Identification of Novel Epigenetic Markers of Prostate Cancer by NotI-Microarray Analysis

Author:

Dmitriev Alexey A.12,Rosenberg Eugenia E.3,Krasnov George S.1,Gerashchenko Ganna V.3,Gordiyuk Vasily V.3,Pavlova Tatiana V.4,Kudryavtseva Anna V.1,Beniaminov Artemy D.1,Belova Anastasia A.1,Bondarenko Yuriy N.5,Danilets Rostislav O.5,Glukhov Alexander I.6,Kondratov Aleksandr G.3,Alexeyenko Andrey7,Alekseev Boris Y.2,Klein George4,Senchenko Vera N.1,Kashuba Vladimir I.34

Affiliation:

1. Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Moscow 119991, Russia

2. P.A. Herzen Moscow Cancer Research Institute, Ministry of Healthcare of the Russian Federation, Moscow 125284, Russia

3. Institute of Molecular Biology and Genetics, National Academy of Sciences of Ukraine, Kiev 03680, Ukraine

4. Department of Microbiology, Tumor and Cell Biology, Karolinska Institute, 17177 Stockholm, Sweden

5. Institute of Urology, National Academy of Medical Sciences of Ukraine, Kiev 04053, Ukraine

6. Department of Molecular Biology, Kurchatov NBIC Centre NRC “Kurchatov Institute”, Moscow 123182, Russia

7. Bioinformatics Infrastructure for Life Sciences, Science for Life Laboratory, Karolinska Institute, 17177 Stockholm, Sweden

Abstract

A significant need for reliable and accurate cancer diagnostics and prognosis compels the search for novel biomarkers that would be able to discriminate between indolent and aggressive tumors at the early stages of disease. The aim of this work was identification of potential diagnostic biomarkers for characterization of different types of prostate tumors. NotI-microarrays with 180 clones associated with chromosome 3 genes/loci were applied to determine genetic and epigenetic alterations in 33 prostate tumors. For 88 clones, aberrations were detected in more than 10% of tumors. The major types of alterations were DNA methylation and/or deletions. Frequent methylation of the discovered loci was confirmed by bisulfite sequencing on selective sampling of genes:FGF12,GATA2, andLMCD1. Three genes (BHLHE40,BCL6, andITGA9) were tested for expression level alterations using qPCR, and downregulation associated with hypermethylation was shown in the majority of tumors. Based on these data, we proposed the set of potential biomarkers for detection of prostate cancer and discrimination between prostate tumors with different malignancy and aggressiveness:BHLHE40,FOXP1,LOC285205,ITGA9,CTDSPL,FGF12,LOC440944/SETD5,VHL,CLCN2,OSBPL10/ZNF860,LMCD1,FAM19A4,CAND2,MAP4,KY, andLRRC58. Moreover, we probabilistically estimated putative functional relations between the genes within each set using the network enrichment analysis.

Funder

National Academy of Sciences of Ukraine

Publisher

Hindawi Limited

Subject

Biochemistry, medical,Clinical Biochemistry,Genetics,Molecular Biology,General Medicine

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