Burns Tyler J, Frei Andreas P, Gherardini Pier F, Bava Felice A, Batchelder Jake E, Yoshiyasu Yuki, Yu Julie M, Groziak Amanda R, Kimmey Samuel C, Gonzalez Veronica D, Fantl Wendy J, Nolan Garry P
Department of Cancer Biology, Stanford University School of Medicine, Stanford, California.
Stanford University School of Medicine, Baxter Laboratory for Stem Cell Biology, Stanford, California.
Cytometry A. 2017 Feb;91(2):180-189. doi: 10.1002/cyto.a.23054. Epub 2017 Jan 17.
To quantify visual and spatial information in single cells with a throughput of thousands of cells per second, we developed Subcellular Localization Assay (SLA). This adaptation of Proximity Ligation Assay expands the capabilities of flow cytometry to include data relating to localization of proteins to and within organelles. We used SLA to detect the nuclear import of transcription factors across cell subsets in complex samples. We further measured intranuclear re-localization of target proteins across the cell cycle and upon DNA damage induction. SLA combines multiple single-cell methods to bring about a new dimension of inquiry and analysis in complex cell populations. © 2017 International Society for Advancement of Cytometry.
为了以每秒数千个细胞的通量对单细胞中的视觉和空间信息进行量化,我们开发了亚细胞定位分析(SLA)。这种对邻近连接分析的改进扩展了流式细胞术的功能,使其能够包含与蛋白质在细胞器内和细胞器间定位相关的数据。我们使用SLA来检测复杂样品中跨细胞亚群的转录因子的核输入。我们进一步测量了靶蛋白在整个细胞周期以及DNA损伤诱导时的核内重新定位。SLA结合了多种单细胞方法,为复杂细胞群体的研究和分析带来了新的维度。© 2017国际细胞计量学促进协会。