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多通道 3D 共聚焦显微镜研究核膜内陷在脂质体转染 DNA 入核途径中的作用。

Probing the role of nuclear-envelope invaginations in the nuclear-entry route of lipofected DNA by multi-channel 3D confocal microscopy.

机构信息

NEST, Scuola Normale Superiore, Pisa, Italy.

NEST, Scuola Normale Superiore, Pisa, Italy; Ares Genetics GmbH, Vienna, Austria.

出版信息

Colloids Surf B Biointerfaces. 2021 Sep;205:111881. doi: 10.1016/j.colsurfb.2021.111881. Epub 2021 May 28.

DOI:10.1016/j.colsurfb.2021.111881
PMID:34062346
Abstract

Nuclear breakdown was found to be the dominant route for DNA entry into the nucleus in actively dividing cells. The possibility that alternative routes contribute to DNA entry into the nucleus, however, cannot be ruled out. Here we address the process of lipofection by monitoring the localization of fluorescently-labelled DNA plasmids at the single-cell level by confocal imaging in living interphase cells. As test formulation we choose the cationic 3β-[N-(N,N-dimethylaminoethane)-carbamoyl] cholesterol (DC-Chol) and the zwitterionic helper lipid dioleoylphosphatidylethanolamine (DOPE) with plasmidic DNA pre-condensed by means of protamine. By exploiting the spectral shift of the fluorescent dye FM4-64 (N-(3-triethylammoniumpropyl)-4-(p-diethylaminophenylhexatrienyl)-pyridinium 2Br) we monitor the position of the nuclear envelope (NE), while concomitantly imaging the whole nucleus (by Hoechst) and the DNA (by Cy3 fluorophore) in a multi-channel 3D confocal imaging experiment. Reported results show that DNA clusters are typically associated with the NE membrane in the form of tubular invaginations spanning the nuclear environment, but not completely trapped within the NE invaginations, i.e. the DNA may use these NE regions as entry-points towards the nucleus. These observations pave the way to investigating the molecular details of the postulated processes for a better exploitation of gene-delivery vectors, particularly for applications in non-dividing cells.

摘要

核崩溃被发现是 DNA 进入活跃分裂细胞细胞核的主要途径。然而,不能排除其他途径有助于 DNA 进入细胞核的可能性。在这里,我们通过在活的间期细胞中通过共焦成像在单细胞水平上监测荧光标记的 DNA 质粒的定位来研究转染的过程。作为测试制剂,我们选择阳离子 3β-[N-(N,N-二甲氨基乙酰胺基)甲酰基]胆固醇(DC-Chol)和两性离子辅助脂质二油酰基磷脂酰乙醇胺(DOPE),并用鱼精蛋白预缩合质粒 DNA。通过利用荧光染料 FM4-64(N-(3-三乙铵丙基)-4-(对二乙氨基苯己三烯基)-吡啶翁 2Br)的光谱位移,我们监测核膜(NE)的位置,同时在多通道 3D 共焦成像实验中对整个细胞核(用 Hoechst 染色)和 DNA(用 Cy3 荧光团)进行成像。报告的结果表明,DNA 簇通常以管状内陷的形式与 NE 膜相关,这些内陷跨越核环境,但不完全被困在 NE 内陷中,即 DNA 可以利用这些 NE 区域作为进入细胞核的入口点。这些观察结果为研究假定的过程的分子细节铺平了道路,以便更好地利用基因传递载体,特别是在非分裂细胞中的应用。

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