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锌指蛋白521在髓母细胞瘤细胞生长、克隆形成能力及致瘤潜能调控中的关键作用

Critical role of zinc finger protein 521 in the control of growth, clonogenicity and tumorigenic potential of medulloblastoma cells.

作者信息

Spina Raffaella, Filocamo Gessica, Iaccino Enrico, Scicchitano Stefania, Lupia Michela, Chiarella Emanuela, Mega Tiziana, Bernaudo Francesca, Pelaggi Daniela, Mesuraca Maria, Pazzaglia Simonetta, Semenkow Samantha, Bar Eli E, Kool Marcel, Pfister Stefan, Bond Heather M, Eberhart Charles G, Steinkühler Christian, Morrone Giovanni

机构信息

Laboratory of Molecular Haematopoiesis and Stem Cell Biology, Dept. of Experimental and Clinical Medicine, University of Catanzaro Magna Græcia, Catanzaro, Italy.

出版信息

Oncotarget. 2013 Aug;4(8):1280-92. doi: 10.18632/oncotarget.1176.

Abstract

The stem cell-associated transcription co-factor ZNF521 has been implicated in the control of hematopoietic, osteo-adipogenic and neural progenitor cells. ZNF521 is highly expressed in cerebellum and in particular in the neonatal external granule layer that contains candidate medulloblastoma cells-of-origin, and in the majority of human medulloblastomas. Here we have explored its involvement in the control of human and murine medulloblastoma cells. The effect of ZNF521 on growth and tumorigenic potential of human medulloblastoma cell lines as well as primary Ptc1-/+ mouse medulloblastoma cells was investigated in a variety of in vitro and in vivo assays, by modulating its expression using lentiviral vectors carrying the ZNF521 cDNA, or shRNAs that silence its expression. Enforced overexpression of ZNF521 in DAOY medulloblastoma cells significantly increased their proliferation, growth as spheroids and ability to generate clones in single-cell cultures and semisolid media, and enhanced their migratory ability in wound-healing assays. Importantly, ZNF521-expressing cells displayed a greatly enhanced tumorigenic potential in nude mice. All these activities required the ZNF521 N-terminal motif that recruits the nucleosome remodeling and histone deacetylase complex, which might therefore represent an appealing therapeutic target. Conversely, silencing of ZNF521 in human UW228 medulloblastoma cells that display high baseline expression decreased their proliferation, clonogenicity, sphere formation and wound-healing ability. Similarly, Zfp521 silencing in mouse Ptc1-/+ medulloblastoma cells drastically reduced their growth and tumorigenic potential. Our data strongly support the notion that ZNF521, through the recruitment of the NuRD complex, contributes to the clonogenic growth, migration and tumorigenicity of medulloblastoma cells.

摘要

干细胞相关转录辅因子ZNF521与造血、骨-脂肪生成和神经祖细胞的调控有关。ZNF521在小脑,尤其是在含有候选成神经管细胞瘤起源细胞的新生儿外颗粒层以及大多数人类成神经管细胞瘤中高度表达。在此,我们探究了其在人类和小鼠成神经管细胞瘤细胞调控中的作用。通过使用携带ZNF521 cDNA的慢病毒载体或使其表达沉默的短发夹RNA(shRNAs)来调节ZNF521的表达,在多种体外和体内实验中研究了ZNF521对人类成神经管细胞瘤细胞系以及原发性Ptc1-/+小鼠成神经管细胞瘤细胞的生长和致瘤潜力的影响。在DAOY成神经管细胞瘤细胞中强制过表达ZNF521显著增加了它们的增殖、形成球体的生长能力以及在单细胞培养和半固体培养基中产生克隆的能力,并增强了它们在伤口愈合实验中的迁移能力。重要的是,表达ZNF521的细胞在裸鼠中显示出大大增强的致瘤潜力。所有这些活性都需要ZNF521的N端基序,该基序可募集核小体重塑和组蛋白去乙酰化酶复合物,因此这可能是一个有吸引力的治疗靶点。相反,在显示高基线表达的人类UW228成神经管细胞瘤细胞中沉默ZNF521会降低它们的增殖、克隆形成能力、球体形成和伤口愈合能力。同样,在小鼠Ptc1-/+成神经管细胞瘤细胞中沉默Zfp521会大幅降低它们的生长和致瘤潜力。我们的数据有力地支持了这样一种观点,即ZNF521通过募集NuRD复合物,促进了成神经管细胞瘤细胞的克隆生长、迁移和致瘤性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/476f/3787157/0ce1b0c315c5/oncotarget-04-1280-g001.jpg

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