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Biomedical subjects

R B Lal

Publications and source records attributed to R B Lal.

At least 19 recordsLinked to original sources

Mycobacterium xenopi multiplies within human macrophages and enhances HIV replication in vitro.

Mycobacterium xenopi can cause opportunistic infections, particularly in persons infected with human immunodeficiency virus type 1 (HIV-1). The primary focus of this effort was to determine if M. xenopi isolates could survive and grow in human peripheral blood macrophage (MPhi), and if these isolates could promote the replication of HIV-1 in vitro. M. xenopi bacilli survived and replicated 10-fold within 48 h in human MPhi while avirulent Mycobacterium smegmatis, did not grow within the MPhi. M. xenopi bacilli when cultured with peripheral blood mononuclear cells enhanced HIV-1 replication 30- and 50-fold with the macrophage-tropic HIV-1(Ba-L) and 50- and 75-fold with T-cell-tropic strain HIV-1(LAI) by 6 days post-infection when compared to M. smegmatis. The enhanced HIV replication was associated with increased production of TNF-alpha. Partial inhibition of HIV-1 induction was observed using a neutralizing anti-TNF-alpha monoclonal antibody, pentoxifylline, and matrix metalloproteinase (MMP) inhibitor I. Similar mechanisms of pathogenesis among mycobacterial species may help elucidate better treatment approaches in HIV co-infected persons.

AIDS-Related Opportunistic Infections↗

A theta-defensin composed exclusively of D-amino acids is active against HIV-1.

The ability of certain theta-defensins, including retrocyclin-1, to protect human cells from infection by HIV-1 marks them as potentially useful molecules. Theta-defensins composed of L-amino acids are likely to be unstable in environments that contain host and microbial proteases. This study compared the properties of two enantiomeric theta-defensins, retrocyclin-1, and RC-112. Although these peptides have identical sequences, RC-112 is composed exclusively of D-amino acids, whereas retrocyclin-1 contains only L-amino acids. We compared the ability of these peptides to protect JC53-BL human cells from infection by 30 primary HIV-1 isolates. JC53-BL cells are modified HeLa cells that express surface CD4, CXCR4, and CCR5. They also contain reporter cassettes that are driven by the HIV-1 LTR, and express beta-galactosidase and luciferase. The HIV-1 isolates varied in co-receptor specificity and included subtypes A, B, C, D, CRF01-AE, and G. RC-112 was several fold more potent than retrocyclin-1 across the entire HIV-1 panel. Although RC-112 bound immobilized gp120 and CD4 with lower affinity than did retrocyclin-1, surface plasmon resonance experiments performed with 1 microg/mL of RC-112 and retrocyclin-1 revealed that both glycoproteins were bound to a similar extent. The superior antiviral performance of RC-112 most likely reflected its resistance to degradation by surface-associated or secreted proteases of the JC53-BL target cells. Theta-defensins composed exclusively of D-amino acids merit consideration as starting points for designing microbicides for topical application to the vagina or rectum.

Amino Acids↗

HIV-specific cytotoxic T lymphocytes, HLA-A11, and chemokine-related factors may act synergistically to determine HIV resistance in CCR5 delta32-negative female sex workers in Chiang Rai, northern Thailand.

