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一种阐明人细胞色素 P450 2S1 在支气管上皮细胞中生理意义的转录组学方法。

A transcriptomic approach to elucidate the physiological significance of human cytochrome P450 2S1 in bronchial epithelial cells.

机构信息

Department of Chemistry and Biochemistry, New Mexico State University, Las Cruces, NM 88003, USA.

出版信息

BMC Genomics. 2013 Nov 26;14:833. doi: 10.1186/1471-2164-14-833.

Abstract

BACKGROUND

Cytochrome P450 2S1 (CYP2S1) is an orphan P450 with an unknown biological function. Data from our laboratory and others suggest that CYP2S1 may have an important physiological role in modulating the synthesis and metabolism of bioactive lipids including prostaglandins and retinoids. CYP2S1 expression is elevated in multiple epithelial-derived cancers as well as in the chronic hyperproliferative disease psoriasis. Whether CYP2S1 expression in proliferative disease is protective, detrimental, or neutral to disease progression remains to be determined. Two human bronchial epithelial cells (BEAS-2B) were constructed to represent chronic depletion of CYP2S1 using short-hairpin RNA (shRNA) silencing directed toward the 3'UTR (759) and exon 3 (984) of the CYP2S1 gene and compared with a non-targeting shRNA control (SCRAM). Both CYP2S1 mRNA and protein were depleted by approximately 75% in stable cell lines derived from both targeted shRNA constructs (759 and 984). To elucidate the biological significance of CYP2S1, we analyzed transcriptome alterations in response to CYP2S1 depletion in human lung cells.

RESULTS

RNA-sequencing (RNA-seq) analysis was performed to compare the transcriptome of the control (SCRAM) and the CYP2S1-depleted (759) BEAS-2B cell lines. Transcriptomes of the replicates from the two cell lines were found to be distinct populations as determined using Principal Component Analysis and hierarchical clustering. Approximately 1000 genes were differentially expressed in response to CYP2S1 depletion. Consistent with our previous phenotypes, DAVID analysis revealed altered regulation in key pathways implicated in cell proliferation and migration. Transcriptomic profiles were also consistent with the metabolism of proposed endogenous substrates. Pathway analysis also revealed significant expression changes within mTOR signaling, a critical pathway in cell growth. To determine whether these changes manifest as altered cell size, cell diameter and volume were calculated, revealing that CYP2S1 depletion promotes cell growth in BEAS-2B cells.

CONCLUSIONS

These data suggest that pathway analysis of sequence-based gene expression is a powerful method to identify pathways and phenotypic alterations in response to changes in orphan enzyme expression. Our results suggest a novel role for CYP2S1-mediated metabolism in modulating BEAS-2B cell size. These findings warrant further studies on CYP2S1 regulated pathways to elucidate potential substrates of CYP2S1.

摘要

背景

细胞色素 P450 2S1(CYP2S1)是一种未知生物学功能的孤儿 P450。我们实验室和其他实验室的数据表明,CYP2S1 可能在调节生物活性脂质(包括前列腺素和类视黄醇)的合成和代谢方面发挥重要的生理作用。CYP2S1 的表达在多种上皮来源的癌症以及慢性过度增殖性疾病银屑病中升高。在增殖性疾病中,CYP2S1 的表达对疾病进展是保护、有害还是中性,仍有待确定。构建了两种人支气管上皮细胞(BEAS-2B),使用针对 CYP2S1 基因 3'UTR(759)和外显子 3(984)的短发夹 RNA(shRNA)沉默来代表 CYP2S1 的慢性耗竭,并与非靶向 shRNA 对照(SCRAM)进行比较。来自两种靶向 shRNA 构建体(759 和 984)的稳定细胞系中,CYP2S1 mRNA 和蛋白的耗竭均约为 75%。为了阐明 CYP2S1 的生物学意义,我们分析了 CYP2S1 耗竭对人肺细胞转录组变化的影响。

结果

进行了 RNA 测序(RNA-seq)分析,以比较对照(SCRAM)和 CYP2S1 耗竭(759)BEAS-2B 细胞系的转录组。使用主成分分析和层次聚类确定,两个细胞系的转录本来自不同的群体。大约 1000 个基因对 CYP2S1 耗竭有差异表达。与我们之前的表型一致,DAVID 分析显示,在涉及细胞增殖和迁移的关键途径中存在调节改变。转录组谱也与内源性底物的代谢一致。通路分析还显示 mTOR 信号通路的显著表达变化,mTOR 信号通路是细胞生长的关键途径。为了确定这些变化是否表现为细胞大小的改变,计算了细胞直径和体积,结果表明 CYP2S1 耗竭促进了 BEAS-2B 细胞的生长。

结论

这些数据表明,基于序列的基因表达的通路分析是一种识别孤儿酶表达变化引起的通路和表型改变的有效方法。我们的结果表明,CYP2S1 介导的代谢在调节 BEAS-2B 细胞大小方面具有新的作用。这些发现需要进一步研究 CYP2S1 调节的途径,以阐明 CYP2S1 的潜在底物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ac4/3884200/3fb9172f99f4/1471-2164-14-833-1.jpg

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