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IKMTSL-PTE,一种基于磷脂的 EPR 探针,用于研究中性 pH 下生物界面的表面静电势:温度和溶剂有效介电常数的影响。

IKMTSL-PTE, a Phospholipid-Based EPR Probe for Surface Electrostatic Potential of Biological Interfaces at Neutral pH: Effects of Temperature and Effective Dielectric Constant of the Solvent.

机构信息

Department of Chemistry, North Carolina State University , 2620 Yarbrough Drive, Raleigh, North Carolina 27695-8204, United States.

N.N. Vorozhtsov Novosibirsk Institute of Organic Chemistry, SB RAS , Lavrentiev Avenue 9, Novosibirsk 630090, Russia.

出版信息

J Phys Chem B. 2017 Mar 23;121(11):2443-2453. doi: 10.1021/acs.jpcb.7b00592. Epub 2017 Mar 10.

Abstract

The synthesis and characterization of a lipidlike electrostatic spin probe, (S)-2,3-bis(palmitoyloxy)propyl 2-((4-(4-(dimethylamino)-2-ethyl-1-oxyl-5,5-dimethyl-2,5-dihydro-1H-imidazol-2-yl)benzyl)disulfanyl)ethyl phosphate (IKMTSL-PTE), are being reported. The intrinsic pK of IKMTSL-PTE was determined by X-band (9.5 GHz) electron paramagnetic resonance (EPR) titration of a water-soluble model compound, 4-(dimethylamino)-2-ethyl-2-(4-(((2-hydroxyethyl)disulfanyl)methyl)phenyl)-5,5-dimethyl-2,5-dihydro-1H-imidazol-1-oxyl (IKMTSL-ME), an adduct of methanethiosulfonate spin label IKMTSL and 2-mercaptoethanol. The pK of IKMTSL-ME in bulk aqueous solutions was found to be significantly higher than that of 4-(((2-hydroxyethyl)disulfanyl)methyl)-2,2,3,5,5-pentamethylimidazolidin-1-oxyl (IMTSL-ME), an adduct of the corresponding methanethiosulfonate spin label IMTSL and 2-mercaptoethanol (17 °C, pK = 6.16 ± 0.03 vs 20 °C, pK = 3.33 ± 0.03, respectively). A series of EPR titration experiments with IKMTSL-ME in aqueous solutions containing 0-60% v/v isopropanol have been carried out at 17 and 48 °C to determine the effects of temperature and bulk dielectric permittivity constant, ε, on the probe pK. A linear relationship between the probe pK and ε has been established and found to be essentially the same at 17 and 48 °C. The polarity term contributing to the pK of IKMTSL-PTE at an uncharged lipidlike interface was determined by incorporating the probe into electrically neutral micelles formed from nonionic detergent Triton X-100, and it was found, similar to IMTSL-PTE, to be negative. In negatively charged DMPG lipid bilayers, IKMTSL-PTE exhibits ionization transitions with significantly higher pK values than those previously reported for IMTSL-PTE (e.g., at 17 °C, pK = 7.80 ± 0.03 vs pK = 5.70 ± 0.05). The surface electrostatic potentials of DMPG lipid bilayers calculated using IKMTSL-PTE titration data were found to be somewhat lower than those calculated using IMTSL-PTE. The lower values measured by IKMTSL-PTE are the likely consequences of the structure of the linker that positions the reporter nitroxide further away from the bilayer plane into aqueous phase. Overall, the ionization transitions of IKMTSL-PTE with pK values close to the neutral pH range make this lipidlike molecule a valuable spectroscopic EPR probe for studying the electrostatic phenomena at biological interfaces, including lipid bilayer/membrane protein systems, that could be unstable in the acidic pH range accessible by the previously available probes.

摘要

正在报道一种类脂静电旋转探针(S)-2,3-双(棕榈酰氧基)丙基 2-((4-(4-(二甲基氨基)-2-乙基-1-氧代-5,5-二甲基-2,5-二氢-1H-咪唑-2-基)苄基)二硫基)乙基磷酸盐(IKMTSL-PTE)的合成和表征。通过水溶性模型化合物 4-(二甲基氨基)-2-乙基-2-(4-(((2-羟乙基)二硫基)甲基)苯基)-5,5-二甲基-2,5-二氢-1H-咪唑-1-氧代(IKMTSL-ME)的 X 波段(9.5GHz)电子顺磁共振(EPR)滴定,确定了 IKMTSL-PTE 的固有 pK 值,该模型化合物是甲硫氨酸硫磺酸旋转标记 IKMTSL 和 2-巯基乙醇的加合物。在 bulk 水溶液中,IKMTSL-ME 的 pK 值明显高于相应的甲硫氨酸硫磺酸旋转标记 IMTSL 和 2-巯基乙醇的加合物 4-(((2-羟乙基)二硫基)甲基)-2,2,3,5,5-五甲基咪唑烷-1-氧代(IMTSL-ME)(17°C,pK = 6.16±0.03 vs 20°C,pK = 3.33±0.03)。在 17 和 48°C 下,在含有 0-60%v/v 异丙醇的水溶液中进行了一系列 IKMTSL-ME 的 EPR 滴定实验,以确定温度和 bulk 介电常数 ε 对探针 pK 的影响。已经建立了探针 pK 与 ε 之间的线性关系,并且在 17 和 48°C 下发现基本上是相同的。通过将探针掺入由非离子型去污剂 Triton X-100 形成的电中性胶束中来确定位于不带电类脂界面处的 IKMTSL-PTE 的极性项对 pK 的贡献,并且发现与 IMTSL-PTE 相似,它为负值。在带负电荷的 DMPG 脂质双层中,IKMTSL-PTE 表现出具有比以前报道的 IMTSL-PTE 更高 pK 值的电离跃迁(例如,在 17°C,pK = 7.80±0.03 vs pK = 5.70±0.05)。使用 IKMTSL-PTE 滴定数据计算得到的 DMPG 脂质双层的表面静电势略低于使用 IMTSL-PTE 计算得到的静电势。由 IKMTSL-PTE 测量到的较低值可能是由于将报告的硝氧自由基定位在更远离双层平面进入水相的连接物的结构所致。总体而言,具有接近中性 pH 范围的 pK 值的 IKMTSL-PTE 的电离跃迁使其成为一种有价值的光谱 EPR 探针,可用于研究包括脂质双层/膜蛋白系统在内的生物界面处的静电现象,这些系统在以前可用的探针可达到的酸性 pH 范围内可能不稳定。

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