Understanding how highly HIV-exposed individuals remain HIV uninfected may be useful for HIV vaccine design and development of new HIV prevention strategies. To elucidate mechanisms associated with resistance to HIV infection, immunologic and genetic factors were examined in 14 HIV-exposed but persistently seronegative (HEPS) female sex workers from Chiang Rai, northern Thailand and in ethnically matched, HIV-positive (n = 9) and HIV-negative women (n = 9). The HEPS women were identified in a study of commercial sex workers who had an HIV-1 incidence of 20.3 per 100 person-years. A high frequency of HLA-A11 was observed in HEPS women (86%) compared with northern Thai controls (56%). HIV-specific cytotoxic T lymphocyte (CTL) lytic responses were detected in cryopreserved peripheral blood mononuclear cells (PBMCs), using HLA-A-matched subtype E HIV-1 peptides in four of seven (57%) HEPS women, eight of eight HIV-positive women, and zero of nine HIV-negative unexposed controls (p = 0.019 HEPS women vs. HIV-negative controls). CTL lysis levels were low, but responses were detected to peptides from Nef, Pol, Gag, and Env. Nef responses predominated in HEPS women. Compared with controls, HEPS women tended to have higher frequencies of CCR5 promotor 59402GG and SDF-1 3'UTR 801A genotypes known to influence HIV transmission or course of disease. HEPS women also had higher levels of spontaneous RANTES production by PBMCs than other groups. Each of these factors could potentially contribute to HIV resistance. As most HEPS women had one or more of these factors, they may prevent HIV infection synergistically by blocking HIV cell entry, delaying its dissemination, or killing HIV-infected cells.

Adult↗

Cervical and prostate primary epithelial cells are not productively infected but sequester human immunodeficiency virus type 1.

Primary prostate and cervical epithelial cells and epithelial cell lines were examined for human immunodeficiency virus type 1 (HIV-1) infection or transmission to peripheral blood mononuclear cells (PBMC). Neither cell-free nor cell-associated HIV-1 infected primary epithelial cells or cell lines. Pretreatment of HIV-1 to enhance CD4-independent entry did not augment infection. Cell surface expression was detected for galactosyl ceramide but not for CC-chemokine receptor 5, CXC-chemokine receptor 4, or CD4. The ability to transfer HIV-1 to resting or activated PBMC was tested by culturing with rinsed or trypsinized and replated HIV-1-exposed epithelial cells. Virus was not recovered from the rinsed or replated cocultures with resting PBMC; however, activated PBMC recovered HIV-1 from rinsed epithelial cells and rarely from replated epithelial cells. Although urogenital epithelial cells are not infected, these data suggest that they can transfer virus to activated immune cells and have implications for sexual transmission of HIV-1.

CD4 Antigens↗

Predominance of HIV type 1 subtype G among commercial sex workers from Kinshasa, Democratic Republic of Congo.

We have investigated the genetic diversity and potential mosaic genomes of HIV-1 during the early part of the HIV-1 epidemic among commercial sex workers (CSWs) in Kinshasa, Democratic Republic of Congo (formerly Zaire). Serologic analysis revealed that 27 (28.7%) of the 94 specimens were seropositive by both peptide and whole-virus lysate EIAs and that 24 were positive by molecular screening assays, using generic primers that can detect all known groups of HIV-1. Phylogenetic analyses of the gag(p24), C2V3, and gp41 regions of these 24 specimens showed that all were group M; none of them had any evidence of group O, N, or SIVcpz-like sequences. On the basis of env sequence analysis, the 24 group M specimens were classified as subtypes G (37.5%), A (21%), F1 (12.5%), CRF01_AE (8%), D (4%), and H (4%); 3 (12.5%) were unclassifiable (U). Similar analysis of the gag(p24) region revealed that the majority of infections were subtype A; however, one-third of the specimens were subtype G. Parallel analysis of gag(p24) and env regions revealed discordant subtypes in many specimens that may reflect possible dual and/or recombinant viruses. These data suggest a predominance of subtype G (both pure G and recombinant CRF02_AG) during the early part of the epidemic in Kinshasa. Infections with group N or SIVcpz-like viruses were not present among these CSWs in Kinshasa.

Democratic Republic of the Congo↗

Effects of human T-lymphotropic virus type II on human immunodeficiency virus type 1 phenotypic evolution.

