apobec3g expression
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Pathogens ◽  
2021 ◽  
Vol 11 (1) ◽  
pp. 7
Author(s):  
Fuchun Zhang ◽  
Lingling Sun ◽  
Mark K. Lafferty ◽  
Joseph B. Margolick ◽  
Alfredo Garzino-Demo

CD4+ CCR6+ T cells are highly susceptible to HIV infection, and a high cytokine producing CCR6+ T cell subset is selectively lost during HIV infection. The CCR6 chemokine MIP-3α (CCL20) is produced at sites of infection in SIV animal models. Recently, we have shown that MIP-3α inhibits HIV replication. This inhibition of HIV infection is mediated by CCR6 signaling and eventuates in increased APOBEC3G expression. Since there are no existing reports on the role of MIP-3α in health or disease, we studied its production by PBMCs from HIV-seronegative and HIV+ subjects. We evaluated the ability of PBMCs to produce MIP-3α in response to antigen stimulation using cells obtained from two groups: one composed of HIV-seronegative subjects (n = 16) and the other composed of HIV+ subjects (n = 58), some asymptomatic and some with clinically defined AIDS. Antigens included fragment C of the tetanus toxin, Candida albicans, whole-inactivated HIV, and HIV p24. MIP-3α was detected by ELISA in tissue culture supernatants of antigen-stimulated PBMCs. MIP-3α production by antigen-stimulated PBMCs was readily measured for HIV-negative subjects and for HIV-seropositive asymptomatic subjects, but not for patients with AIDS. These results suggest that subversion of the MIP-3α-CCR6 axis by HIV during the course of infection contributes to the loss of immune function that eventually leads to AIDS.


2018 ◽  
Vol 9 (3) ◽  
Author(s):  
Tegwinde Rebeca Compaore ◽  
Serge Theophile Soubeiga ◽  
Abdoul Karim Ouattara ◽  
Damehan Tchelougou ◽  
Cyrille Bisseye ◽  
...  

APOBEC3G is a potent inhibitor of HIV-1 replication, and act by deaminating cytidines in uracil on the negative strand of the viral cDNA. In this case-control study, APOBEC3G expression in subjects’ naïve to HAART infected by HIV-1 and the effect of APOBEC3G polymorphism on its expression were evaluated. The results show that the HIV-1 infected carriers of the G minor alleles of the variant rs8177832 had a higher expression of APOBEC3G mRNA than the controls carriers of the G minor allele. APOBEC3G polymorphisms could play an important role in the modulation of the HIV-1 dissemination.


2016 ◽  
Vol 22 (18) ◽  
pp. 4746-4755 ◽  
Author(s):  
Brandon Leonard ◽  
Gabriel J. Starrett ◽  
Matthew J. Maurer ◽  
Ann L. Oberg ◽  
Mieke Van Bockstal ◽  
...  

Virology ◽  
2012 ◽  
Vol 430 (1) ◽  
pp. 1-9 ◽  
Author(s):  
Yordanka Kourteva ◽  
MariaPia De Pasquale ◽  
Tara Allos ◽  
Chara McMunn ◽  
Richard T. D'Aquila

Blood ◽  
2012 ◽  
Vol 120 (2) ◽  
pp. 366-375 ◽  
Author(s):  
Roni Nowarski ◽  
Ofer I. Wilner ◽  
Ori Cheshin ◽  
Or D. Shahar ◽  
Edan Kenig ◽  
...  

Abstract APOBEC3 proteins catalyze deamination of cytidines in single-stranded DNA (ssDNA), providing innate protection against retroviral replication by inducing deleterious dC > dU hypermutation of replication intermediates. APOBEC3G expression is induced in mitogen-activated lymphocytes; however, no physiologic role related to lymphoid cell proliferation has yet to be determined. Moreover, whether APOBEC3G cytidine deaminase activity transcends to processing cellular genomic DNA is unknown. Here we show that lymphoma cells expressing high APOBEC3G levels display efficient repair of genomic DNA double-strand breaks (DSBs) induced by ionizing radiation and enhanced survival of irradiated cells. APOBEC3G transiently accumulated in the nucleus in response to ionizing radiation and was recruited to DSB repair foci. Consistent with a direct role in DSB repair, inhibition of APOBEC3G expression or deaminase activity resulted in deficient DSB repair, whereas reconstitution of APOBEC3G expression in leukemia cells enhanced DSB repair. APOBEC3G activity involved processing of DNA flanking a DSB in an integrated reporter cassette. Atomic force microscopy indicated that APOBEC3G multimers associate with ssDNA termini, triggering multimer disassembly to multiple catalytic units. These results identify APOBEC3G as a prosurvival factor in lymphoma cells, marking APOBEC3G as a potential target for sensitizing lymphoma to radiation therapy.


Retrovirology ◽  
2012 ◽  
Vol 9 (S1) ◽  
Author(s):  
Alfredo Garzino-Demo ◽  
Mark K Lafferty ◽  
Jennifer Bharucha ◽  
Lingling Sun ◽  
Walter Royal ◽  
...  

Author(s):  
Mark K Lafferty ◽  
Lingling Sun ◽  
Leon DeMasi ◽  
Wuyuan Lu ◽  
Alfredo Garzino-Demo
Keyword(s):  
T Cells ◽  

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