Feodorova Yana, Koch Mirja, Bultman Sebastian, Michalakis Stylianos, Solovei Irina
Department of Biology II, Center for Integrated Protein Science Munich (CIPSM), Ludwig Maximilians University Munich, Grosshadernerstrasse 2, 82152 Planegg-Martinsried, Germany ; Department of Medical Biology, Medical University-Plovdiv, Blvd. Vasil Aprilov 15A, 4000 Plovdiv, Bulgaria.
Center for Integrated Protein Science Munich CIPSM at the Department of Pharmacy - Center for Drug Research, Ludwig-Maximilians-Universität München, Butenandtstr. 5-13, 81377 München, Germany.
MethodsX. 2015 Jan 15;2:39-46. doi: 10.1016/j.mex.2015.01.002. eCollection 2015.
A pure and abundant population of adult rod perikarya can be exploited in different studies concerning nuclear functions such as gene expression analyses which aim at elucidating the relationship between cell type and disease [1]. Sorting is based either on specific cell-surface markers or fluorescently labeled reporter proteins. Here, we describe a simple and reliable method for separation of rod photoreceptor perikarya without the use of staining procedures or transgenic mice. This method is limited, however, to sorting rod photoreceptors from adult mouse retina. Mature rods possess an inverted nuclear architecture which is determined by the optical functions of these nuclei [2]. The high backscatter of heterochromatin in the core of the nucleus can be used as a selection criterion for FAC-sorting by forward and sideward scatter. •The procedure for retina dissociation using the Papain Dissociation System (Wothington Biochemical Corporation) was optimized.•An easy to follow step-by-step protocol for retina dissociation was devised.•Rod perikarya were FAC-sorted by forward and sideward scatter based solely on the high backscatter of heterochromatin in their nuclei.
在有关核功能的不同研究中,例如旨在阐明细胞类型与疾病之间关系的基因表达分析,可以利用纯净且数量充足的成年视杆细胞胞体群体[1]。分选基于特定的细胞表面标志物或荧光标记的报告蛋白。在此,我们描述一种简单可靠的方法,无需使用染色程序或转基因小鼠即可分离视杆光感受器胞体。然而,该方法仅限于从成年小鼠视网膜中分选视杆光感受器。成熟视杆细胞具有由这些细胞核的光学功能所决定的倒置核结构[2]。细胞核核心中异染色质的高反向散射可作为通过前向和侧向散射进行流式细胞分选的选择标准。
• 使用木瓜蛋白酶解离系统(沃辛顿生物化学公司)进行视网膜解离的程序得到了优化。
• 设计了一个易于遵循的视网膜解离分步方案。
• 仅基于视杆细胞胞体细胞核中异染色质的高反向散射,通过前向和侧向散射对视杆细胞胞体进行流式细胞分选。