Phenotypic change and broader coreceptor usage by HIV-1 have been associated with disease progression. HIV-1 coreceptor usage by primary isolates obtained from HIV-1-infected and HIV-1/HTLV-II-coinfected individuals was determined. HIV-1 was isolated from 15 of 20 HIV-1-infected and 17 of 24 HIV-1/HTLV-II-coinfected individuals. None of the isolates from either the HIV-1-infected or the coinfected group infected CCR5delta32 PBMCs, suggesting that they all were R5-tropic. Further, both spontaneous and PHA-stimulated production of MIP-1beta and RANTES were similar in HIV-1-infected and coinfected individuals. These data indicate that coinfection with HTLV-II has no effect on HIV-1 coreceptor usage or ex vivo beta-chemokine production.

CD4-Positive T-Lymphocytes↗

Evaluation of United States-licensed human immunodeficiency virus immunoassays for detection of group M viral variants.

Six Food and Drug Administration (FDA)-licensed human immunodeficiency virus type 1 (HIV-1) and HIV-1/2 immunoassays, including five enzyme immunoassays and one rapid test, were challenged with up to 250 serum samples collected from various global sites. The serum samples were from individuals known to be infected with variants of HIV-1 including group M subtypes A, B, B', C, D, E, F, and G and group O. All immunoassays detected the vast majority of samples tested. Three samples produced low signal over cutoff values in one or more tests: a clade B sample, an untypeable sample with a low antibody titer, and a group O sample. It is concluded that HIV-1 immunoassays used in the United States are capable of detecting most HIV-1 group M variants.

AIDS Serodiagnosis↗

Presence of diverse human immunodeficiency virus type 1 viral variants in Cameroon.

Phylogenetic analysis of the gp41 region of 123 HIV-1-seropositive specimens from Cameroon showed that 89 were subtype A (71% of these sequences were IbNg-like), 12 (10%) were subtype D, 11 (9%) were subtype G, 5 (4%; closely related to subtype F2) were subtype F, 1 was subtype H, 2 (1.6%) remained unclassifiable, while 3 were group O. Further analysis of the two unclassifiable specimens in gag(p24), pol(prot), and env (C2V3 or gp41) showed that one (98CM19) was a complex mosaic between subtype A in p24 and subtype J prot, and unclassifiable in env (C2V3 or gp41). The second, 98CM63, clustered distinctly from all known subtypes in p24, prot, C2V3, or gp41. 98CM63 clustered with a specimen from Cyprus and these two geographically and epidemiologically unlinked specimens, with their distinct clustering pattern, may represent a new subcluster of subtype A. In conclusion, these findings confirm the high HIV-1 genetic variability and further suggest the continuous appearance of new viral strains in this population.

Amino Acid Sequence↗

Molecular and biological interactions between two HIV-1 strains from a coinfected patient reveal the first evidence in favor of viral synergism.

An intravenous drug user was found to be dually infected with two genetically and phylogenetically distinct human immunodeficiency virus type 1 (HIV-1) subtype B strains (designated groups I and II). Viral isolation revealed a simultaneous copassaging of two strains in PBMC. The culture of viral strains on monocytes and monocyte-derived macrophages preferentially segregated the two viral strains. The group I strain utilized CXCR4 and group II used CCR5 coreceptor for entry. Sequencing of >100 clones from uncultured PBMC consistently showed the predominance of group II virus in vivo. Importantly, the group II virus alone could not productively infect PBMC, but when used together with group I virus for infection, the group II virus regained its high replication potential and predominance in cultured PBMC. These data are the first to provide direct evidence in favor of molecular and biological interaction between two infecting strains in a coinfected patient and show their differential pathogenic effects, tropism, and modes of entry. In addition, our data provide the first evidence for synergism between these two strains. Cumulatively, these data emphasize that in order to clearly interpret coreceptor usage, biological segregation of viral strains from primary isolates in vitro may be imperative.

Amino Acid Sequence↗

Phylogenetic analysis of protease and transmembrane region of HIV type 1 group O.

