Hristova Kalina, White Stephen H
Department of Materials Science and Engineering, The Johns Hopkins University, Baltimore, Maryland 21218, USA.
Biochemistry. 2005 Sep 20;44(37):12614-9. doi: 10.1021/bi051193b.
Knowing the partitioning free energy of unfolded polypeptides into membrane interfaces is necessary for understanding membrane protein stability and for designing antimicrobial and other peptides. Experiment-based whole-residue free-energy (hydropathy) scales for amino acids in unfolded peptides, derived from the partitioning of host-guest pentapeptides (Ac-WLXLL) into the interfaces of phosphatidylcholine bilayers and into n-octanol, have been determined by W. C. Wimley, S. H. White, and colleagues [(1996) Nat. Struc. Biol. 3, 842; Wimley, W. C. et al. (1996) Biochemistry 35, 5109]. These scales offer the possibility of computing absolute partitioning free energies of unfolded peptides given only their amino acid sequences. However, the scales are incomplete, because partitioning free energies of N- and C-terminal groups are missing. To complete the scales, we have measured the pH-dependent partitioning of the host-guest pentapeptide variants AcWL-X-LL-NH(2) and WL-X-LL-NH(2) (X = G or W) into palmitoyloleoylphosphatidylcholine (POPC) bilayer interfaces and n-octanol. These measurements, in combination with the earlier ones, lead to hydrophobicity scale values for protonation, deprotonation, or acetylation of the N terminus and protonation, deprotonation, or amidation of the C terminus. A surprising finding is that a charged N terminus has a much smaller effect on bilayer partitioning than a charged C terminus. We present a simple algorithm for computing the absolute partitioning free energies of unfolded peptides into the phosphatidylcholine bilayer interface.
了解未折叠多肽在膜界面中的分配自由能对于理解膜蛋白稳定性以及设计抗菌肽和其他肽类至关重要。W. C. Wimley、S. H. White及其同事通过主客体五肽(Ac-WLXLL)在磷脂酰胆碱双层界面和正辛醇中的分配,确定了未折叠肽中氨基酸基于实验的全残基自由能(亲水性)标度[(1996年)《自然结构生物学》3卷,842页;Wimley, W. C.等人(1996年)《生物化学》35卷,5109页]。这些标度使得仅根据氨基酸序列就能计算未折叠肽的绝对分配自由能成为可能。然而,这些标度并不完整,因为缺少N端和C端基团的分配自由能。为了完善这些标度,我们测量了主客体五肽变体AcWL-X-LL-NH₂和WL-X-LL-NH₂(X = G或W)在棕榈酰油酰磷脂酰胆碱(POPC)双层界面和正辛醇中pH依赖性的分配情况。这些测量结果与早期的结果相结合,得出了N端质子化、去质子化或乙酰化以及C端质子化、去质子化或酰胺化的疏水性标度值。一个惊人的发现是,带电荷的N端对双层分配的影响比带电荷的C端小得多。我们提出了一种简单的算法来计算未折叠肽在磷脂酰胆碱双层界面中的绝对分配自由能。