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Binding Behavior of Lysine-Containing Helical Peptides to DNA Duplexes Immobilized on a 27 MHz Quartz-Crystal Microbalance

机译:含赖氨酸的螺旋肽与固定在27 MHz石英晶体微天平上的DNA双链体的结合行为

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摘要

Binding behavior of alanine-based oligopeptides containing four or six cationic lysine residues (K4 and K6) to a dA_(30)-dT_(30) or dG_(30)-dC_(30) dupleximmobilized on a 27 MHz quartz-crystal microbalance (QCM) were studied in an aqueous buffer solution. Eight kinds of alanine-based oligopeptides were prepared systematically, in which positions of K residues were changed in the helical structure according to common features in DNA recognition helices of the DNA binding protein. The binding amount (#DELTA#m) on a nanogram scale and binding constant (K_a) could be obtained from frequency decreases (mass increases) of the DNA-immobilized QCM. Cationic oligopeptides were confirmed, from circular dichroism (CD) spectra, to form #alpha#-helical conformations as a result of the binding to DNA strands with random conformations. #DELTA#m and K_a values were greatly affected by ionic strength and the position of cationic K residues of peptides. At the low ionic strength, all peptides can bind with the almost same affinity to DNA strands by electrostatic interactions. At the high ionic strength of 40 mM NaCl, oligopeptides with cationic K groups at the one side of the #alpha# helix showed larger #DELTA#m_(max) (35 +- 5 ng cm~(-2)) and K_a values (10~4 M~(-1)) than those of oligopeptides having K groups in random positions (#DELTA#m = 10 +- 5 ng cm~(-2) and K_a = 10~3 M~(-1)).
机译:含四个或六个阳离子赖氨酸残基(K4和K6)的基于丙氨酸的寡肽与固定在27 MHz石英晶体微天平上的dA_(30)-dT_(30)或dG_(30)-dC_(30)的结合行为( (QCM)在缓冲水溶液中研究。系统地制备了8种基于丙氨酸的寡肽,其中K残基的位置根据DNA结合蛋白的DNA识别螺旋的共同特征在螺旋结构中发生了变化。可以从DNA固定化的QCM的频率降低(质量增加)获得纳克级的结合量(#DELTA#m)和结合常数(K_a)。从圆二色性(CD)光谱中确认阳离子寡肽形成#alpha#螺旋构象,这是由于其以随机构象结合到DNA链上的结果。离子强度和肽的阳离子K残基的位置极大地影响了#DELTA#m和K_a值。在低离子强度下,所有肽都可以通过静电相互作用以几乎相同的亲和力与DNA链结合。在40 mM NaCl的高离子强度下,#alpha#螺旋一侧带有阳离子K基团的寡肽显示出更大的#DELTA#m_(max)(35 + -5 ng cm〜(-2))和K_a值(10〜4 M〜(-1))比随机位置上具有K基团的寡肽(#DELTA#m = 10 + -5 ng cm〜(-2)和K_a = 10〜3 M〜(-1) )。

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