TY - JOUR
T1 - G-quadruplex-interacting compounds alter latent DNA replication and episomal persistence of KSHV
AU - Madireddy, Advaitha
AU - Purushothaman, Pravinkumar
AU - Loosbroock, Christopher P.
AU - Robertson, Erle S.
AU - Schildkraut, Carl L.
AU - Verma, Subhash C.
N1 - Funding Information:
Public health grants from the National Institute of Health (NIH) [CA174459 and AI105000]; American Cancer Society [124389-RSG-13-230-01-MPC to S.C.V.]; NIH NIGMS [5R01-GM045751, P30AI051519]; Empire State Stem Cell Fund through New York State contract [C024348 and the Tri-Institutional Stem Cell Initiative funded by the Starr Foundation to C.L.S.]; and [CA171979, CA177423 and P01-CA-174439 to E.S.R.]. Funding for open access charge: Public health grants from the National Institute of Health (NIH) [CA174459 and AI105000]; American Cancer Society [124389-RSG-13-230-01-MPC to S.C.V.]; NIH NIGMS [5R01-GM045751, P30AI051519]; Empire State Stem Cell Fund through New York State contract [C024348 and the Tri-Institutional Stem Cell Initiative funded by the Starr Foundation to C.L.S.]; and [CA171979, CA177423 and P01-CA-174439 to E.S.R.].
Publisher Copyright:
© The Author(s) 2016. Published by Oxford University Press on behalf of Nucleic Acids Research.
PY - 2016/5/5
Y1 - 2016/5/5
N2 - Kaposi's sarcoma associated herpesvirus (KSHV) establishes life-long latent infection by persisting as an extra-chromosomal episome in the infected cells and by maintaining its genome in dividing cells. KSHV achieves this by tethering its epigenome to the host chromosome by latency associated nuclear antigen (LANA), which binds in the terminal repeat (TR) region of the viral genome. Sequence analysis of the TR, a GC-rich DNA element, identified several potential Quadruplex G-Rich Sequences (QGRS). Since quadruplexes have the tendency to obstruct DNA replication, we used G-quadruplex stabilizing compounds to examine their effect on latent DNA replication and the persistence of viral episomes. Our results showed that these G-quadruplex stabilizing compounds led to the activation of dormant origins of DNA replication, with preferential bi-directional pausing of replications forks moving out of the TR region, implicating the role of the G-rich TR in the perturbation of episomal DNA replication. Over time, treatment with PhenDC3 showed a loss of viral episomes in the infected cells. Overall, these data show that G-quadruplex stabilizing compounds retard the progression of replication forks leading to a reduction in DNA replication and episomal maintenance. These results suggest a potential role for G-quadruplex stabilizers in the treatment of KSHV-associated diseases.
AB - Kaposi's sarcoma associated herpesvirus (KSHV) establishes life-long latent infection by persisting as an extra-chromosomal episome in the infected cells and by maintaining its genome in dividing cells. KSHV achieves this by tethering its epigenome to the host chromosome by latency associated nuclear antigen (LANA), which binds in the terminal repeat (TR) region of the viral genome. Sequence analysis of the TR, a GC-rich DNA element, identified several potential Quadruplex G-Rich Sequences (QGRS). Since quadruplexes have the tendency to obstruct DNA replication, we used G-quadruplex stabilizing compounds to examine their effect on latent DNA replication and the persistence of viral episomes. Our results showed that these G-quadruplex stabilizing compounds led to the activation of dormant origins of DNA replication, with preferential bi-directional pausing of replications forks moving out of the TR region, implicating the role of the G-rich TR in the perturbation of episomal DNA replication. Over time, treatment with PhenDC3 showed a loss of viral episomes in the infected cells. Overall, these data show that G-quadruplex stabilizing compounds retard the progression of replication forks leading to a reduction in DNA replication and episomal maintenance. These results suggest a potential role for G-quadruplex stabilizers in the treatment of KSHV-associated diseases.
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U2 - 10.1093/nar/gkw038
DO - 10.1093/nar/gkw038
M3 - Article
C2 - 26837574
AN - SCOPUS:84966393727
SN - 0305-1048
VL - 44
SP - 3675
EP - 3694
JO - Nucleic acids research
JF - Nucleic acids research
IS - 8
ER -