用于获取细胞骨架结构信息的相干非线性光学显微镜

D. Sharoukhov, H. Lim
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引用次数: 0

摘要

二次谐波产生(SHG)是发生在包括微管(MT)在内的非中心对称分子中的相干非线性光学过程。MT是一种细胞骨架,根据细胞类型在多种细胞过程中起着重要作用,其构象对其功能至关重要。在这里,我们介绍了使用SHG过程来探测活神经元组织中的MT细胞骨架。对视网膜神经纤维进行偏振分辨SHG (p-SHG)成像和二阶张量分析,探讨轴突MTs的结构。在分子水平上测定了微管的极性各向异性。同时检测了mt稳定药物紫杉醇的作用,p-SHG未检测到诱导的变化。我们的研究结果表明,SHG是一种新的光学方法来测量mt在原生细胞环境中的构象变化。该技术可以与现有的结构生物学原子分辨率方法结合使用,以提高我们对体内细胞骨架动力学的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coherent nonlinear optical microscopy for acquiring structural information of cell cytoskeleton
Second-harmonic generation (SHG) is a coherent nonlinear optical process occurring in non-centrosymmetric molecules, including microtubule (MT). MT is a cytoskeleton playing many important roles in a variety of cellular processes depending on the cell type, and the conformation is crucial for the function. Here we present the use of SHG process to probe MT cytoskeleton in living neuronal tissue. Polarization-resolved SHG (p-SHG) imaging and the second-order tensor analysis were performed on the retinal nerve fibers in order to probe the structure of MTs in axon. The polar anisotropy of tubulins was determined at the molecular level. The effect of MT-stabilizing drug Taxol was also examined and the induced changes were not detectable by p-SHG. Our results demonstrate SHG as a novel optical method to measure conformational changes of MTs in the native cellular context. The technique could be employed in conjunction with existing atomic-resolution methods of structural biology to improve our understanding of cytoskeleton dynamics in vivo.
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