4.2 Article

Colorectal cancer promoter methylation alteration affects the expression of glutamate ionotropic receptor AMPA type subunit 4 alternative isoforms potentially relevant in colon tissue

期刊

HUMAN CELL
卷 35, 期 1, 页码 310-319

出版社

SPRINGER JAPAN KK
DOI: 10.1007/s13577-021-00640-x

关键词

Colorectal cancer (CRC); DNA methylation alterations; GRIA4; Gene expression; Gene regulation

资金

  1. Fondazione Banco di Sardegna
  2. Fondo per la Ricerca Locale
  3. Universita di Cagliari, POR FESR Sardegna [1C-177]
  4. Regione Autonoma della Sardegna [CRP-79303]
  5. Italian University Minister PON-AIM [F74I18000200001]
  6. Fondazione di Sardegna (FdS) Salute pubblica Medicina preventiva e riabilitativa [U278.2021/AI.259.RP]

向作者/读者索取更多资源

This study evaluated the expression of two main isoforms of GRIA4 in CRC, finding downregulation of both variants in tumors, while the short isoform showed higher expression at the protein level. This discrepancy may be explained by miRNA specifically targeting the canonical isoform, suggesting a functional role of the short isoform in intestinal cell biology.
DNA methylation alterations are early events during tumourigenesis, affecting genes involved in the crosstalk between cells and surroundings in colorectal cancer (CRC). Among these genes, GRIA4, Glutamate Ionotropic Receptor AMPA Type Subunit 4, displays hypermethylation in the promoter region, and is an early diagnostic biomarker. It is well known that methylation can also affect alternative transcription. The purpose of this study is to evaluate the expression, at transcript and protein level, of GRIA4 main isoforms (the canonical one and a short variant) in 23 CRC and matched normal samples, of which we previously verified the methylation status. We further predicted miRNA/transcript target interactions as a possible post-transcriptional regulation using bioinformatics tools. As expected, downregulation of both variants has been observed in tumours. Interestingly, in contrast to what observed at transcriptional level, the GluR4 protein short isoform displayed higher expression than the canonical one either in normal or tumoural tissues. This may be explained by miRNA specifically targeting the canonical isoform. Our study is the first one that shows the expression of both isoforms in colon tissues. To note, the evident expression of the short isoform suggests a functional role in intestinal cell biology.

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