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Strategy to Lengthen the On-Time of Photochromic Rhodamine Spirolactam for Super-resolution Photoactivated Localization Microscopy

机译:延长光致变色罗丹明螺旋酰胺对超级分辨率的螺旋酰胺的策略

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摘要

Rhodamine derivatives and analogues have been widely used for different super-resolution imaging techniques, including photoactivated localization microscopy (PALM). Among them, rhodamine spirolactams exhibit great superiority for PALM imaging due to a desirable bright-dark contrast during the photochromic switching process. Although considerable attention has been paid to the chemical modifications on rhodamine spirolactams, the on-time of photochromic switching, one of the key characteristics for PALM imaging, has never been optimized in previous developments. In this study, we proposed that simply installing a carboxyl group close to the lactam site could impose an intramolecular acidic environment, stabilize the photoactivated zwitter-ionic structure, and thus effectively increase the on-time. On the basis of this idea, we have synthesized a new rhodamine spirolactam, Rh-Gly, that demonstrated considerably longer on-time than the other tested analogues, as well as an enhancement of single-molecule brightness, an improvement on signal-to-noise ratio and an enlargement of total collected photons of a single molecule before photobleaching. Finally, super-resolution images of live cell mitochondria stained with Rh-Gly have been obtained with a good temporal resolution of 10 s, as well as a satisfactory localization precision of similar to 25 nm. Through self-labeling protein tags, Rh-Gly modified with a HaloTag ligand enabled super-resolution imaging of histone H2B proteins in live HeLa cells; through immunostaining antibodies labeled with an isothiocyanate-substituted Rh-Gly, super-resolution imaging of microtubules was achieved in fixed cells. Therefore, our simple and effective strategy provides novel insight for developing further enhanced rhodamine spirolactams recommendable for PALM imaging.
机译:Rhodamine衍生物和类似物已广泛用于不同的超分辨率成像技术,包括光活化的定位显微镜(Palm)。其中,由于在光致变色切换过程中,由于期望的亮度暗对比度,Rhodamine Spiroactams对棕榈成像具有很大的优越性。虽然对罗丹明螺酰胺的化学修饰进行了相当大的关注,但光致变色切换的导通时间,掌上成像的关键特性之一,从未在以前的发展中得到优化。在该研究中,我们提出简单地安装靠近内酰胺位点的羧基可以施加分子内酸性环境,稳定光活化的Zwitter离子结构,从而有效地增加准时。在这个想法的基础上,我们已经合成了一种新的罗丹明螺酰胺,Rh-gly,比其他测试类似物的时间相当长,以及单分子亮度的增强,对信号 - 到的改进光漂白前单分子的总收集光子的噪声比率和放大。最后,已经获得了用Rh-Gly染色的活细胞线粒体的超分辨率图像,其具有10 s的良好时间分辨率,以及类似于25nm的令人满意的定位精度。通过自我标记蛋白标签,用Halotag配体改性Rh-Gly改性,使能在活HeLa细胞中的组蛋白H2B蛋白的超分辨率成像;通过用异硫氰酸酯 - 取代的rh-gly标记的免疫染色抗体,在固定细胞中实现了微管的超分辨率成像。因此,我们的简单有效的策略为开发进一步增强的罗丹明螺酰胺酰胺提供了新颖的洞察力,推荐用于棕榈成像。

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  • 来源
    《Journal of the American Chemical Society》 |2019年第16期|6527-6536|共10页
  • 作者单位

    Liaoning Univ Coll Environm Sci Shenyang 110036 Peoples R China|Dalian Univ Technol State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Liaoning Univ Coll Environm Sci Shenyang 110036 Peoples R China;

    Dalian Univ Technol State Key Lab Fine Chem Dalian 116024 Peoples R China|Dalian Univ Technol Chem Anal & Res Ctr Dalian 116024 Peoples R China;

    Dalian Univ Technol State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Dalian Univ Technol State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Dalian Univ Technol State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Liaoning Univ Coll Environm Sci Shenyang 110036 Peoples R China;

    Liaoning Univ Coll Environm Sci Shenyang 110036 Peoples R China;

    Liaoning Univ Coll Environm Sci Shenyang 110036 Peoples R China;

    Liaoning Ctr Dis Prevent & Control Shenyang 110001 Peoples R China;

    Dalian Univ Technol State Key Lab Fine Chem Dalian 116024 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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