CancerResearch@UCC, University College Cork, Cork, Ireland.
SynBioCentre, University College Cork, Cork, Ireland.
BMC Mol Cell Biol. 2020 Oct 30;21(1):75. doi: 10.1186/s12860-020-00321-x.
Many cell permeabilisation methods to mediate internalisation of various molecules to mammalian or bacterial cells have been developed. However, no size-specific permeability assay suitable for both cell types exists.
We report the use of intrinsically biotinylated cell components as the target for reporter molecules for assessing permeabilisation. Due to its well-described biotin binding activity, we developed an assay using Streptavidin (SAv) as a molecular weight marker for assessing eukaryotic and prokaryotic cell internalisation, using flow cytometry as a readout. This concept was tested here as part of the development of host DNA depletion strategies for microbiome analysis of formalin-fixed (FF) samples. Host depletion (HD) strategies require differential cell permeabilisation, where mammalian cells but not bacterial cells are permeabilised, and are subsequently treated with a nuclease. Here, the internalisation of a SAv-conjugate was used as a reference for nucleases of similar dimensions. With this assay, it was possible to demonstrate that formalin fixation does not generate pores which allow the introduction of 60 KDa molecules in mammalian or bacterial membranes/envelopes. Among surfactants tested, Saponin derived from Quillaja bark showed the best selectivity for mammalian cell permeabilisation, which, when coupled with Benzonase nuclease, provided the best results for host DNA depletion, representing a new HD strategy for formalin fixed samples.
The assay presented provides researchers with a sensitive and accessible tool for discerning membrane/cell envelop permeability for different size macromolecules.
已经开发出许多使各种分子内化到哺乳动物或细菌细胞中的细胞通透化方法。然而,不存在适用于这两种细胞类型的特定大小的通透性测定方法。
我们报告了使用内在生物素化的细胞成分作为报告分子的靶标,以评估通透化。由于其众所周知的生物素结合活性,我们开发了一种使用链霉亲和素(SAv)作为分子量标记物的测定方法,用于评估真核和原核细胞内化,并用流式细胞术作为读出。在这里,作为微生物组分析福尔马林固定(FF)样品的宿主 DNA 耗竭策略开发的一部分,对该概念进行了测试。宿主耗竭(HD)策略需要差异细胞通透化,其中哺乳动物细胞但不是细菌细胞通透化,并且随后用核酸酶处理。在这里,SAv 缀合物的内化被用作类似尺寸的核酸酶的参考。使用该测定法,证明福尔马林固定不会产生允许 60 kDa 分子进入哺乳动物或细菌膜/包膜的孔。在所测试的表面活性剂中,来自 Quillaja 树皮的皂角苷对哺乳动物细胞通透化具有最佳的选择性,当与 Benzonase 核酸酶结合使用时,可提供宿主 DNA 耗竭的最佳结果,代表福尔马林固定样品的新 HD 策略。
所提出的测定法为研究人员提供了一种灵敏且易于使用的工具,用于区分不同大小的大分子的膜/细胞包膜通透性。