TY - UNPB
T1 - Sirtuin2 blockade inhibits replication of Human Immunodeficiency Virus-1 and
Mycobacterium tuberculosis in macrophages and humanized mice.
AU - Singh, Vipul K
AU - Mishra, Abhishek
AU - Truong, Khangy
AU - Bohorquez, Jose Alejandro
AU - Sharma, Suman
AU - Khan, Arshad
AU - Bracher, Franz
AU - Zhang, Kangling
AU - Endsley, Janice
AU - Endsley, Mark
AU - Rice, Andrew P
AU - Kimata, Jason T
AU - Yi, Guohua
AU - Jagannath, Chinnaswamy
PY - 2024/10/29
Y1 - 2024/10/29
N2 - Coinfections with
Mycobacterium tuberculosis (Mtb) and HIV-1 present a critical health challenge and require treatment for survival. We found that human M1 macrophages inhibit Mtb growth, while M2 macrophages, characterized by elevated Sirt2 expression, permit Mtb growth. Further, we found that HIV-1 augmented Sirt2 gene expression in MФs. Therefore, we explored the therapeutic potential of sirtuin-modulating drugs in MФs. Sirtinol, a Sirt2 inhibitor, significantly reduced HIV-1 growth in M0, M1, and M2-MФs by >1 log10 over 7 days. Conversely, individual doses of resveratrol and SRT1460, which activate Sirt1, did not affect HIV-1. However, their combination showed a strong synergistic inhibition of HIV-1. The combination of sirtinol with resveratrol was neither synergistic nor antagonistic. Sirtinol upregulated
iNOS and
ATG5 mRNA in HIV-1 infected MФs in a phenotype-dependent manner. In a humanized mouse model (Hu-NSG-SGM3) co-infected with Mtb H37Rv and the HIV-1 BAL strain, treatment with sirtinol alone, or in combination with combination antiretroviral therapy (cART), showed promising results; Sirtinol alone reduced Mtb growth, while its combination with cART effectively inhibited HIV-1 replication in the organs. We propose that Sirt2 blockade and Sirt1-activation represent a novel dual therapeutic strategy for treating HIV-1 and Mtb coinfections.
AB - Coinfections with
Mycobacterium tuberculosis (Mtb) and HIV-1 present a critical health challenge and require treatment for survival. We found that human M1 macrophages inhibit Mtb growth, while M2 macrophages, characterized by elevated Sirt2 expression, permit Mtb growth. Further, we found that HIV-1 augmented Sirt2 gene expression in MФs. Therefore, we explored the therapeutic potential of sirtuin-modulating drugs in MФs. Sirtinol, a Sirt2 inhibitor, significantly reduced HIV-1 growth in M0, M1, and M2-MФs by >1 log10 over 7 days. Conversely, individual doses of resveratrol and SRT1460, which activate Sirt1, did not affect HIV-1. However, their combination showed a strong synergistic inhibition of HIV-1. The combination of sirtinol with resveratrol was neither synergistic nor antagonistic. Sirtinol upregulated
iNOS and
ATG5 mRNA in HIV-1 infected MФs in a phenotype-dependent manner. In a humanized mouse model (Hu-NSG-SGM3) co-infected with Mtb H37Rv and the HIV-1 BAL strain, treatment with sirtinol alone, or in combination with combination antiretroviral therapy (cART), showed promising results; Sirtinol alone reduced Mtb growth, while its combination with cART effectively inhibited HIV-1 replication in the organs. We propose that Sirt2 blockade and Sirt1-activation represent a novel dual therapeutic strategy for treating HIV-1 and Mtb coinfections.
U2 - 10.1101/2024.10.27.620499
DO - 10.1101/2024.10.27.620499
M3 - Preprint
C2 - 39553987
T3 - bioRxiv
BT - Sirtuin2 blockade inhibits replication of Human Immunodeficiency Virus-1 and
Mycobacterium tuberculosis in macrophages and humanized mice.
ER -