Frank J, Zouni A, van Hoek A, Visser A J, Clarke R J
Department of Physical Chemistry, Fritz-Haber-Institut der Max-Planck-Gesellschaft, Berlin, Germany.
Biochim Biophys Acta. 1996 Apr 3;1280(1):51-64. doi: 10.1016/0005-2736(95)00277-4.
Fluorescence titrations have shown that the voltage-sensitive probe RH421 interacts with the water-soluble protein ribulose-1,5-bisphosphate carboxylase/oxygenase and with Na+,K(+)-ATPase membrane fragments. The probe exhibits significantly different fluorescence excitation spectra in pure lipid and pure protein environments. Experiments with a range of polyamino acids showed interactions of the probe with tyrosine, lysine and arginine residues. At saturating RH421 concentrations (> or = microM) the probe quenches 60-75% of the total tryptophan fluorescence of the Na+,K(+)-ATPase preparation. Inhibition of the hydrolytic activity of the Na+,K(+)-ATPase occurs at RH421 concentrations in the micromolar range. This may be due to a probe-induced change in membrane fluidity. The sensitivity of the probe towards conformational changes of the Na+,K(+)-ATPase decreases hyperbolically as one increases the probe concentration. The decrease in sensitivity correlates well with association of the probe in the vicinity of membrane protein, as measured by tryptophan quenching. These results have important practical consequences for the application of RH421 as a voltage indicator in membrane preparations. Based on these and previously reported results, the fluorescent response of RH421 to the ATP-induced conformational change of the Na+,K+-ATPase is consistent with either a redistribution of dye from the liquid-crystalline lipid matrix into the vicinity of membrane protein or a reorganisation of the lipids surrounding the protein into a more rigid structure caused by the conformational change of the protein.
荧光滴定表明,电压敏感探针RH421与水溶性蛋白核酮糖-1,5-二磷酸羧化酶/加氧酶以及Na⁺,K⁺-ATP酶膜片段相互作用。该探针在纯脂质和纯蛋白质环境中表现出显著不同的荧光激发光谱。一系列聚氨基酸实验表明,该探针与酪氨酸、赖氨酸和精氨酸残基相互作用。在RH421浓度饱和(≥微摩尔)时,该探针可淬灭Na⁺,K⁺-ATP酶制剂中60%-75%的总色氨酸荧光。在微摩尔范围内的RH421浓度下,Na⁺,K⁺-ATP酶的水解活性受到抑制。这可能是由于探针诱导的膜流动性变化所致。随着探针浓度的增加,该探针对Na⁺,K⁺-ATP酶构象变化的敏感性呈双曲线下降。敏感性的降低与通过色氨酸淬灭测量的探针在膜蛋白附近的缔合密切相关。这些结果对于将RH421用作膜制剂中的电压指示剂具有重要的实际意义。基于这些以及先前报道的结果,RH421对ATP诱导的Na⁺,K⁺-ATP酶构象变化的荧光响应与染料从液晶脂质基质重新分布到膜蛋白附近或蛋白质构象变化导致蛋白质周围脂质重新组织成更刚性结构一致。