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利用全基因组cDNA微阵列对炎症性肠病转录组中的昼夜节律基因进行系统分析。

Systematic analysis of circadian genes using genome-wide cDNA microarrays in the inflammatory bowel disease transcriptome.

作者信息

Palmieri Orazio, Mazzoccoli Gianluigi, Bossa Fabrizio, Maglietta Rosalia, Palumbo Orazio, Ancona Nicola, Corritore Giuseppe, Latiano Tiziana, Martino Giuseppina, Rubino Rosa, Biscaglia Giuseppe, Scimeca Daniela, Carella Massimo, Annese Vito, Andriulli Angelo, Latiano Anna

机构信息

a Department of Medical Sciences , Division of Gastroenterology and.

出版信息

Chronobiol Int. 2015;32(7):903-16. doi: 10.3109/07420528.2015.1050726.


DOI:10.3109/07420528.2015.1050726
PMID:26172092
Abstract

Simultaneous analysis of the transcripts of thousands of genes by cDNA microarrays allows the identification of genetic regulatory mechanisms involved in disease pathophysiology. The circadian clock circuitry controls essential cell processes and the functioning of organ systems, which are characterized by rhythmic variations with 24-hour periodicity. The derangement of these processes is involved in the basic mechanisms of inflammatory, metabolic, degenerative and neoplastic diseases. We evaluated by genome-wide cDNA microarray analysis the transcriptome of endoscopic mucosal biopsies of patients with inflammatory bowel diseases (IBD) focusing on the expression of circadian genes in Crohn's disease (CD) and ulcerative colitis (UC). Twenty-nine IBD patients (15 with CD and 14 with UC) were enrolled and mucosal biopsies were sampled at either inflamed or adjacent non-inflamed areas of the colon. A total of 150 circadian genes involved in pathways controlling crucial cell processes and tissue functions were investigated. In CD specimens 50 genes were differentially expressed, and 21 genes resulted up-regulated when compared to healthy colonic mucosa. In UC specimens 50 genes were differentially expressed, and 27 genes resulted up-regulated when compared to healthy colonic mucosa. Among the core clock genes ARNTL2 and RORA were up-regulated, while CSNK2B, NPAS2, PER1 and PER3 were down-regulated in CD specimens. Conversely, ARNTL2, CRY1, CSNK1E, RORA and TIPIN were up-regulated, while NR1D2 and PER3 were down-regulated in UC. In conclusion, in CD and UC patients there are differences in the expression of circadian genes between normal and diseased intestinal mucosa. The deregulated genes evidenced by transcriptome analysis in the major IBDs may play a crucial role in the pathophysiological mechanisms and may suggest novel therapeutic approaches.

摘要

通过cDNA微阵列同时分析数千个基因的转录本,有助于识别参与疾病病理生理学的基因调控机制。昼夜节律时钟电路控制着基本的细胞过程和器官系统的功能,其特征是具有24小时周期性的节律变化。这些过程的紊乱参与了炎症、代谢、退行性和肿瘤性疾病的基本机制。我们通过全基因组cDNA微阵列分析,评估了炎症性肠病(IBD)患者内镜下黏膜活检组织的转录组,重点关注克罗恩病(CD)和溃疡性结肠炎(UC)中昼夜节律基因的表达。纳入了29例IBD患者(15例CD患者和14例UC患者),在结肠的炎症部位或相邻的非炎症部位采集黏膜活检组织。共研究了150个参与控制关键细胞过程和组织功能途径的昼夜节律基因。在CD标本中,有50个基因差异表达,与健康结肠黏膜相比,21个基因上调。在UC标本中,有50个基因差异表达,与健康结肠黏膜相比,27个基因上调。在核心时钟基因中,ARNTL2和RORA在CD标本中上调,而CSNK2B、NPAS2、PER1和PER3下调。相反,ARNTL2、CRY1、CSNK1E、RORA和TIPIN在UC中上调,而NR1D2和PER3下调。总之,在CD和UC患者中,正常和患病肠黏膜之间昼夜节律基因的表达存在差异。在主要IBD中通过转录组分析证实的失调基因可能在病理生理机制中起关键作用,并可能提示新的治疗方法。

相似文献

[1]
Systematic analysis of circadian genes using genome-wide cDNA microarrays in the inflammatory bowel disease transcriptome.

Chronobiol Int. 2015

[2]
Dissection of the inflammatory bowel disease transcriptome using genome-wide cDNA microarrays.

PLoS Med. 2005-8

[3]
Multigene analysis can discriminate between ulcerative colitis, Crohn's disease, and irritable bowel syndrome.

Gastroenterology. 2008-6

[4]
Peripheral blood based discrimination of ulcerative colitis and Crohn's disease from non-IBD colitis by genome-wide gene expression profiling.

Dis Markers. 2011

[5]
MicroRNA signatures differentiate Crohn's disease from ulcerative colitis.

BMC Immunol. 2015-2-10

[6]
Association study of a polymorphism in clock gene PERIOD3 and risk of inflammatory bowel disease.

Chronobiol Int. 2012-8-10

[7]
Nitric oxide pathway-related gene alterations in inflammatory bowel disease.

Scand J Gastroenterol. 2012-11

[8]
New insights into the pathogenesis of inflammatory bowel disease: transcription factors analysis in bioptic tissues from pediatric patients.

J Pediatr Gastroenterol Nutr. 2011-3

[9]
Whole genome gene expression meta-analysis of inflammatory bowel disease colon mucosa demonstrates lack of major differences between Crohn's disease and ulcerative colitis.

PLoS One. 2013-2-13

[10]
Genome-wide gene expression differences in Crohn's disease and ulcerative colitis from endoscopic pinch biopsies: insights into distinctive pathogenesis.

Inflamm Bowel Dis. 2007-7

引用本文的文献

[1]
Circadian Rhythm Dysregulation in Inflammatory Bowel Disease: Mechanisms and Chronotherapeutic Approaches.

Int J Mol Sci. 2025-4-15

[2]
Circadian Rhythms, the Gut Microbiome, and Metabolic Disorders.

Gastro Hep Adv. 2022-2-3

[3]
Effect of Urolithin A on the Improvement of Circadian Rhythm Dysregulation in Intestinal Barrier Induced by Inflammation.

Nutrients. 2024-7-13

[4]
Effects of short-chain fatty acid-butyrate supplementation on expression of circadian-clock genes, sleep quality, and inflammation in patients with active ulcerative colitis: a double-blind randomized controlled trial.

Lipids Health Dis. 2024-7-13

[5]
Morning light treatment for inflammatory bowel disease: a clinical trial.

BMC Gastroenterol. 2024-5-22

[6]
Chronodisruption and Gut Microbiota: Triggering Glycemic Imbalance in People with Type 2 Diabetes.

Nutrients. 2024-2-23

[7]
Mucosal Genes Encoding Clock, Inflammation and Their Mutual Regulators Are Disrupted in Pediatric Patients with Active Ulcerative Colitis.

Int J Mol Sci. 2024-1-25

[8]
Circadian clock-related genome-wide mendelian randomization identifies putatively genes for ulcerative colitis and its comorbidity.

BMC Genomics. 2024-2-1

[9]
Chronic Inflammation Disrupts Circadian Rhythms in Splenic CD4+ and CD8+ T Cells in Mice.

Cells. 2024-1-13

[10]
Relationship between the Biological Clock and Inflammatory Bowel Disease.

Clocks Sleep. 2023-5-12

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