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SORBS2和TLR3可诱导原代人成纤维细胞和角质形成细胞过早衰老。

SORBS2 and TLR3 induce premature senescence in primary human fibroblasts and keratinocytes.

作者信息

Liesenfeld Melanie, Mosig Sandy, Funke Harald, Jansen Lars, Runnebaum Ingo B, Dürst Matthias, Backsch Claudia

机构信息

Department of Gynecology, Jena University Hospital, Friedrich Schiller University Jena, Bachstr, 18, Jena 07743, Germany.

出版信息

BMC Cancer. 2013 Oct 29;13:507. doi: 10.1186/1471-2407-13-507.

Abstract

BACKGROUND

Genetic aberrations are required for the progression of HPV-induced cervical precancers. A prerequisite for clonal expansion of cancer cells is unlimited proliferative capacity. In a cell culture model for cervical carcinogenesis loss of genes located on chromosome 4q35→qter and chromosome 10p14-p15 were found to be associated with escape from senescence. Moreover, by LOH and I-FISH analyses a higher frequency of allele loss of these regions was also observed in cervical carcinomas as compared to CIN3. The aim of this study was to identify candidate senescence-related genes located on chromosome 4q35→qter and chromosome 10p14-p15 which may contribute to clonal expansion at the transition of CIN3 to cancer.

METHODS

Microarray expression analyses were used to identify candidate genes down-regulated in cervical carcinomas as compared to CIN3. In order to relate these genes with the process of senescence their respective cDNAs were overexpressed in HPV16-immortalized keratinocytes as well as in primary human fibroblasts and keratinocytes using lentivirus mediated gene transduction.

RESULTS

Overall fifteen genes located on chromosome 4q35→qter and chromosome 10p14-p15 were identified. Ten of these genes could be validated in biopsies by RT-PCR. Of interest is the novel finding that SORBS2 and TLR3 can induce senescence in primary human fibroblasts and keratinocytes but not in HPV-immortalized cell lines. Intriguingly, the endogenous expression of both genes increases during finite passaging of primary keratinocytes in vitro.

CONCLUSIONS

The relevance of the genes SORBS2 and TLR3 in the process of cellular senescence warrants further investigation. In ongoing experiments we are investigating whether this increase in gene expression is also characteristic of replicative senescence.

摘要

背景

遗传畸变是HPV诱导的宫颈上皮内瘤变进展所必需的。癌细胞克隆性扩增的一个先决条件是无限增殖能力。在宫颈癌发生的细胞培养模型中,发现位于4q35→qter染色体和10p14 - p15染色体上的基因缺失与衰老逃逸有关。此外,通过杂合性缺失(LOH)和原位荧光杂交(I-FISH)分析,与CIN3相比,在宫颈癌中也观察到这些区域的等位基因缺失频率更高。本研究的目的是鉴定位于4q35→qter染色体和10p14 - p15染色体上的候选衰老相关基因,这些基因可能有助于CIN3向癌症转变过程中的克隆性扩增。

方法

采用微阵列表达分析来鉴定与CIN3相比在宫颈癌中下调的候选基因。为了将这些基因与衰老过程联系起来,使用慢病毒介导的基因转导,在HPV16永生化的角质形成细胞以及原代人成纤维细胞和角质形成细胞中过表达它们各自的cDNA。

结果

总共鉴定出位于4q35→qter染色体和10p14 - p15染色体上的15个基因。其中10个基因可通过RT-PCR在活检组织中得到验证。有趣的是,新发现SORBS2和TLR3可在原代人成纤维细胞和角质形成细胞中诱导衰老,但在HPV永生化细胞系中则不能。有趣的是,在原代角质形成细胞体外有限传代过程中,这两个基因的内源性表达均增加。

结论

SORBS2和TLR3基因在细胞衰老过程中的相关性值得进一步研究。在正在进行的实验中,我们正在研究这种基因表达的增加是否也是复制性衰老的特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fae5/3819711/4e8d5aaba541/1471-2407-13-507-1.jpg

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