The molecular diversity and phylogenetic relationship of 22 HIV-1 group O strains were examined on the basis of the protease gene and the N-terminal region of gp41env. Analysis of the newly characterized protease sequences with 12 reference sequences revealed no specific clustering patterns, despite the distinct geographic locations of the specimens. In contrast, analysis of the newly sequenced gp41 sequences with 34 published sequences revealed two distinct clusters, each represented by one full-length sequence (MVP5180 and ANT-70). Further, four of the specimens classified as group O in the protease region clustered with group M in the gp41 region (three subtype A and one subtype G, respectively), suggesting dual and/or recombinant infections with HIV-1 groups M and O. The presence of two distinct clusters in the gp41 region indicates at least two possible subtypes within group O viruses, and this may provide useful information regarding molecular epidemiological studies of group O infections.

Amino Acid Sequence↗

Genetic characterization and phylogenetic analysis of HIV-1 subtype C from Uganda.

To better understand the emergence of subtype C and its potential impact on vaccine efforts in Uganda, we have characterized subtype C sequences from Uganda (n = 13), Zimbabwe (n = 11), Mozambique (n = 5), South Africa (n = 4), and India (n = 3). Phylogenetic analysis of subtype C sequences in the env gp41 gene region revealed multiple subclusters within subtype C. Further, while most Ugandan specimen subclustered together, other subclusters did not reflect a clear geographic location. The nucleotide divergence within the Ugandan subset was 8.2% (6.1-9.8%) compared with 9.5% (2.5-15%) for the other subtype C gp41 sequences. The protein sequence alignment revealed marked sequence conservation of major immunodominant epitopes within the gp41 region.

HIV Envelope Protein gp41↗

Detection of diverse variants of human immunodeficiency virus-1 groups M, N, and O and simian immunodeficiency viruses from chimpanzees by using generic pol and env primer pairs.

Human immunodeficiency virus type 1 (HIV-1) infection of humans is the result of independent cross-species transmissions of simian immunodeficiency viruses (SIVcpz) from naturally infected chimpanzees (Pan troglodytes troglodytes) to man. To develop a polymerase chain reaction-based assay capable of detecting members of all major phylogenetic SIVcpz and HIV-1 lineages (groups M, N, and O), primer pairs in conserved pol and env regions were designed. Both primer sets amplified </=10 copies of selected group M reference clones (subtypes A-H), proviral DNA or RNA of group N (YBF30), and group O of HIV-1 and also amplified divergent SIVcpz from cultured isolates (SIVcpzGAB1 and SIVcpzANT), uncultured spleen tissue (SIVcpzUS), and plasma (SIVcpzANT and SIVcpzUS). Sequences of the 2 amplicons (445 bp for gp41 and 261 bp for integrase) are of sufficient length for phylogenetic analyses, allowing both group and subtype classifications of the human viruses. Finally, both primer pairs are highly sensitive (>99%) in amplifying viral sequences from plasma taken from patients infected with HIV-1 group M (n=226) and O (n=17) viruses.

Animals↗

HIV-1 strains from a cohort of American subjects reveal the presence of a V2 region extension unique to slow progressors and non-progressors.

OBJECTIVES: To determine the molecular nature of HIV-1 quasispecies and their evolution, in vivo over time, in an American cohort of 22 homosexual men [four rapid progressors (RP), 15 slow progressors (SP) and three long-term non-progressors (LTNP)], infected with HIV-1 between 1982 and 1983, and to assess the possible role of the HIV-1 V2 region extension in HIV disease progression. DESIGN: Genetic and phylogenetic analyses of the V3 region and the nef gene clones over time from uncultured peripheral blood mononuclear cells (PBMC) of American patients with varying HIV disease progression rates. METHODS: Proviral DNA from longitudinally collected uncultured PBMC were subjected to PCR amplification in the nef gene and env V2 and V3 regions, followed by cloning, sequencing and phylogenetic analysis to establish evolutionary relationships between HIV-1 strains over time. RESULTS: Analysis of multiple viral clones showed nef gene deletions/insertions in 10 out of 15 SP, along with the coexistence of intact and defective nef gene lineages in the same individual over time, whereas these nefgene abnormalities were absent from HIV-1 strains from LTNP. Increasing quasispecies diversity in HIV-1 strains, over time, abrogation of a V3 region N-linked glycosylation site in > 60% of the clones, and, importantly, an extended V2 region were unique features of HIV-1 strains from SP and LTNP. CONCLUSIONS: The V2 region extension was unique to only SP and LTNP, and so may have a role in slow progression or non-progression of HIV disease. Increasing genetic diversity in HIV-1 strains in SP and LTNP correlated with the immunocompetent status of the host.

