Young R M, Arnette J K, Roess D A, Barisas B G
Department of Chemistry, Colorado State University, Fort Collins 80523.
Biophys J. 1994 Aug;67(2):881-8. doi: 10.1016/S0006-3495(94)80549-1.
We describe practical aspects of photobleaching fluorescence energy transfer measurements on individual living cells. The method introduced by T. M. Jovin and co-workers (see, most recently, Kubitscheck et al. 1993. Biophys. J. 64:110) is based on the reduced rate of irreversible photobleaching of donor fluorophores when acceptor fluorophores are present. Measuring differences in donor photobleaching rates on cells labeled with donor only (fluorescein isothiocyanate-conjugated proteins) and with both donor and acceptor (tetramethylrhodamine-conjugated proteins) allows calculation of the fluorescence energy transfer efficiency. We assess possible methods of data analysis in light of the underlying processes of photobleaching and energy transfer and suggest optimum strategies for this purpose. Single murine B lymphocytes binding various ratios of donor and acceptor conjugates of tetravalent concanavalin A (Con A) and divalent succinyl Con A were examined for interlectin energy transfer by these methods. For Con A, a maximum transfer efficiency of 0.49 +/- 0.02 was observed. Under similar conditions flow cytometric measurements of donor quenching yielded a value of 0.54 +/- 0.03. For succinyl Con A, the maximum transfer efficiency was 0.36. To provide concrete examples of quantities arising in such energy transfer determinations, we present examples of individual cell data and kinetic analyses, population rate constant distributions, and error estimates for the various quantities involved.
我们描述了对单个活细胞进行光漂白荧光能量转移测量的实际操作。T. M. 约文及其同事所介绍的方法(见最近的库比茨克等人,1993年。《生物物理学杂志》64:110)基于当存在受体荧光团时供体荧光团不可逆光漂白速率的降低。测量仅用供体(异硫氰酸荧光素偶联蛋白)标记的细胞以及用供体和受体(四甲基罗丹明偶联蛋白)标记的细胞中供体光漂白速率的差异,可计算荧光能量转移效率。我们根据光漂白和能量转移的潜在过程评估了可能的数据分析方法,并为此提出了最佳策略。通过这些方法检测了结合不同比例的四价伴刀豆球蛋白A(Con A)和二价琥珀酰Con A的供体和受体偶联物的单个小鼠B淋巴细胞的凝集素间能量转移。对于Con A,观察到的最大转移效率为0.49±0.02。在类似条件下,通过流式细胞术测量供体淬灭得到的值为0.54±0.03。对于琥珀酰Con A,最大转移效率为0.36。为了提供在此类能量转移测定中出现的量的具体示例,我们给出了单个细胞数据和动力学分析、群体速率常数分布以及所涉及各种量的误差估计的示例。