Leiding Thom, Górecki Kamil, Kjellman Tomas, Vinogradov Sergei A, Hägerhäll Cecilia, Arsköld Sindra Peterson
Department of Biochemistry, Center for Chemistry and Chemical Engineering, Lund University, 22100 Lund, Sweden.
Anal Biochem. 2009 May 15;388(2):296-305. doi: 10.1016/j.ab.2009.02.023. Epub 2009 Feb 25.
Accurate real-time measurements of proton concentration gradients are pivotal to mechanistic studies of proton translocation by membrane-bound enzymes. Here we report a detailed characterization of the pH-sensitive fluorescent nanoprobe Glu(3), which is well suited for pH measurements in microcompartmentalized biological systems. The probe is a polyglutamic porphyrin dendrimer in which multiple carboxylate termini ensure its high water solubility and prevent its diffusion across phospholipid membranes. The probe's pK is in the physiological pH range, and its protonation can be followed ratiometrically by absorbance or fluorescence in the ultraviolet-visible spectral region. The usefulness of the probe was enhanced by using a semiautomatic titration system coupled to a charge-coupled device (CCD) spectrometer, enabling fast and accurate titrations and full spectral coverage of the system at millisecond time resolution. The probe's pK was measured in bulk solutions as well as inside large unilamellar vesicles in the presence of physiologically relevant ions. Glu(3) was found to be completely membrane impermeable, and its distinct spectroscopic features permit pH measurements inside closed membrane vesicles, enabling quantitative mechanistic studies of membrane-spanning proteins. Performance of the probe was demonstrated by monitoring the rate of proton leakage through the phospholipid bilayer in large vesicles with and without the uncoupler gramicidin present. Overall, as a probe for biological proton translocation measurements, Glu(3) was found to be superior to the commercially available pH indicators.
准确实时测量质子浓度梯度对于膜结合酶质子转运的机制研究至关重要。在此,我们报告了对pH敏感荧光纳米探针Glu(3)的详细表征,它非常适合在微区室化生物系统中进行pH测量。该探针是一种聚谷氨酸卟啉树枝状大分子,其中多个羧基末端确保其高水溶性并防止其跨磷脂膜扩散。该探针的pK处于生理pH范围内,其质子化可以通过紫外-可见光谱区域的吸光度或荧光进行比率测定。通过使用与电荷耦合器件(CCD)光谱仪耦合的半自动滴定系统增强了该探针的实用性,能够以毫秒时间分辨率进行快速准确的滴定并实现系统的全光谱覆盖。在存在生理相关离子的情况下,在本体溶液以及大单层囊泡内部测量了该探针的pK。发现Glu(3)完全不能透过膜,其独特的光谱特征允许在封闭膜囊泡内部进行pH测量,从而能够对跨膜蛋白进行定量机制研究。通过监测在有和没有解偶联剂短杆菌肽存在的情况下大囊泡中质子通过磷脂双层泄漏的速率,证明了该探针的性能。总体而言,作为生物质子转运测量的探针,发现Glu(3)优于市售的pH指示剂。