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Updated: May 1, 2026

Measurement of BK-polyomavirus Non-Coding Control Region Driven Transcriptional Activity Via Flow Cytometry
Published on: July 13, 2019
Polyomavirus BK-encoded microRNA suppresses autoregulation of viral replication
Ya-Chung Tian1, Yi-Jung Li2, Hua-Chien Chen3
1Kidney Research Center, Department of Nephrology, Chang Gung Memorial Hospital, Taipei 105, Taiwan; Department of medicine, Chang Gung University, Tao Yuan 333, Taiwan.
Abstract:
Polyomavirus BK (BKV) infection is an important cause of renal allograft failure. Viral microRNAs are known to play a crucial role in viral replication. This study investigated the expression of BKV-encoded microRNAs (miR-B1) in patients with polyomavirus-associated nephropathy (PVAN) and their role in viral replication. Following BKV infection in renal proximal tubular cells, the 3p and 5p miR-B1 levels were significantly increased. Cells transfected with the vector containing the miR-B1 precursor (the miR-B1 vector) showed a significant increase in expression of 3p and 5p miR-B1 and decrease in luciferase activity of a reporter containing the 3p and 5p miR-B1 binding sites, compared to cells transfected with the miR-B1-mutated vector. Transfection of the miR-B1 expression vector or the 3p and 5p miR-B1 oligonucleotides inhibited expression of TAg. TAg-enhanced promoter activity and BKV replication were inhibited by miR-B1. In contrast, inhibition of miR-B1 expression by addition of miR-B1 antagomirs or silencing of Dicer upregulated the expression of TAg and VP1 proteins in BKV-infected cells. Importantly, patients with PVAN had significantly higher levels of 3p and 5p miR-B1 compared to renal transplant patients without PVAN. In conclusion, we demonstrated that (1) miR-B1 expression was upregulated during BKV infection and (2) miR-B1 suppressed TAg-mediated autoregulation of BKV replication. Use of miR-B1 can be evaluated as a potential treatment strategy against BKV infection.
Insights
Polyomavirus BK (BKV) infection causes kidney transplant failure. This study found that BKV microRNA-1 (miR-B1) is upregulated during infection and suppresses viral replication, suggesting miR-B1 as a potential therapeutic target.
Area of Science:
- Virology
- Molecular Biology
- Nephrology
Background:
- Polyomavirus BK (BKV) infection is a significant cause of renal allograft loss.
- Viral microRNAs are critical regulators of viral replication.
- Polyomavirus-associated nephropathy (PVAN) is a major complication following kidney transplantation.
Purpose of the Study:
- To investigate the expression of BKV-encoded microRNAs (miR-B1) in patients with PVAN.
- To elucidate the role of miR-B1 in BKV replication and TAg expression.
Main Methods:
- Analysis of miR-B1 expression in renal proximal tubular cells post-BKV infection.
- Transfection studies using miR-B1 vectors and oligonucleotides.
- Luciferase reporter assays to assess miR-B1 binding sites.
- Measurement of TAg and VP1 protein levels.
- Comparison of miR-B1 levels in PVAN patients versus non-PVAN transplant recipients.
Main Results:
- BKV infection led to significantly increased 3p and 5p miR-B1 levels.
- miR-B1 suppressed TAg expression and autoregulation of BKV replication.
- Inhibition of miR-B1 upregulated TAg and VP1 protein expression.
- PVAN patients exhibited higher 3p and 5p miR-B1 levels compared to controls.
Conclusions:
- miR-B1 expression is upregulated during BKV infection.
- miR-B1 acts as a suppressor of BKV replication by inhibiting TAg.
- miR-B1 represents a potential therapeutic target for managing BKV infection in kidney transplant recipients.
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