scholarly journals Role of SP1-binding domains in in vivo transcriptional regulation of the human immunodeficiency virus type 1 long terminal repeat.

1989 ◽  
Vol 63 (6) ◽  
pp. 2585-2591 ◽  
Author(s):  
D Harrich ◽  
J Garcia ◽  
F Wu ◽  
R Mitsuyasu ◽  
J Gonazalez ◽  
...  
2004 ◽  
Vol 78 (7) ◽  
pp. 3210-3222 ◽  
Author(s):  
Evguenia S. Svarovskaia ◽  
Rebekah Barr ◽  
Xuechun Zhang ◽  
Godwin C. G. Pais ◽  
Christophe Marchand ◽  
...  

ABSTRACT We previously found that azido-containing β-diketo acid derivatives (DKAs) are potent inhibitors of human immunodeficiency virus type 1 (HIV-1) integrase (IN) (X. Zhang et al., Bioorg. Med. Chem. Lett., 13:1215-1219, 2003). To characterize the intracellular mechanisms of action of DKAs, we analyzed the antiviral activities of two potent azido-containing DKAs with either a monosubstitution or a disubstitution of azido groups, using single- and multiple-replication-cycle assays. Both azido-containing DKAs significantly inhibited HIV-1 infection in 293T, CEM-SS, and H9 cells (50% inhibitory concentration = 2 to 13 μM) and exhibited low cytotoxicity (50% cytotoxic concentration = 60 to 600 μM). Inhibition of HIV-1 IN in vivo was demonstrated by the observation that previously described L-708,906 resistance mutations in HIV-1 IN (T66I and T66I/S153Y) also conferred resistance to the azido-group-containing DKAs. In vitro assays and in vivo analysis indicated that the DKAs did not significantly inhibit the 3′ processing and selectively inhibited the strand transfer reaction. In addition, quantitative PCR indicated that two-long-terminal-repeat (2-LTR) circles were elevated in the presence of the azido-containing DKAs, confirming that HIV-1 IN was the intracellular target of viral inhibition. To gain insight into the mechanism by which the DKAs increased 2-LTR-circle formation of 3′-processed viral DNAs, we performed extensive DNA sequencing analysis of 2-LTR-circle junctions. The results indicated that the frequency of deletions at the circle junctions was elevated from 19% for the untreated controls to 32 to 41% in the presence of monosubstituted (but not disubstituted) DKAs. These results indicate that the structure of the DKAs can influence the extent of degradation of viral DNA ends by host nucleases and the frequency of deletions at the 2-LTR-circle junctions. Thus, sequencing analysis of 2-LTR-circle junctions can elucidate the intracellular mechanisms of action of HIV-1 IN inhibitors.


2002 ◽  
Vol 22 (12) ◽  
pp. 4043-4052 ◽  
Author(s):  
Shao-Chung Victor Hsia ◽  
Yun-Bo Shi

ABSTRACT The human immunodeficiency virus type 1 (HIV-1) long terminal repeat (LTR) controls the expression of HIV-1 viral genes and thus viral propagation and pathology. Numerous host factors participate in the regulation of the LTR promoter, including thyroid hormone (T3) receptor (TR). In vitro, TR can bind to the promoter region containing the NF-κB and Sp1 binding sites. Using the frog oocyte as a model system for chromatin assembly mimicking that in somatic cells, we demonstrated that TR alone and TR/RXR (9-cis retinoic acid receptor) can bind to the LTR in vivo independently of T3. Consistent with their ability to bind the LTR, both TR and TR/RXR can regulate LTR activity in vivo. In addition, our analysis of the plasmid minichromosome shows that T3-bound TR disrupts the normal nucleosomal array structure. Chromatin immunoprecipitation assays with anti-acetylated-histone antibodies revealed that unliganded TR and TR/RXR reduce the local histone acetylation levels at the HIV-1 LTR while T3 treatment reverses this reduction. We further demonstrated that unliganded TR recruits corepressors and at least one histone deacetylase. These results suggest that chromatin remodeling, including histone acetylation and chromatin disruption, is important for T3 regulation of the HIV-1 LTR in vivo.


2004 ◽  
Vol 85 (4) ◽  
pp. 921-927 ◽  
Author(s):  
Gabriela Bleiber ◽  
Solange Peters ◽  
Raquel Martinez ◽  
Dusan Cmarko ◽  
Pascal Meylan ◽  
...  

The human immunodeficiency virus type 1 p6 region encodes p6Gag and the transframe p6Pol protein. The Gag frame encodes an N-terminal late assembly L domain and a C-terminal Vpr binding domain. In the Pol frame, substitution at a C-terminal motif decreases protease autocleavage. The role of the highly polymorphic central region of p6, comprising amino acids S14–I31 (p6Gag) and R20–D39 (p6Pol), is unclear. Analysis of this central region demonstrated that 35 % of p6Gag appears to be dispensable for virus propagation in vitro and smaller deletion and insertion polymorphisms can be tolerated in vivo. Extensive Pol deletion (ΔR20–D39, 42 % of p6Pol) did not alter protease autocleavage.


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