Weiss S
Materials Sciences and Physical Biosciences Divisions, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.
Science. 1999 Mar 12;283(5408):1676-83. doi: 10.1126/science.283.5408.1676.
Recent advances in single-molecule detection and single-molecule spectroscopy at room temperature by laser-induced fluorescence offer new tools for the study of individual macromolecules under physiological conditions. These tools relay conformational states, conformational dynamics, and activity of single biological molecules to physical observables, unmasked by ensemble averaging. Distributions and time trajectories of these observables can therefore be measured during a reaction without the impossible need to synchronize all the molecules in the ensemble. The progress in applying these tools to biological studies with the use of fluorophores that are site-specifically attached to macromolecules is reviewed.
室温下通过激光诱导荧光进行的单分子检测和单分子光谱学的最新进展,为在生理条件下研究单个大分子提供了新工具。这些工具将单个生物分子的构象状态、构象动力学和活性转化为物理可观测值,而不受总体平均的掩盖。因此,在反应过程中可以测量这些可观测值的分布和时间轨迹,而无需同步总体中的所有分子这种不可能实现的要求。本文综述了将这些工具应用于使用位点特异性连接到大分子上的荧光团进行生物学研究的进展。