Oxidative stress induced by HIV-1 F34IVpr in Schizosaccharomyces pombe is one of its multiple functions

2010 ◽  
Vol 88 (1) ◽  
pp. 38-44 ◽  
Author(s):  
Timea Stromájer-Rácz ◽  
Zoltán Gazdag ◽  
József Belágyi ◽  
Csaba Vágvölgyi ◽  
Richard Y. Zhao ◽  
...  
2018 ◽  
Author(s):  
Marine Kanja ◽  
Pierre Cappy ◽  
Guillermo Blanco-Rodriguez ◽  
Nicolas Levy ◽  
Oyndamola Oladosu ◽  
...  
Keyword(s):  

2021 ◽  
Vol 9 (6) ◽  
pp. 1219
Author(s):  
Maria Isaguliants ◽  
Olga Krotova ◽  
Stefan Petkov ◽  
Juris Jansons ◽  
Ekaterina Bayurova ◽  
...  

Therapeutic DNA-vaccination against drug-resistant HIV-1 may hinder emergence and spread of drug-resistant HIV-1, allowing for longer successful antiretroviral treatment (ART) up-to relief of ART. We designed DNA-vaccines against drug-resistant HIV-1 based on consensus clade A integrase (IN) resistant to raltegravir: IN_in_r1 (L74M/E92Q/V151I/N155H/G163R) or IN_in_r2 (E138K/G140S/Q148K) carrying D64V abrogating IN activity. INs, overexpressed in mammalian cells from synthetic genes, were assessed for stability, route of proteolytic degradation, and ability to induce oxidative stress. Both were found safe in immunotoxicity tests in mice, with no inherent carcinogenicity: their expression did not enhance tumorigenic or metastatic potential of adenocarcinoma 4T1 cells. DNA-immunization of mice with INs induced potent multicytokine T-cell response mainly against aa 209–239, and moderate IgG response cross-recognizing diverse IN variants. DNA-immunization with IN_in_r1 protected 60% of mice from challenge with 4Tlluc2 cells expressing non-mutated IN, while DNA-immunization with IN_in_r2 protected only 20% of mice, although tumor cells expressed IN matching the immunogen. Tumor size inversely correlated with IN-specific IFN-γ/IL-2 T-cell response. IN-expressing tumors displayed compromised metastatic activity restricted to lungs with reduced metastases size. Protective potential of IN immunogens relied on their immunogenicity for CD8+ T-cells, dependent on proteasomal processing and low level of oxidative stress.


mBio ◽  
2020 ◽  
Vol 11 (2) ◽  
Author(s):  
Priyanka Tyagi ◽  
Virender Kumar Pal ◽  
Ragini Agrawal ◽  
Shalini Singh ◽  
Sandhya Srinivasan ◽  
...  

ABSTRACT The synergy between Mycobacterium tuberculosis and human immunodeficiency virus-1 (HIV-1) interferes with therapy and facilitates the pathogenesis of both human pathogens. Fundamental mechanisms by which M. tuberculosis exacerbates HIV-1 infection are not clear. Here, we show that exosomes secreted by macrophages infected with M. tuberculosis, including drug-resistant clinical strains, reactivated HIV-1 by inducing oxidative stress. Mechanistically, M. tuberculosis-specific exosomes realigned mitochondrial and nonmitochondrial oxygen consumption rates (OCR) and modulated the expression of host genes mediating oxidative stress response, inflammation, and HIV-1 transactivation. Proteomics analyses revealed the enrichment of several host factors (e.g., HIF-1α, galectins, and Hsp90) known to promote HIV-1 reactivation in M. tuberculosis-specific exosomes. Treatment with a known antioxidant—N-acetyl cysteine (NAC)—or with inhibitors of host factors—galectins and Hsp90—attenuated HIV-1 reactivation by M. tuberculosis-specific exosomes. Our findings uncover new paradigms for understanding the redox and bioenergetics bases of HIV-M. tuberculosis coinfection, which will enable the design of effective therapeutic strategies. IMPORTANCE Globally, individuals coinfected with the AIDS virus (HIV-1) and with M. tuberculosis (causative agent of tuberculosis [TB]) pose major obstacles in the clinical management of both diseases. At the heart of this issue is the apparent synergy between the two human pathogens. On the one hand, mechanisms induced by HIV-1 for reactivation of TB in AIDS patients are well characterized. On the other hand, while clinical findings clearly identified TB as a risk factor for HIV-1 reactivation and associated mortality, basic mechanisms by which M. tuberculosis exacerbates HIV-1 replication and infection remain poorly characterized. The significance of our research is in identifying the role of fundamental mechanisms such as redox and energy metabolism in catalyzing HIV-M. tuberculosis synergy. The quantification of redox and respiratory parameters affected by M. tuberculosis in stimulating HIV-1 will greatly enhance our understanding of HIV-M. tuberculosis coinfection, leading to a wider impact on the biomedical research community and creating new translational opportunities.


2019 ◽  
Vol 25 (S2) ◽  
pp. 1160-1161
Author(s):  
Frank Denaro ◽  
Myla Worthington ◽  
Francesca Benedetti ◽  
Sabrina Curreli ◽  
Davide Zella ◽  
...  

Toxicon ◽  
2013 ◽  
Vol 73 ◽  
pp. 130-143 ◽  
Author(s):  
Nóra Mike ◽  
Gábor Papp ◽  
Milan Čertik ◽  
Zsuzsanna Czibulya ◽  
Sándor Kunsági-Máté ◽  
...  

Sign in / Sign up

Export Citation Format

Share Document