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miR-485-3p suppresses colorectal cancer via targeting TPX2.

Authors :
K., Taherdangkoo
S. R., Kazemi Nezhad
M. R., Hajjari
M., Tahmasebi Birgani
Source :
Bratislava Medical Journal / Bratislavské Lekárske Listy. 2020, Vol. 121 Issue 6, p302-307. 6p.
Publication Year :
2020

Abstract

BACKGROUND: Colorectal cancer (CRC), is the third most common cancer type. MicroRNAs and their roles in cancer progression have gained considerable attention in the scientific community. miR-485-3p has been identified to be abnormally expressed in different types of cancer, but its expression level, biological function, and underlying pathways are still unclear in CRC. Targeting Protein for Xenopus kinesin-like protein 2 (TPX2) is a nuclear protein which plays vital roles in cancer progression and mitotic spindle assembly. TPX2 is overexpressed in various malignancies and has been predicted as an indirect target of miR-485-3p. This study aims to investigate the miR-485-3p and TPX2 expression level, their potential correlation, and underlying molecules like P53 and P21 in forty-one pairs of colorectal cancer tissues compared to matched non-cancerous ones. MATERIALS AND METHODS: We used forty-one pairs of CRC fresh tissue samples and their adjacent normal ones for RNA extraction. After cDNA synthesis, the expression level of miR-485-3p, TPX2, P53 and P21 were determined by Real-time PCR. RESULTS AND CONCLUSIONS: The results revealed that miR-485-3p was significantly downregulated and TPX2 was highly upregulated in CRC tissues. Moreover, miR-485-3p was negatively correlated with TPX2 expression and positively correlated with P21 expression. We present miR-485-3p as a suppressor for colorectal cancer (Tab. 2, Fig. 8, Ref. 44). Text in PDF www.elis.sk. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00069248
Volume :
121
Issue :
6
Database :
Academic Search Index
Journal :
Bratislava Medical Journal / Bratislavské Lekárske Listy
Publication Type :
Academic Journal
Accession number :
143624959
Full Text :
https://doi.org/10.4149/BLL_2020_048