Ahn Hye-sun, Cho Wonmi, Kim Joung-min, Joshi Bishnu Prasad, Park Jun-won, Lohani Chuda Raj, Cho Hyeongjin, Lee Keun-Hyeung
Bioorganic Chemistry Laboratory, Department of Chemistry, Inha University, 253 Younghyun-Dong, Nam-Gu, Inchon-City, 402-751, Republic of Korea.
Bioorg Med Chem. 2008 Apr 1;16(7):4127-37. doi: 10.1016/j.bmc.2008.01.019. Epub 2008 Jan 16.
We synthesized cyclic disulfide-bonded (i, i+4) peptides with various net positive charges (+2-+5) from linear peptides derived from the alpha helical domain of Tenecin 1, an insect defensin, and investigated the effect of the intradisulfide bridge (i, i+4) on hydrophobicity, secondary structure, leakage activity and binding activity for large unilamellar vesicles, antimicrobial activity, and hemolytic activity. Intradisulfide bridge formation of the peptides resulted in the increase of amphiphilicity and hydrophobicity. Cyclic forms of the peptides did not deeply penetrate into PG/PC (1:1, mole ratio) large unilamellar vesicles and had a decreased lipid membrane perturbation activity for PG/PC LUVs. When the peptides interacted with PG/CL (2:1, mole ratio) LUVs, cyclic peptides with a high net positive charge (+4-+5) showed similar binding affinities and leakage activities for vesicles to those of linear forms, whereas cyclic peptides with a low net positive charge (+2-+3) exhibited lower leakage activity than their linear forms. CD spectra indicate that the intradisulfide bridge (i, i+4) provided little conformational constraint to linear peptides in buffer solution but resulted in the decrease of alpha helicity of the peptides in lipid membrane mimic conditions. The cyclic peptide with the highest net positive charge had a similar antibacterial activity to that of the linear peptide, whereas the cyclic peptides with a low net positive charge (+3-+4) exhibited lower antibacterial activity than their linear forms. The cyclic peptides of an appropriate net charge showed more potent activities against some bacteria than those of linear forms under high salt conditions.
我们从昆虫防御素Tenecin 1的α螺旋结构域衍生的线性肽合成了具有不同净正电荷(+2至+5)的环状二硫键连接的(i,i + 4)肽,并研究了分子内二硫键(i,i + 4)对疏水性、二级结构、对大单层囊泡的泄漏活性和结合活性、抗菌活性以及溶血活性的影响。肽形成分子内二硫键导致两亲性和疏水性增加。肽的环状形式不会深入穿透PG/PC(1:1,摩尔比)大单层囊泡,并且对PG/PC大单层囊泡的脂质膜扰动活性降低。当肽与PG/CL(2:1,摩尔比)大单层囊泡相互作用时,具有高净正电荷(+4至+5)的环状肽对囊泡的结合亲和力和泄漏活性与线性形式相似,而具有低净正电荷(+2至+3)的环状肽的泄漏活性低于其线性形式。圆二色光谱表明,分子内二硫键(i,i + 4)在缓冲溶液中对线性肽几乎没有构象限制,但在脂质膜模拟条件下导致肽的α螺旋度降低。具有最高净正电荷的环状肽与线性肽具有相似的抗菌活性,而具有低净正电荷(+3至+4)的环状肽的抗菌活性低于其线性形式。在高盐条件下,具有适当净电荷的环状肽对某些细菌的活性比线性肽更强。