首页> 外文期刊>Journal of the American Chemical Society >Tunable pK of amino acid residues at the air-water interface gives an L-zyme (Langmuir enzyme)
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Tunable pK of amino acid residues at the air-water interface gives an L-zyme (Langmuir enzyme)

机译:在空气-水界面的氨基酸残基可调节的pK产生L-酶(Langmuir酶)

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摘要

Various amino acid-carrying amphiphiles were synthesized, and the pK values of the attached amino acid residues were investigated at the air-water interface and in aqueous vesicles using pi-A isotherm measurements, H-1 NMR titration, and IR spectroscopy in reflection-adsorption mode. The 6-amino group of the Lys residue embedded at the air-water interface displays a significant pK shift (4 or 5 unit) compared with that observed in bulk water, while the pK shift in aqueous vesicles was not prominent (ca. 1 unit). Moreover, pK values of the amino acids at the air-water interface can be tuned simply by control of the subphase ionic strength as well as by molecular design of the amphiphiles. A simple equation based on the dominant contribution by the electrostatic energy to the pK shift reproduces well the surface pressure difference between protonated and unprotonated species, suggesting a reduction in the apparent dielectric constant at the air-water interface. Hydrolysis of a p-nitrophenyl ester derivative was used as a model reaction to demonstrate the use of the Lys-functionalized monolayer. Efficient hydrolysis was observed, even at neutral pH, after tuning of pK for the Lys residue in the monolayer, which is a similar case to that occurring in biological catalysis.
机译:合成了各种携带氨基酸的两亲物,并使用pi-A等温线测量,H-1 NMR滴定和红外光谱在反射光谱仪中研究了空气-水界面和水囊中附着的氨基酸残基的pK值。吸附模式。与在散装水中观察到的相比,嵌入空气-水界面的Lys残基的6-氨基基团显示出显着的pK位移(4或5个单位),而在水囊泡中的pK位移并不明显(约1个单位) )。而且,可以通过控制亚相离子强度以及通过两亲物的分子设计来简单地调节空气-水界面处氨基酸的pK值。一个基于静电能对pK位移的主要贡献的简单方程式很好地再现了质子化和未质子化物质之间的表面压力差,表明在空气-水界面的表观介电常数降低了。对硝基苯基酯衍生物的水解被用作模型反应,以证明Lys-官能化的单层的使用。在调整单层中Lys残基的pK的pK后,即使在中性pH下也观察到了有效的水解,这与生物催化中发生的情况相似。

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