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成人人类角膜内皮细胞中细胞周期基因表达的微阵列分析。

Microarray analysis of cell cycle gene expression in adult human corneal endothelial cells.

作者信息

Ha Thi Binh Minh, Campolmi Nelly, He Zhiguo, Pipparelli Aurélien, Manissolle Chloé, Thuret Jean-Yves, Piselli Simone, Forest Fabien, Peoc'h Michel, Garraud Olivier, Gain Philippe, Thuret Gilles

机构信息

Laboratory for corneal graft biology, engineering and imaging', EA2521, SFR143, Faculty of Medicine of the University Jean Monnet, Saint-Etienne, France.

Laboratory for corneal graft biology, engineering and imaging', EA2521, SFR143, Faculty of Medicine of the University Jean Monnet, Saint-Etienne, France; Department of Ophthalmology, University Hospital, Saint-Etienne, France.

出版信息

PLoS One. 2014 Apr 18;9(4):e94349. doi: 10.1371/journal.pone.0094349. eCollection 2014.

Abstract

Corneal endothelial cells (ECs) form a monolayer that controls the hydration of the cornea and thus its transparency. Their almost nil proliferative status in humans is responsible, in several frequent diseases, for cell pool attrition that leads to irreversible corneal clouding. To screen for candidate genes involved in cell cycle arrest, we studied human ECs subjected to various environments thought to induce different proliferative profiles compared to ECs in vivo. Donor corneas (a few hours after death), organ-cultured (OC) corneas, in vitro confluent and non-confluent primary cultures, and an immortalized EC line were compared to healthy ECs retrieved in the first minutes of corneal grafts. Transcriptional profiles were compared using a cDNA array of 112 key genes of the cell cycle and analysed using Gene Ontology classification; cluster analysis and gene map presentation of the cell cycle regulation pathway were performed by GenMAPP. Results were validated using qRT-PCR on 11 selected genes. We found several transcripts of proteins implicated in cell cycle arrest and not previously reported in human ECs. Early G1-phase arrest effectors and multiple DNA damage-induced cell cycle arrest-associated transcripts were found in vivo and over-represented in OC and in vitro ECs. Though highly proliferative, immortalized ECs also exhibited overexpression of transcripts implicated in cell cycle arrest. These new effectors likely explain the stress-induced premature senescence that characterizes human adult ECs. They are potential targets for triggering and controlling EC proliferation with a view to increasing the cell pool of stored corneas or facilitating mass EC culture for bioengineered endothelial grafts.

摘要

角膜内皮细胞(ECs)形成一层控制角膜水合作用从而维持其透明度的单层细胞。在人类中,它们几乎为零的增殖状态在几种常见疾病中导致细胞池损耗,进而引起不可逆的角膜混浊。为了筛选参与细胞周期停滞的候选基因,我们研究了与体内ECs相比,处于各种被认为能诱导不同增殖模式环境中的人类ECs。将供体角膜(死后数小时)、器官培养(OC)角膜、体外汇合和未汇合的原代培养物以及永生化EC系与角膜移植最初几分钟内获取的健康ECs进行比较。使用包含112个细胞周期关键基因的cDNA阵列比较转录谱,并使用基因本体分类进行分析;通过GenMAPP进行细胞周期调控途径的聚类分析和基因图谱展示。使用qRT-PCR对11个选定基因验证结果。我们发现了一些与细胞周期停滞相关的蛋白质转录本,这些转录本此前在人类ECs中未被报道。在体内发现了早期G1期停滞效应物以及多种DNA损伤诱导的细胞周期停滞相关转录本,并且在OC和体外ECs中这些转录本过度表达。尽管永生化ECs具有高度增殖性,但它们也表现出与细胞周期停滞相关的转录本的过表达。这些新的效应物可能解释了表征人类成年ECs的应激诱导过早衰老。它们是触发和控制EC增殖的潜在靶点,目的是增加储存角膜的细胞池或促进用于生物工程内皮移植物的大规模EC培养。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad4b/3991635/95c4f72ac8a7/pone.0094349.g001.jpg

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