Chupin V, Killian J A, Breg J, de Jongh H H, Boelens R, Kaptein R, de Kruijff B
Department of Biochemistry of Membranes, Bijvoet Center for Biomolecular Research, Utrecht University, The Netherlands.
Biochemistry. 1995 Sep 12;34(36):11617-24. doi: 10.1021/bi00036a038.
Proteins that are destined for export out of the cytoplasm of Escherichia coli cells are synthesized as precursor proteins with N-terminal extensions or signal sequences, which are essential for translocation of the protein across the inner membrane. Signal sequences contain very little primary sequence homology, and therefore recognition of these sequences is thought to involve specific folding. To assess the conformational flexibility of signal sequences, we have studied the signal peptide of PhoE (MKKSTLALVVMGIVASASVQA) by two-dimensional nuclear magnetic resonance and circular dichroism in different membrane mimetic environments. The secondary structure of the PhoE signal peptide was analyzed via interresidue nuclear Overhauser enhancement measurements, chemical shifts of backbone protons, and by measuring amide proton exchange. The membrane mimetic environments studied were trifluoroethanol (TFE) and micelles of sodium dodecyl sulfate (SDS) or dodecylphosphocholine (DPC). In all systems alpha-helix formation was observed. In TFE, the alpha-helix stretches from the positively charged N-terminus to Ser18. In SDS and DPC micelles, the N- and C-terminal alpha-helical half are separated from each other by a kink at the Gly12 position, with the helical content being higher at the N-terminus and lower at the C-terminus. In zwitterionic DPC micelles, the C-terminal region has a less regular or more flexible structure compared to SDS. The insertion of the PhoE signal peptide into the hydrophobic environment of the micelles was demonstrated by the effect of spin-labeled 12-doxylstearate on the line widths of the peptide proton resonances.(ABSTRACT TRUNCATED AT 250 WORDS)
destined for export out of the cytoplasm of Escherichia coli cells are synthesized as precursor proteins with N-terminal extensions or signal sequences, which are essential for translocation of the protein across the inner membrane. Signal sequences contain very little primary sequence homology, and therefore recognition of these sequences is thought to involve specific folding. To assess the conformational flexibility of signal sequences, we have studied the signal peptide of PhoE (MKKSTLALVVMGIVASASVQA) by two-dimensional nuclear magnetic resonance and circular dichroism in different membrane mimetic environments. The secondary structure of the PhoE signal peptide was analyzed via interresidue nuclear Overhauser enhancement measurements, chemical shifts of backbone protons, and by measuring amide proton exchange. The membrane mimetic environments studied were trifluoroethanol (TFE) and micelles of sodium dodecyl sulfate (SDS) or dodecylphosphocholine (DPC). In all systems alpha-helix formation was observed. In TFE, the alpha-helix stretches from the positively charged N-terminus to Ser18. In SDS and DPC micelles, the N- and C-terminal alpha-helical half are separated from each other by a kink at the Gly12 position, with the helical content being higher at the N-terminus and lower at the C-terminus. In zwitterionic DPC micelles, the C-terminal region has a less regular or more flexible structure compared to SDS. The insertion of the PhoE signal peptide into the hydrophobic environment of the micelles was demonstrated by the effect of spin-labeled 12-doxylstearate on the line widths of the peptide proton resonances.(ABSTRACT TRUNCATED AT 250 WORDS)
大肠杆菌细胞胞质中注定要输出的蛋白质被合成为带有N端延伸或信号序列的前体蛋白质,这些对于蛋白质穿过内膜的转运至关重要。信号序列几乎没有一级序列同源性,因此认为对这些序列的识别涉及特定的折叠。为了评估信号序列的构象灵活性,我们通过二维核磁共振和圆二色性在不同的膜模拟环境中研究了PhoE的信号肽(MKKSTLALVVMGIVASASVQA)。通过残基间核Overhauser增强测量、主链质子的化学位移以及酰胺质子交换测量来分析PhoE信号肽的二级结构。所研究的膜模拟环境是三氟乙醇(TFE)以及十二烷基硫酸钠(SDS)或十二烷基磷酰胆碱(DPC)的胶束。在所有体系中都观察到了α螺旋的形成。在TFE中,α螺旋从带正电荷的N端延伸到Ser18。在SDS和DPC胶束中,N端和C端的α螺旋半段在Gly12位置处由一个扭结隔开,N端的螺旋含量较高,C端较低。在两性离子DPC胶束中,与SDS相比,C端区域的结构不太规则或更具灵活性。自旋标记的12-硬脂酰氧基硬脂酸对肽质子共振线宽的影响证明了PhoE信号肽插入到胶束的疏水环境中。(摘要截短为250字)