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Updated: Sep 23, 2025

Author Spotlight: Exploring the Frontier of mRNA Research with Poly A Tail Analysis Techniques
Published on: January 12, 2024
Template-Independent Poly(A)-Tail Decay and RNASEL as Potential Cellular Biomarkers for Prostate Cancer Development
Gordana Kocić1, Jovan Hadzi-Djokić2, Andrej Veljković1
1Department of Biochemistry, Faculty of Medicine, University of Niš, 18000 Niš, Serbia.
Abstract:
The post-transcriptional messenger RNA (mRNA) decay and turnover rate of the template-independent poly(A) tail, localized at the 3'-untranslated region (3'UTR) of mRNA, have been documented among subtle mechanisms of uncontrolled cancer tissue growth. The activity of Poly(A) deadenylase and the expression pattern of RNASEL have been examined. A total of 138 prostate tissue specimens from 46 PC patients (cancer specimens, corresponding adjacent surgically healthy tissues, and in their normal counterparts, at least 2 cm from carcinoma) were used. For the stratification prediction of healthy tissue transition into malignant phenotype, the enzyme activity of tumor-adjacent tissue was considered in relation to the presence of microfocal carcinoma. More than a four-times increase in specific enzyme activity (U/L g.prot) was registered in PC on account of both the dissociation of its inhibitor and genome reprogramming. The obtained ROC curve and Youden index showed that Poly(A) deadenylase identified PC with a sensitivity of 93.5% and a specificity of 94.6%. The RNASEL expression profile was raised significantly in PC, but the sensitivity was 40.5% and specificity was 86.9%. A significantly negative correlation between PC and control tissue counterparts with a higher expression pattern in lymphocyte-infiltrated samples were reported. In conclusion, significantly upregulated Poly(A) deadenylase activity may be a checkpoint for the transition of precancerous lesion to malignancy, while RNASEL may predict chronic inflammation.
Insights
Upregulated Poly(A) deadenylase activity in prostate cancer (PC) may signal malignant transition. RNASEL expression, while elevated in PC, may indicate chronic inflammation, suggesting distinct roles in cancer progression.
Area of Science:
- Molecular Biology
- Oncology
- Biochemistry
Background:
- Messenger RNA (mRNA) poly(A) tail decay is implicated in cancer progression.
- Understanding the roles of Poly(A) deadenylase and RNASEL in prostate cancer (PC) is crucial.
Purpose of the Study:
- To investigate the activity of Poly(A) deadenylase and the expression of RNASEL in prostate cancer tissues.
- To evaluate their potential as biomarkers for PC diagnosis and progression.
Main Methods:
- Analysis of 138 prostate tissue specimens from 46 PC patients.
- Measurement of Poly(A) deadenylase enzyme activity.
- Assessment of RNASEL expression patterns.
- Correlation analysis with clinicopathological features.
Main Results:
- Poly(A) deadenylase activity was significantly increased in PC tissues (over four-fold), with high sensitivity (93.5%) and specificity (94.6%) for PC identification.
- RNASEL expression was also significantly elevated in PC, but with lower sensitivity (40.5%) and specificity (86.9%).
- A negative correlation was observed between PC and control tissues, with higher RNASEL expression in lymphocyte-infiltrated samples.
Conclusions:
- Elevated Poly(A) deadenylase activity may serve as a critical indicator for the transition from precancerous lesions to malignancy in prostate cancer.
- RNASEL expression patterns could potentially predict chronic inflammation associated with PC.
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