...
首页> 外文期刊>Biochemistry >Green fluorescent protein variants as ratiometric dual emission pH sensors. 1. Structural characterization and preliminary application
【24h】

Green fluorescent protein variants as ratiometric dual emission pH sensors. 1. Structural characterization and preliminary application

机译:绿色荧光蛋白变体作为比例双发射pH传感器。 1.结构表征和初步应用

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Novel dual emission, pH-sensitive variants of the green fluorescent protein (GFP) have been constructed and are suitable for ratiometric emission measurements in vivo. This new class of GFPs, termed deGPFs, results from substituion of wild-type residue 65 with threonine and residues 148 and/or 203 with cysteine. deGFPs display pK_a values ranging from 6.8 to 8.0 and emission that switches from a green form (lambda_(max) approx 515 nm) to a blue form (lambda_(max) approx 460 nm) with acidifying pH. IN this report we analyze in most detail the deGFP1 variant (S65T/H148G/T203C, pK_a approx 8.0) and the deGFP4 variant (S65T/C48S/H148C/T203C, pK_a approx 7.3). In the following paper [McAnaney, T.B., Park, E.S., Hanson, G.T., Remington, S.J., and Boxer, S.G. (2002) Biochemistry 41, 15489-15494], data obtained by ultrafast fluorescence upconversion spectroscopy can be described by a kinetic model that includes an excited-state proton-transfer pathway at high pH but not at low pH. Crystal structure analyses of deGFP1 at high-pH and low-pH conformations were performed to elucidate the basis for the dual emission characteristics. At low pH the structure does not contain a hydrogen bond network that would support rapid transfer of a proton from the excited state of the neutral chromophore to a suitable acceptor, hence blue emission is observed. At high pH, backbone rearrangements induced by changes in the associated hydrogen bond network permit excited-state proton transfer from the excited state of the neutral chromophore to the bulk solvent via Ser147 and bound water molecules, resulting in green emission from the anionic chromophore. Comparative analysis suggests that the basis for dual emissions is elimination of the wild-type proton-transfer network by the S65T substitution, a general reduction in hydrogen-bonding opportunities, and a concomitant increase in the hydrophobic nature of the chromophore environment resulting from the cysteine substitutions. We evaluated the suitability of the deGFP4 variant for intracellular pH measurements in memmalian cells by transient expression in PS120 fibroblasts. The responses of deGFP4 and a commercially available pH-sensitive dye, SNARF-1, to changes in pH were compared in the same cells. Results show that the dynamic range of the emission ratio change is comparable between the two pH sensors over the range examined. Two-photon excitation was found to elicit a better deGFP4 fluorescent signal above cellular autofluorescence when compared to conventional confocal microscopy. Given their favorable optical characteristics, sutable pK_a's for the physiological pH range, and suitability for ratiometric measurements, dual emission GFPs should make excellent probes for studying pH in vivo.
机译:已经构建了绿色荧光蛋白(GFP)的新型双发射,pH敏感变体,适用于体内的比例发射测量。这类称为deGPF的GFP是由野生型残基65替换为苏氨酸,残基148和/或203替换为半胱氨酸而产生的。 deGFPs的pK_a值介于6.8至8.0之间,并且随着pH值的酸化,发射从绿色形式(λ(最大)约515 nm)切换为蓝色形式(lambda_(最大)约460 nm)。在本报告中,我们最详细地分析了deGFP1变体(S65T / H148G / T203C,pK_a约8.0)和deGFP4变体(S65T / C48S / H148C / T203C,pK_a约7.3)。在以下论文中[McAnaney,TB,Park,ES,Hanson,GT,Remington,SJ,and Boxer,SG(2002)Biochemistry 41,15489-15494],可以通过动力学模型描述通过超快荧光上转换光谱获得的数据其中包括在高pH值而不是低pH值的激发态质子转移途径。进行了在高pH和低pH构象下的deGFP1的晶体结构分析,以阐明双重发射特性的基础。在低pH下,该结构不包含氢键网络,该网络将支持质子从中性发色团的激发态快速转移到合适的受体,因此观察到蓝色发射。在高pH下,由相关氢键网络的变化引起的主链重排允许激发态质子通过Ser147和结合的水分子从中性发色团的激发态转移到本体溶剂中,从而导致阴离子发色团发出绿色光。比较分析表明,双重排放的基础是通过S65T取代消除了野生型质子转移网络,氢键结合机会普遍减少,并且半胱氨酸导致发色团环境的疏水性随之增加换人。我们通过在PS120成纤维细胞中的瞬时表达,评估了deGFP4变体在哺乳动物细胞中进行细胞内pH测量的适用性。在同一细胞中比较了deGFP4和市售的pH敏感染料SNARF-1对pH的响应。结果表明,在所检查的范围内,两个pH传感器之间的排放比变化的动态范围相当。与传统的共聚焦显微镜相比,发现双光子激发比细胞自发荧光能引发更好的deGFP4荧光信号。鉴于其良好的光学特性,在生理pH范围内合适的pK_a和适用于比率测量,双发射GFPs应该成为研究体内pH的出色探针。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号