Development of a novel multiplex digital PCR-based method for the detection of HTLV-1 proviral deletion
The human T-cell leukemia virus type 1 (HTLV-1), a retrovirus, integrates into host DNA and causes adult T-cell leukemia/lymphoma (ATL) in some individuals. Two types of defective proviruses, Type 1 and Type 2, are often observed in ATL cells. Here, we developed a 3-plex digital PCR (dPCR) method to...
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Veröffentlicht in: | Journal of virological methods 2025-02, Vol.332, p.115071, Article 115071 |
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Zusammenfassung: | The human T-cell leukemia virus type 1 (HTLV-1), a retrovirus, integrates into host DNA and causes adult T-cell leukemia/lymphoma (ATL) in some individuals. Two types of defective proviruses, Type 1 and Type 2, are often observed in ATL cells. Here, we developed a 3-plex digital PCR (dPCR) method to detect HTLV-1 proviral deletions by comparing the ratios of copy numbers quantified using specific primer-probes for the LTR, pol, and pX regions. We analyzed HTLV-1-positive asymptomatic carriers (ACs) and AC samples at high risk for developing ATL due to high proviral load (ATL high-risk (HR) ACs) using dPCR. Deletions were identified in 11.8 % (4/34, all Type 1) of ACs and 33.3 % (7/21, Type 1:1, Type 2:6) of ATL HR ACs. dPCR analysis revealed that in three ATL samples, all exhibited Type 1 defective characteristics, and two showed extremely low ratios in the pol region. Clonality analysis of these two samples revealed high monoclonality, indicating monoclonal expansion of ATL cells with defective proviruses. These findings demonstrate that our method effectively detects defective proviruses in both ACs and ATL, providing a valuable tool for understanding the genomic characteristics of proviruses in these conditions.
•Established a 3-plex digital PCR method to detect deleted HTLV-1 proviruses.•Quantitatively detected 20 % difference in the percentage of defective proviruses.•Simple and quick detection of defective proviruses in asymptomatic carriers and ATL patients. |
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ISSN: | 0166-0934 1879-0984 1879-0984 |
DOI: | 10.1016/j.jviromet.2024.115071 |