Byström T, Strandberg E, Kovacs F A, Cross T A, Lindblom G
Department of Chemistry, Biophysical Chemistry, Umeå University, Sweden.
Biochim Biophys Acta. 2000 Dec 20;1509(1-2):335-45. doi: 10.1016/s0005-2736(00)00316-3.
The molecular orientation in a lipid membrane of the peptide fragment VEYAGIALFFVAAVLTLWSMLQYLSAAR (phosphatidylglycerophosphate synthase (Pgs) peptide E) of an integral membrane protein, Pgs, in Escherichia coli has been investigated by solid-state 15N nuclear magnetic resonance (NMR) on macroscopically aligned lipid bilayers. The secondary structure of the peptide in lipid vesicles was determined by circular dichroism spectroscopy. Furthermore, the phase behaviour of the Pgs peptide E/dierucoylphosphatidylcholine (DEruPC)/water system was determined by (2)H, (31)P and 15N solid-state NMR spectroscopy. The phase behaviour obtained was then compared to that of the Pgs peptide E solubilised in dioleoylphosphatidylcholine and water that was previously studied by Morein et al. [Biophys. J. 73 (1997) 3078-3088]. This was aimed to answer the question whether a difference in the length of the hydrophobic part of this peptide and the hydrophobic thickness of the lipid bilayer (hydrophobic mismatch) will affect the phase behaviour. The peptide mostly has a transmembrane orientation and is in an alpha-helical conformation. An isotropic phase is formed in DEruPC with high peptide content (peptide/lipid molar ratio (p/l) > or =1:15) and high water content (> or =50%, w/w) at 35 degrees C. At 55 and 65 degrees C an isotropic phase is induced at high water content (> or =50%, w/w) at all peptide contents studied (no isotropic phase forms in the lipid/water system under the conditions in this study). At high peptide contents (p/l> or =1:15) an isotropic phase forms at 20 and 40% (w/w) of water at 55 and 65 degrees C. A comparison of the phase behaviour of the two homologous lipid systems reveals striking similarities, although the thicknesses of the two lipid bilayers differ by 7 A. This suggests that the rationalisation of the phase behaviour in terms of the hydrophobic mismatch is not applicable to these systems. The C-terminus of Pgs peptide E is amphiphilic and a considerable part of the peptide is situated outside the hydrophobic part of the bilayer, a property of the peptide that to a large extent will affect the lipid/peptide phase behaviour.
通过在宏观排列的脂质双层上进行固态15N核磁共振(NMR),研究了大肠杆菌中一种整合膜蛋白磷脂酰甘油磷酸合酶(Pgs)的肽片段VEYAGIALFFVAAVLTLWSMLQYLSAAR(Pgs肽E)在脂质膜中的分子取向。通过圆二色光谱法测定了该肽在脂质囊泡中的二级结构。此外,通过2H、31P和15N固态NMR光谱法测定了Pgs肽E/二芥酰磷脂酰胆碱(DEruPC)/水体系的相行为。然后将得到的相行为与先前由莫林等人研究的溶解在二油酰磷脂酰胆碱和水中的Pgs肽E的相行为进行比较。[《生物物理杂志》73(1997)3078 - 3088]。这旨在回答该肽疏水部分的长度与脂质双层疏水厚度的差异(疏水错配)是否会影响相行为这一问题。该肽大多具有跨膜取向且呈α螺旋构象。在35℃时,在高肽含量(肽/脂质摩尔比(p/l)≥1:15)和高含水量(≥50%,w/w)的DEruPC中形成各向同性相。在55℃和65℃时,在所研究的所有肽含量下,在高含水量(≥50%,w/w)时诱导形成各向同性相(在本研究条件下脂质/水体系中不形成各向同性相)。在高肽含量(p/l≥1:15)时,在55℃和65℃下,在20%和40%(w/w)的含水量下形成各向同性相。对这两个同源脂质体系相行为的比较揭示了显著的相似性,尽管两个脂质双层的厚度相差7埃。这表明根据疏水错配来解释相行为不适用于这些体系。Pgs肽E的C末端是两亲性的,并且该肽的相当一部分位于双层疏水部分之外,这一肽的特性在很大程度上会影响脂质/肽的相行为。