Cargando…

Benzolactam-related compounds promote apoptosis of HIV-infected human cells via protein kinase C–induced HIV latency reversal

Latency-reversing agents (LRAs) are considered a potential strategy for curing cells of HIV-1 infection. Certain protein kinase C (PKC) activators have been previously reported to be LRAs because they can reverse HIV latency. In the present study, we examined the activities of a panel of benzolactam...

Descripción completa

Detalles Bibliográficos
Autores principales: Matsuda, Kouki, Kobayakawa, Takuya, Tsuchiya, Kiyoto, Hattori, Shin-ichiro, Nomura, Wataru, Gatanaga, Hiroyuki, Yoshimura, Kazuhisa, Oka, Shinichi, Endo, Yasuyuki, Tamamura, Hirokazu, Mitsuya, Hiroaki, Maeda, Kenji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6322896/
https://www.ncbi.nlm.nih.gov/pubmed/30413535
http://dx.doi.org/10.1074/jbc.RA118.005798
_version_ 1783385669064720384
author Matsuda, Kouki
Kobayakawa, Takuya
Tsuchiya, Kiyoto
Hattori, Shin-ichiro
Nomura, Wataru
Gatanaga, Hiroyuki
Yoshimura, Kazuhisa
Oka, Shinichi
Endo, Yasuyuki
Tamamura, Hirokazu
Mitsuya, Hiroaki
Maeda, Kenji
author_facet Matsuda, Kouki
Kobayakawa, Takuya
Tsuchiya, Kiyoto
Hattori, Shin-ichiro
Nomura, Wataru
Gatanaga, Hiroyuki
Yoshimura, Kazuhisa
Oka, Shinichi
Endo, Yasuyuki
Tamamura, Hirokazu
Mitsuya, Hiroaki
Maeda, Kenji
author_sort Matsuda, Kouki
collection PubMed
description Latency-reversing agents (LRAs) are considered a potential strategy for curing cells of HIV-1 infection. Certain protein kinase C (PKC) activators have been previously reported to be LRAs because they can reverse HIV latency. In the present study, we examined the activities of a panel of benzolactam derivatives against cells latently infected with HIV. Using determination of p24 antigen in cell supernatants or altered intracellular GFP expression to measure HIV reactivation from latently infected cells along with a cytotoxicity assay, we found that some of the compounds exhibited latency-reversing activity, which was followed by enhanced release of HIV particles from the cells. One derivative, BL-V8-310, displayed activity in ACH-2 and J-Lat cells latently infected with HIV at a concentration of 10 nm or higher, which was superior to the activity of another highly active PKC activator, prostratin. These results were confirmed with peripheral blood cells from HIV-infected patients. We also found that these drugs up-regulate the expression of caspase 3 and enhance apoptosis specifically in latently HIV-infected cells. Moreover, combining BL-V8-310 with a bromodomain-containing 4 (BRD4) inhibitor, JQ1, not only enhanced HIV latency-reversing activity, but also reduced the effect on cytotoxic cytokine secretion from CD4(+) T-cells induced by BL-V8-310 alone. Our results suggest that BL-V8-310 and its related benzolactam derivatives are potential LRA lead compounds that are effective in reversing HIV latency and reducing viral reservoirs in HIV-positive individuals with few adverse effects.
format Online
Article
Text
id pubmed-6322896
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-63228962019-01-08 Benzolactam-related compounds promote apoptosis of HIV-infected human cells via protein kinase C–induced HIV latency reversal Matsuda, Kouki Kobayakawa, Takuya Tsuchiya, Kiyoto Hattori, Shin-ichiro Nomura, Wataru Gatanaga, Hiroyuki Yoshimura, Kazuhisa Oka, Shinichi Endo, Yasuyuki Tamamura, Hirokazu Mitsuya, Hiroaki Maeda, Kenji J Biol Chem Developmental Biology Latency-reversing agents (LRAs) are considered a potential strategy for curing cells of HIV-1 infection. Certain protein kinase C (PKC) activators have been previously reported to be LRAs because they can reverse HIV latency. In the present study, we examined the activities of a panel of benzolactam derivatives against cells latently infected with HIV. Using determination of p24 antigen in cell supernatants or altered intracellular GFP expression to measure HIV reactivation from latently infected cells along with a cytotoxicity assay, we found that some of the compounds exhibited latency-reversing activity, which was