Frequent DNA Hypermethylation at the RASSF1A and APC Gene Loci in Prostate Cancer Patients of Pakistani Origin

Author:

Yaqinuddin Ahmed1,Qureshi Sohail A.2,Pervez Shahid3,Bashir Mohammed Umair4,Nazir Ressam4,Abbas Farhat5

Affiliation:

1. College of Medicine, Alfaisal University, Al Mather Street, Takhassusi Road, Riyadh 11533, Saudi Arabia

2. Department of Biology, Syed Babar Ali School of Science and Engineering, Lahore University of Management Sciences, Lahore 54792, Pakistan

3. Department of Microbiology and Pathology, The Aga Khan University, Stadium Road, Karachi 74800, Pakistan

4. Medical College, The Aga Khan University, Stadium Road, Karachi 74800, Pakistan

5. Department of Surgery, The Aga Khan University, Stadium Road, Karachi 74800, Pakistan

Abstract

DNA methylation has emerged as a potentially robust biomarker for prostate cancer (PCa). Since DNA methylomes appear to be disease as well as population specific, we have assessed the DNA methylation status of RASSF1A, APC, and p16 (potential biomarkers of PCa) in Pakistani population. Primary prostate cancer tissues were obtained from 27 formalin-fixed paraffin-embedded blocks (FFPE) of cancer patients who underwent radical prostatectomy and transurethral resection of prostate (TURP) during 2003–2008. As controls, twenty-four benign prostatic FFPE tissues were obtained from patients who underwent TURP for benign prostatic hyperplasia during 2008. DNA was extracted, and methylation-specific PCR was used to assess the methylation status for RASSF1A, APC, and p16 gene promoters. Our results revealed that the RASSF1A promoter was hypermethylated in all the tested cancer samples but was also hypermethylated in 3 out of 24 control tissues. The APC promoter was hypermethylated in 15 out of 27 cancer samples and in none of the control samples. Strikingly, none of the samples showed methylation at the p16 promoter. Our findings suggest that RASSF1A and APC gene promoters are frequently hypermethylated in the Pakistani population and therefore have the potential to develop into universally dependable biomarkers for detecting PCa.

Funder

Aga Khan Foundation

Publisher

Hindawi Limited

Subject

General Earth and Planetary Sciences,General Environmental Science

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