New Mexico State University, Department of Chemical and Materials Engineering, Las Cruces, New Mexic, United States.
University of New Mexico, School of Medicine and Center for Molecular Discovery, Albuquerque, New Me, United States.
J Biomed Opt. 2018 Jul;23(7):1-10. doi: 10.1117/1.JBO.23.7.075004.
Förster resonance energy transfer (FRET) continues to be a useful tool to study movement and interaction between proteins within living cells. When FRET as an optical technique is measured with flow cytometry, conformational changes of proteins can be rapidly measured cell-by-cell for the benefit of screening and profiling. We exploit FRET to study the extent of activation of α4β1 integrin dimers expressed on the surface of leukocytes. The stalk-like transmembrane heterodimers when not active lay bent and upon activation extend outward. Integrin extension is determined by changes in the distance of closest approach between an FRET donor and acceptor, bound at the integrin head and cell membrane, respectively. Time-resolved flow cytometry analysis revealed donor emission increases up to 17%, fluorescence lifetime shifts over 1.0 ns during activation, and FRET efficiencies of 37% and 26% corresponding to the inactive and active integrin state, respectively. Last, a graphical phasor analysis, including population clustering, gating, and formation of an FRET trajectory, added precision to a comparative analysis of populations undergoing FRET, partial donor recovery, and complete donor recovery. This work establishes a quantitative cytometric approach for profiling fluorescence donor decay kinetics during integrin conformational changes on a single-cell level.
Förster 共振能量转移(FRET)仍然是研究活细胞内蛋白质运动和相互作用的有用工具。当 FRET 作为一种光学技术通过流式细胞术进行测量时,可以快速逐细胞测量蛋白质的构象变化,从而有利于筛选和分析。我们利用 FRET 来研究白细胞表面表达的 α4β1 整合素二聚体的激活程度。非活性的 stalk 样跨膜异二聚体弯曲,而在激活时向外延伸。整合素的延伸由结合在整合素头部和细胞膜上的 FRET 供体和受体之间最近距离的变化来确定。时间分辨流式细胞术分析显示,供体发射增加了 17%,荧光寿命在激活过程中移动超过 1.0 ns,对应的 FRET 效率分别为 37%和 26%,分别对应于非活性和活性整合素状态。最后,图形相面分析,包括群体聚类、门控和 FRET 轨迹的形成,为比较分析经历 FRET、部分供体恢复和完全供体恢复的群体增加了精度。这项工作建立了一种定量细胞计量方法,用于在单细胞水平上分析整合素构象变化过程中荧光供体衰减动力学。