB) was obtained, which revealed E2R135 bound to BtuB in an oblique orientation identical to that previously found for E3R135. The only significant difference between the two structures was that the bound coiled-coil R-domain of colicin E2, compared with that of colicin E3, was extended by two and five residues at the N and C termini, respectively. There was no detectable displacement of the BtuB plug domain in either structure, implying that colicin is not imported through the outer membrane by BtuB alone. It was concluded that the oblique orientation of the R-domain of the nuclease E colicins has a function in the recruitment of another member(s) of an outer membrane translocon. Screening of porin knock-out mutants showed that either OmpF or OmpC can function in such a translocon. Arg(452) at the R/C-domain interface in colicin E2 was found have an essential role at a putative site of protease cleavage, which would liberate the C-terminal activity domain for passage through the outer membrane translocon.
BtuB受体与大肠杆菌素E3的135个残基的卷曲螺旋受体结合R结构域(E3R135)复合物的晶体结构提示了大肠杆菌素蛋白跨外膜转运的一种新机制。有人提出,沿着外膜表面延伸的R结构域的一个功能是招募一种或多种额外的外膜蛋白,以形成用于大肠杆菌素活性结构域通过的转位通道。获得了E2R135与BtuB复合物(E2R135-BtuB)的3.5埃晶体结构,该结构显示E2R135以与先前发现的E3R135相同的倾斜方向与BtuB结合。这两种结构之间唯一显著的差异是,与大肠杆菌素E3相比,结合的大肠杆菌素E2的卷曲螺旋R结构域在N端和C端分别延长了两个和五个残基。在任何一种结构中均未检测到BtuB堵塞结构域的位移,这意味着大肠杆菌素不是仅通过BtuB跨外膜转运的。得出的结论是,核酸酶大肠杆菌素的R结构域的倾斜方向在招募外膜转位通道的另一个成员方面具有功能。对孔蛋白敲除突变体的筛选表明,OmpF或OmpC均可在这样的转位通道中发挥作用。发现大肠杆菌素E2中R/C结构域界面处的Arg(452)在一个假定的蛋白酶切割位点具有重要作用,该位点会释放C端活性结构域以便通过外膜转位通道。