Amino Acid Sequence↗

Immunization with a novel HIV-1-Tat multiple-peptide conjugate induces effective immune response in mice.

We report here a novel, highly immunogenic synthetic, multiple-peptide conjugate comprising functional domains Tat(21-40) and Tat(53-68) from HIV-1 group M plus Tat(9-20) from HIV-1 group O of the HIV-Tat protein (HIV-1-Tat-MPC). Vaccination of mice with HIV-1-Tat-MPC induced an effective immune response to all three functional domains. The anti-HIV-1-Tat-MPC antibodies efficiently inhibited Tat-induced viral activation in monocytes infected with HIV(Ba-L) as well as with various clinical HIV-1 isolates, and reduced Tat-mediated cytopathicity in infected cells by 60-75%. Our results indicate that anti-HIV-1-Tat-MPC antibodies inhibit viral pathogenesis, possibly by blocking functional determinants of Tat and disrupting autocrine and paracrine actions of secreted Tat protein. This epitope-specific, synthetic Tat construct may, therefore, provide a subunit AIDS vaccine candidate for inducing an effective immunoprophylaxis response to reduce progression of HIV infection.

AIDS Vaccines↗

Tuberculosis (TB) and HIV infection are independently associated with elevated serum concentrations of tumour necrosis factor receptor type 1 and beta2-microglobulin, respectively.

The aim of this study was to identify immune markers that are independently associated with HIV infection or TB in vivo. Using commercially available assays, we measured concentrations of five immune markers in sera from 175 out-patients attending medical clinics in Cote D'Ivoire and Ghana, West Africa. Patients were categorized into groups with TB only (TB+HIV-, n = 55), TB and HIV co-infection (TB+HIV+, n = 50), HIV infection only (TB-HIV+, n = 35), or neither infection (TB-HIV-, n = 35). TB+HIV+ and TB-HIV+ groups were matched for blood CD4+ lymphocyte count. Mean +/- s.d. concentrations of beta2-microglobulin were similarly increased in both the TB-HIV+ (5.3+/-2.1 microg/ml, P<0.0001) and the TB+HIV+ (5.0+/-1.5 microg/ml, P<0.0001) groups compared with the TB-HIV- group (2.2+/-1.8 microg/ml), but were only slightly increased in the TB+HIV- group (3.2+/-1.8 microg/ml, P = 0.01). In contrast, mean serum concentrations of soluble tumour necrosis factor receptor type I (sTNF-RI) were similarly elevated in the TB+HIV- (1873+/-799 pg/ml, P<0.0001) and TB+HIV+ (1797+/-571 pg/ml, P<0.0001) groups compared with uninfected subjects (906+/-613 pg/ml), but there was only a small increase in sTNF-RI in the TB-HIV+ group (1231+/-165 pg/ml, P = 0.03). Both TB and HIV infection were associated with substantial elevation of serum concentrations of soluble CD8, soluble CD54, and sTNF-R type II. Analysis of additional samples from groups of TB+HIV- and TB+HIV+ patients receiving anti-TB treatment showed significant and equal reductions in mean serum sTNF-RI concentrations, but no significant change in mean beta2-microglobulin. Thus, serum beta2-microglobulin and sTNF-RI serve as relatively independent markers of HIV infection and TB, respectively, in studies of co-infected persons.

Adult↗