Opt Express. 2022 Aug 1;30(16):29063-29073. doi: 10.1364/OE.459861.
Reliable measurements of calibration parameters are crucial for quantitative three-cube Förster resonance energy transfer (FRET) measurements. Here we have developed a single-cell-based calibration method (SCC-FRET), which can simultaneously obtain spectral crosstalk correction parameters (β and δ) and calibration parameters (G and k) of a quantitative FRET system by imaging a cell expressing one kind of standard FRET plasmid with a known FRET efficiency (E) and the donor-to-acceptor concentration ratio (RC). We performed the SCC-FRET method on a three-cube FRET microscopy for the cells expressing C5V, and obtained β = 0.150 ± 0.000, δ = 0.610 ± 0.000, G = 2.840 ± 0.065, and k = 0.847 ± 0.013. These parameters were used to measure the E and RC values of C17V and C32V constructs in living cells and obtained EC17V = 0.382 ± 0.010 and EC32V = 0.311 ± 0.007, RC17V = 1.010 ± 0.023 and RC32V = 1.050 ± 0.022, consistent with the reported values, demonstrating the effectiveness of the the SCC-FRET method. We also performed the SCC-FRET method for the cells with different S/N levels (S/N > 10, 10 > S/N > 3, 3 > S/N > 1, respectively), and obtained consistent system calibration parameters under different S/N levels, indicating excellent robustness. SCC-FRET requires only imaging a cell expressing one kind of standard FRET plasmid for measuring all calibration parameters under identical imaging conditions, rendering the SCC-FRET method extremely convenient, accurate, and robust. The SCC-FRET provides strong support for expanding the biological application of quantitative FRET analysis in living cells.
可靠的校准参数测量对于定量三立方体Förster 共振能量转移(FRET)测量至关重要。在这里,我们开发了一种基于单细胞的校准方法(SCC-FRET),通过对表达一种已知 FRET 效率(E)和供体-受体浓度比(RC)的标准 FRET 质粒的细胞进行成像,同时可以获得定量 FRET 系统的光谱串扰校正参数(β和δ)和校准参数(G 和 k)。我们在表达 C5V 的细胞上进行了 SCC-FRET 方法的三立方 FRET 显微镜检测,得到β=0.150±0.000,δ=0.610±0.000,G=2.840±0.065,k=0.847±0.013。这些参数用于测量活细胞中 C17V 和 C32V 构建体的 E 和 RC 值,并获得 EC17V=0.382±0.010 和 EC32V=0.311±0.007,RC17V=1.010±0.023 和 RC32V=1.050±0.022,与报道值一致,证明了 SCC-FRET 方法的有效性。我们还对具有不同 S/N 水平的细胞(S/N>10、10>S/N>3、3>S/N>1,分别)进行了 SCC-FRET 方法,在不同 S/N 水平下获得了一致的系统校准参数,表明其具有出色的稳健性。SCC-FRET 仅需要对表达一种标准 FRET 质粒的细胞进行成像,即可在相同的成像条件下测量所有校准参数,使得 SCC-FRET 方法极其方便、准确和稳健。SCC-FRET 为在活细胞中扩展定量 FRET 分析的生物学应用提供了有力支持。