Differential regulation of LRRC37A2in gastric cancer by DNA methylation

Autor: Wisnieski, Fernanda, Geraldis, Jaqueline Cruz, Santos, Leonardo Caires, Leal, Mariana Ferreira, Calcagno, Danielle Queiroz, Gigek, Carolina Oliveira, Chen, Elizabeth Suchi, Anauate, Ana Carolina, Artigiani, Ricardo, Demachki, Samia, Assumpção, Paulo Pimentel, Lourenço, Laercio Gomes, Arasaki, Carlos Haruo, Krainer, Julie, Pabinger, Stephan, Burbano, Rommel Rodriguez, Smith, Marilia Arruda Cardoso
Zdroj: Epigenetics; January 2022, Vol. 17 Issue: 1 p110-116, 7p
Abstrakt: ABSTRACTGastric cancer (GC) is one of the leading types of fatal cancer worldwide. Epigenetic manipulation of cancer cells is a useful tool to better understand gene expression regulatory mechanisms and contributes to the discovery of novel biomarkers. Our research group recently reported a list of 83 genes that are potentially modulated by DNA methylation in GC cell lines. Herein, we further explored the regulation of one of these genes, LRRC37A2, in clinical samples. LRRC37A2expression was evaluated by RT-qPCR, and DNA methylation was studied using next-generation bisulphite sequencing in 36 GC and paired adjacent nonneoplastic tissue samples. We showed that both reduced LRRC37A2mRNA levels and increased LRRC37A2exon methylation were associated with undifferentiated and poorly differentiated tumours. Moreover, LRRC37A2gene expression and methylation levels were inversely correlated at the +45 exon CpG site. We suggest that DNA hypermethylation may contribute to reducing LRRC37A2expression in undifferentiated and poorly differentiated GC. Therefore, our results show how some genes may be useful to stratify patients who are more likely to benefit from epigenetic therapy.Abbreviations:AR: androgen receptor; 5-AZAdC: 5-aza-2'-deoxycytidine; B2M: beta-2-microglobulin; GAPDH: glyceraldehyde-3-phosphate dehydrogenase; GC: gastric cancer; GLM: general linear model; LRRC37A2: leucine-rich repeat containing 37 member A2; SD: standard deviation; TFII-I: general transcription factor II-I; TSS: transcription start site; XBP1: X-box binding protein 1
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