Anal Chem. 2019 Jul 2;91(13):8466-8475. doi: 10.1021/acs.analchem.9b01562. Epub 2019 Jun 19.
Intracellular pH plays a key role in physiology, and its measurement in living specimens remains a crucial task in biology. Fluorescent protein-based pH sensors have gained widespread use, but there is limited spectral diversity for multicolor detection, and it remains a challenge to measure absolute pH values. Here we demonstrate that mCherryTYG is an excellent fluorescence lifetime pH sensor that significantly expands the modalities available for pH quantification in live cells. We first report the 1.09 Å X-ray crystal structure of mCherryTYG, exhibiting a fully matured chromophore. We next determine that it has an extraordinarily large dynamic range with a 2 ns lifetime change from pH 5.5 to 9.0. Critically, we find that the sensor maintains a p K of 6.8 independent of environment, whether as the purified protein in solution or expressed in live cells. Furthermore, the lifetime measurements are robustly independent of total fluorescence intensity and scatter. We demonstrate that mCherryTYG is a highly effective sensor using time-resolved fluorescence spectroscopy on live-cell suspensions, which has been previously overlooked as an easily accessible approach for quantifying intracellular pH. As a red fluorescent sensor, we also demonstrate that mCherryTYG is spectrally compatible with the ATeam sensor and EGFP for simultaneous dual-color measurements of intracellular pH, ATP, and extracellular pH. In a proof-of-concept, we quantify acute respiration-dependent pH homeostasis that exhibits a stoichiometric relationship with the ATP-generating capacity of the carbon fuel choice in E. coli. Broadly speaking, our work presents a previously unemployed methodology that will greatly facilitate continuous pH quantification.
细胞内 pH 值在生理学中起着关键作用,其在活体标本中的测量仍然是生物学中的一项关键任务。基于荧光蛋白的 pH 传感器已经得到了广泛的应用,但多色检测的光谱多样性有限,测量绝对 pH 值仍然是一个挑战。在这里,我们证明 mCherryTYG 是一种出色的荧光寿命 pH 传感器,它显著扩展了活细胞中 pH 定量的模态。我们首先报告了 mCherryTYG 的 1.09 Å X 射线晶体结构,展示了一个完全成熟的生色团。我们接下来确定它具有非常大的动态范围,其荧光寿命在 pH 5.5 到 9.0 之间变化 2 ns。至关重要的是,我们发现该传感器在环境中保持 p K 值为 6.8,无论是在溶液中的纯蛋白还是在活细胞中表达。此外,传感器的寿命测量与总荧光强度和散射完全无关。我们通过对活细胞悬浮液的时间分辨荧光光谱证明了 mCherryTYG 是一种非常有效的传感器,这在以前被忽视了,因为它是一种易于获取的定量细胞内 pH 值的方法。作为一种红色荧光传感器,我们还证明了 mCherryTYG 与 ATeam 传感器和 EGFP 光谱兼容,可用于同时进行细胞内 pH 值、ATP 和细胞外 pH 值的双色测量。在一个概念验证中,我们定量了急性呼吸依赖性 pH 动态平衡,其与大肠杆菌中碳燃料选择产生的 ATP 生成能力呈化学计量关系。总的来说,我们的工作提出了一种以前未被使用的方法,将极大地促进连续 pH 定量。