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Polarization-Sensitive Two-Photon Microscopy Study of the Organization of Liquid-Crystalline DNA

机译:偏振敏感的双光子显微镜研究液晶晶体的组织。

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摘要

Highly concentrated DNA solutions exhibit self-ordering properties such as the generation of liquid-crystalline phases. Such organized domains may play an important role in the global chromatin topology but can also be used as a simple model for the study of more complex 3D DNA structures. In this work, using polarized two-photon fluorescence microscopy, we report on the orientation of DNA molecules in liquid-crystalline phases. For this purpose, we analyze the signal emitted by fluorophores that are noncovalently bound to DNA strands. In nonlinear processes, excitation occurs exclusively in the focal volume, which offers advantages such as the reduction of photobleaching of out-of-focus molecules and intrinsic 3D sectioning capability. Propidium iodide and Hoechst, two fluorophores with different DNA binding modes, have been considered. Polarimetric measurements show that the dyes follow the alignment with respect to the DNA strands and allow the determination of the angles between the emission dipoles and the longitudinal axis of the DNA double strand. These results provide a useful starting point toward the application of two-photon polarimetry techniques to determine the local orientation of condensed DNA in physiological conditions.
机译:高浓度的DNA溶液具有自我排序的特性,例如液晶相的产生。这种有组织的域可能在全局染色质拓扑中起重要作用,但也可以用作研究更复杂的3D DNA结构的简单模型。在这项工作中,使用偏振双光子荧光显微镜,我们报道了液晶相中DNA分子的取向。为此,我们分析了与DNA链非共价结合的荧光团发出的信号。在非线性过程中,激发仅发生在焦点体积中,这提供了诸如减少离焦分子的光漂白和固有3D切片功能的优点。已经考虑了碘化丙锭和赫斯特,这两种具有不同DNA结合模式的荧光团。极化测量表明,染料遵循相对于DNA链的对齐方式,并可以确定发射偶极子与DNA双链纵轴之间的角度。这些结果为应用双光子极化技术确定生理条件下缩合DNA的局部取向提供了有用的起点。

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