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A METHOD FOR OBTAINING STRUCTURAL AND FUNCTIONAL INFORMATION ON PROTEINS, BASED ON POLARIZATION FLUORESCENCE MICROSCOPY, AND A DEVICE IMPLEMENTING SAID METHOD

机译:基于极化荧光显微镜的蛋白质结构和功能信息获取方法及装置实现方法

摘要

The invention pertains to a method of obtaining structural and functional information on proteins, based on polarization fluorescence microscopy, which comprises subjecting a protein tagged with a fluorophore to two- or multi-photon fluorescence microscopy, whereas the observed protein is irradiated with a laser beam with light of at least two different polarizations, which excites the fluorescence of the fluorophore, and wherein information on localization, intensities and polarizations of the fluorescence excited by the different polarizations of the excitation laser beam is used to identify, localize and quantify anisotropy of absorption and/or fluorescence, which information is then used to infer structural and functional properties of proteins. An example of a device for obtaining structural and functional information on proteins, based on polarization fluorescence microscopy, comprises a modulator (P) for rapid modulation of the excitation beam (1) for eliciting two- or multi-photon fluorescence, and a control unit (R), wherein the function of the modulator (P) and control unit (R) is synchronized with scanning of the microscope (M) such that information on fluorescence intensity acquired by the microscope (M) is attributable to a particular polarization state of the excitation beam (1) by virtue of knowing the temporal profile of the polarization modulation of the excitation beam (1) effected by the modulator (P). The method and device of the invention allow determining and monitoring structure and function of proteins, such as membrane proteins, and thereby observing physiological processes in living cells.
机译:本发明涉及基于偏振荧光显微术获得蛋白质的结构和功能信息的方法,该方法包括对用荧光团标记的蛋白质进行双光子或多光子荧光显微术,而观察到的蛋白质用激光束照射。通过具有至少两种不同偏振的光来激发荧光团的荧光,并且其中关于由激发激光束的不同偏振激发的荧光的定位,强度和偏振的信息用于识别,定位和量化吸收的各向异性和/或荧光,然后将这些信息用于推断蛋白质的结构和功能特性。基于偏振荧光显微术用于获得蛋白质的结构和功能信息的设备的示例包括用于快速调制激发光束(1)以激发双光子或多光子荧光的调制器(P)和控制单元(R),其中调制器(P)和控制单元(R)的功能与显微镜(M)的扫描同步,从而使显微镜(M)所获取的荧光强度信息归因于特定的偏振态通过了解由调制器(P)实现的激发光束(1)的偏振调制的时间分布,可以得到激发光束(1)。本发明的方法和设备允许确定和监测蛋白质例如膜蛋白质的结构和功能,从而观察活细胞中的生理过程。

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