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Repression of Multiple Myeloma Cell Growth In Vivo by Single-wall Carbon Nanotube SWCNT-delivered MALAT1 Antisense Oligos
Published on: December 13, 2018
A peptide nucleic acid targeting nuclear RAD51 sensitizes multiple myeloma cells to melphalan treatment
David Abasiwani Alagpulinsa1, Shmuel Yaccoby, Srinivas Ayyadevara
1a McClellan Veterans Medical Center; Central Arkansas Veterans Healthcare System ; Little Rock , AR USA.
Abstract:
RAD51-mediated recombinational repair is elevated in multiple myeloma (MM) and predicts poor prognosis. RAD51 has been targeted to selectively sensitize and/or kill tumor cells. Here, we employed a peptide nucleic acid (PNA) to inhibit RAD51 expression in MM cells. We constructed a PNA complementary to a unique segment of the RAD51 gene promoter, spanning the transcription start site, and conjugated it to a nuclear localization signal (PKKKRKV) to enhance cellular uptake and nuclear delivery without transfection reagents. This synthetic construct, (PNArad51_nls), significantly reduced RAD51 transcripts in MM cells, and markedly reduced the number and intensity of de novo and melphalan-induced nuclear RAD51 foci, while increasing the level of melphalan-induced γH2AX foci. Melphalan alone markedly induced the expression of 5 other genes involved in homologous-recombination repair, yet suppression of RAD51 by PNArad51_nls was sufficient to synergize with melphalan, producing significant synthetic lethality of MM cells in vitro. In a SCID-rab mouse model mimicking the MM bone marrow microenvironment, treatment with PNArad51_nls ± melphalan significantly suppressed tumor growth after 2 weeks, whereas melphalan plus control PNArad4µ_nls was ineffectual. This study highlights the importance of RAD51 in myeloma growth and is the first to demonstrate that anti-RAD51 PNA can potentiate conventional MM chemotherapy.
Insights
Targeting RAD51 with a novel peptide nucleic acid (PNA) significantly enhances melphalan chemotherapy efficacy in multiple myeloma (MM) cells, leading to synthetic lethality and suppressed tumor growth in vivo.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- RAD51-mediated DNA repair is upregulated in multiple myeloma (MM), correlating with poor prognosis.
- Targeting RAD51 offers a strategy to selectively eliminate or sensitize MM tumor cells.
Purpose of the Study:
- To investigate the efficacy of a novel peptide nucleic acid (PNA) construct designed to inhibit RAD51 expression in MM cells.
- To evaluate the synergistic effect of RAD51 inhibition with melphalan chemotherapy in MM.
Main Methods:
- A PNA complementary to the RAD51 gene promoter, conjugated with a nuclear localization signal (PNArad51_nls), was synthesized and tested.
- RAD51 transcript levels, nuclear RAD51 foci, and γH2AX foci were assessed in MM cells treated with PNArad51_nls and/or melphalan.
- In vitro synthetic lethality and in vivo tumor growth in a SCID-rab mouse model were evaluated.
Main Results:
- PNArad51_nls significantly reduced RAD51 transcripts and nuclear RAD51 foci in MM cells.
- PNArad51_nls enhanced melphalan-induced γH2AX foci formation.
- PNArad51_nls synergized with melphalan to induce synthetic lethality in vitro and significantly suppressed tumor growth in vivo.
Conclusions:
- Inhibition of RAD51 expression using anti-RAD51 PNA is a viable strategy to potentiate conventional MM chemotherapy.
- This approach demonstrates significant therapeutic potential for overcoming chemoresistance in multiple myeloma.
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