followed by enhanced release of HIV particles from the cells. One derivative, BL-V8-310, displayed activity in ACH-2 and J-Lat cells latently infected with HIV at a concentration of 10 nm or higher, which was superior to the activity of another highly active PKC activator, prostratin. These results were confirmed with peripheral blood cells from HIV-infected patients. We also found that these drugs up-regulate the expression of caspase 3 and enhance apoptosis specifically in latently HIV-infected cells. Moreover, combining BL-V8-310 with a bromodomain-containing 4 (BRD4) inhibitor, JQ1, not only enhanced HIV latency-reversing activity, but also reduced the effect on cytotoxic cytokine secretion from CD4(+) T-cells induced by BL-V8-310 alone. Our results suggest that BL-V8-310 and its related benzolactam derivatives are potential LRA lead compounds that are effective in reversing HIV latency and reducing viral reservoirs in HIV-positive individuals with few adverse effects. American Society for Biochemistry and Molecular Biology 2019-01-04 2018-11-09 /pmc/articles/PMC6322896/ /pubmed/30413535 http://dx.doi.org/10.1074/jbc.RA118.005798 Text en Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/3.0) .
spellingShingle Developmental Biology
Matsuda, Kouki
Kobayakawa, Takuya
Tsuchiya, Kiyoto
Hattori, Shin-ichiro
Nomura, Wataru
Gatanaga, Hiroyuki
Yoshimura, Kazuhisa
Oka, Shinichi
Endo, Yasuyuki
Tamamura, Hirokazu
Mitsuya, Hiroaki
Maeda, Kenji
Benzolactam-related compounds promote apoptosis of HIV-infected human cells via protein kinase C–induced HIV latency reversal
title Benzolactam-related compounds promote apoptosis of HIV-infected human cells via protein kinase C–induced HIV latency reversal
title_full Benzolactam-related compounds promote apoptosis of HIV-infected human cells via protein kinase C–induced HIV latency reversal
title_fullStr Benzolactam-related compounds promote apoptosis of HIV-infected human cells via protein kinase C–induced HIV latency reversal
title_full_unstemmed Benzolactam-related compounds promote apoptosis of HIV-infected human cells via protein kinase C–induced HIV latency reversal
title_short Benzolactam-related compounds promote apoptosis of HIV-infected human cells via protein kinase C–induced HIV latency reversal
title_sort benzolactam-related compounds promote apoptosis of hiv-infected human cells via protein kinase c–induced hiv latency reversal
topic Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6322896/
https://www.ncbi.nlm.nih.gov/pubmed/30413535
http://dx.doi.org/10.1074/jbc.RA118.005798
work_keys_str_mv AT matsudakouki benzolactamrelatedcompoundspromoteapoptosisofhivinfectedhumancellsviaproteinkinasecinducedhivlatencyreversal
AT kobayakawatakuya benzolactamrelatedcompoundspromoteapoptosisofhivinfectedhumancellsviaproteinkinasecinducedhivlatencyreversal
AT tsuchiyakiyoto benzolactamrelatedcompoundspromoteapoptosisofhivinfectedhumancellsviaproteinkinasecinducedhivlatencyreversal
AT hattorishinichiro benzolactamrelatedcompoundspromoteapoptosisofhivinfectedhumancellsviaproteinkinasecinducedhivlatencyreversal
AT nomurawataru benzolactamrelatedcompoundspromoteapoptosisofhivinfectedhumancellsviaproteinkinasecinducedhivlatencyreversal
AT gatanagahiroyuki benzolactamrelatedcompoundspromoteapoptosisofhivinfectedhumancellsviaproteinkinasecinducedhivlatencyreversal
AT yoshimurakazuhisa benzolactamrelatedcompoundspromoteapoptosisofhivinfectedhumancellsviaproteinkinasecinducedhivlatencyreversal
AT okashinichi benzolactamrelatedcompoundspromoteapoptosisofhivinfectedhumancellsviaproteinkinasecinducedhivlatencyreversal
AT endoyasuyuki benzolactamrelatedcompoundspromoteapoptosisofhivinfectedhumancellsviaproteinkinasecinducedhivlatencyreversal
AT tamamurahirokazu benzolactamrelatedcompoundspromoteapoptosisofhivinfectedhumancellsviaproteinkinasecinducedhivlatencyreversal
AT mitsuyahiroaki benzolactamrelatedcompoundspromoteapoptosisofhivinfectedhumancellsviaproteinkinasecinducedhivlatencyreversal
AT maedakenji benzolactamrelatedcompoundspromoteapoptosisofhivinfectedhumancellsviaproteinkinasecinducedhivlatencyreversal