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首页> 外文期刊>Reproductive Biology and Endocrinology >Analysis of gene expression profiles in HeLa cells in response to overexpression or siRNA-mediated depletion of NASP
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Analysis of gene expression profiles in HeLa cells in response to overexpression or siRNA-mediated depletion of NASP

机译:分析过度表达或siRNA介导的NASP耗尽对HeLa细胞基因表达谱的影响

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Background NASP (Nuclear Autoantigenic Sperm Protein) is a linker histone chaperone required for normal cell division. Changes in NASP expression significantly affect cell growth and development; loss of gene function results in embryonic lethality. However, the mechanism by which NASP exerts its effects in the cell cycle is not understood. To understand the pathways and networks that may involve NASP function, we evaluated gene expression in HeLa cells in which NASP was either overexpressed or depleted by siRNA. Methods Total RNA from HeLa cells overexpressing NASP or depleted of NASP by siRNA treatment was converted to cRNA with incorporation of Cy5-CTP (experimental samples), or Cy3-CTP (control samples). The labeled cRNA samples were hybridized to whole human genome microarrays (Agilent Technologies, Wilmington, Delaware, USA). Various gene expression analysis techniques were employed: Significance Analysis of Microarrays (SAM), Expression Analysis Systematic Explorer (EASE), and Ingenuity Pathways Analysis (IPA). Results From approximately 36 thousand genes present in a total human genome microarray, we identified a set of 47 up-regulated and 7 down-regulated genes as a result of NASP overexpression. Similarly we identified a set of 56 up-regulated and 71 down-regulated genes as a result of NASP siRNA treatment. Gene ontology, molecular network and canonical pathway analysis of NASP overexpression demonstrated that the most significant changes were in proteins participating in organismal injury, immune response, and cellular growth and cancer pathways (major "hubs": TNF, FOS, EGR1, NFκB, IRF7, STAT1, IL6). Depletion of NASP elicited the changed expression of proteins involved in DNA replication, repair and development, followed by reproductive system disease, and cancer and cell cycle pathways (major "hubs": E2F8, TP53, FGF, FSH, FST, hCG, NFκB, TRAF6). Conclusion This study has demonstrated that NASP belongs to a network of genes and gene functions that are critical for cell survival. We have confirmed the previously reported interactions between NASP and HSP90, HSP70, histone H1, histone H3, and TRAF6. Overexpression and depletion of NASP identified overlapping networks that included TNF as a core protein, confirming that both high and low levels of NASP are detrimental to cell cycle progression. Networks with cancer-related functions had the highest significance, however reproductive networks containing follistatin and FSH were also significantly affected, which confirmed NASP's important role in reproductive tissues. This study revealed that, despite some overlap, each response was associated with a unique gene signature and placed NASP in important cell regulatory networks.
机译:背景NASP(核自身抗原精子蛋白)是正常细胞分裂所需的连接蛋白组蛋白伴侣。 NASP表达的变化会显着影响细胞的生长和发育。基因功能的丧失导致胚胎死亡。然而,尚不清楚NASP在细胞周期中发挥其作用的机制。为了了解可能涉及NASP功能的途径和网络,我们评估了在NASP过表达或被siRNA耗尽的HeLa细胞中的基因表达。方法:通过掺入Cy5-CTP(实验样品)或Cy3-CTP(对照样品),将通过siRNA处理过表达NASP或耗尽NASP的HeLa细胞的总RNA转化为cRNA。将标记的cRNA样品与全人类基因组微阵列(Agilent Technologies,威尔明顿,特拉华,美国)杂交。使用了多种基因表达分析技术:微阵列的重要性分析(SAM),表达分析系统浏览器(EASE)和独创性途径分析(IPA)。结果从整个人类基因组微阵列中存在的约3.6万个基因中,我们确定了NASP过表达的一组47个上调基因和7个下调基因。同样,由于NASP siRNA处理,我们鉴定出一组56个上调基因和71个下调基因。 NASP过表达的基因本体论,分子网络和经典途径分析表明,最显着的变化是参与机体损伤,免疫反应以及细胞生长和癌症途径的蛋白质(主要“中心”:TNF,FOS,EGR1,NFκB,IRF7) ,STAT1,IL6)。 NASP的耗尽引起与DNA复制,修复和发育有关的蛋白质表达的改变,随后是生殖系统疾病以及癌症和细胞周期途径(主要的“中心”):E2F8,TP53,FGF,FSH,FST,hCG,NFκB, TRAF6)。结论该研究表明,NASP属于对细胞存活至关重要的基因和基因功能网络。我们已经确认了先前报道的NASP与HSP90,HSP70,组蛋白H1,组蛋白H3和TRAF6之间的相互作用。 NASP的过度表达和耗竭确定了包含TNF作为核心蛋白的重叠网络,从而证实高和低水平的NASP均不利于细胞周期进程。具有癌症相关功能的网络具有最高的意义,但是含有卵泡抑素和FSH的生殖网络也受到了显着影响,这证实了NASP在生殖组织中的重要作用。这项研究表明,尽管有一些重叠,但每种反应都与独特的基因特征有关,并将NASP置于重要的细胞调节网络中。

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