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J Goudsmit

Publications and source records attributed to J Goudsmit.

At least 181 records · Page 10Linked to original sources

Intrahost human immunodeficiency virus type 1 evolution is related to length of the immunocompetent period.

The antigenic diversity threshold theory predicts that antigenic sites of human immunodeficiency virus type 1, such as the V3 region of the external glycoprotein gp120, evolve more rapidly during the symptom-free period in individuals progressing to AIDS than in those who remain asymptomatic for a long time. To test this hypothesis, genomic RNA sequences were obtained from the sera of 44 individuals at seroconversion and 5 years later. The mean number of nonsynonymous nucleotide substitutions in the V3 region of the viruses circulating in 31 nonprogressors (1.1 x 10(-2) +/- 0.1 x 10(-2) per site per year) was higher than the corresponding value for 13 progressors (0.66 x 10(-2) +/- 0.1 x 10(-2) per site per year) (P < 0.01), while no difference between the mean numbers of synonymous substitutions in the two groups was seen (0.37 x 10(-2) +/- 0.1 x 10(-2) and 0.51 x 10(-2) +/- 0.2 x 10(-2) per site per year for nonprogressors and progressors, respectively; P > 0.1). The mean ratios of synonymous nucleotide p distance to nonsynonymous p distance were 0.35 for nonprogressors and 0.62 for progressors. The number of nonsynonymous substitutions was not associated with virus load or virus phenotype, which are established predictors of disease progression, but correlated strongly with the duration of the immunocompetent period (r2 = 0.41; P = 0.001). This indicates that there is no causative relationship between intrahost evolution and CD4+ cell decline. Our data suggest that intrahost evolution in human immunodeficiency virus type 1 infection is driven by selective forces, the strength of which is related to the duration of the immunocompetent period.

Acquired Immunodeficiency Syndrome↗

Distribution of baboon endogenous virus among species of African monkeys suggests multiple ancient cross-species transmissions in shared habitats.

PCR amplification of baboon endogenous virus (BaEV) long terminal repeat, reverse transcriptase gene, and env fragments from 24 different species of African monkeys indicates that BaEV is less widespread than was formerly thought. Instead of being present in every species of African primates, BaEV can be found only in baboons, geladas, and mangabeys (all belonging to the Papionini tribe) and in African green monkey (Cercopithecus aethiops)subspecies. BaEV, which can be activated from baboon and gelada tissues, was most likely introduced in the germ line only recently (less than a few million years ago) and has not been inherited from a common ancestor of all extant African monkeys. Neighbor-joining and maximum-likelihood analyses of the sequences obtained showed that two distinct virus clusters can be distinguished: the first containing baboon, gelada, and African green monkey BaEV sequences and the second consisting of mandrill and mangabey BaEV sequences. This viral evolutionary tree does not follow host phylogeny, indicating the cross-species transmissions and multiple germ line fixations of the virus must have occurred in the past. BaEV sequences are found in monkeys inhabiting savannas (baboons, geladas, and African green monkeys) as well as forests (managabeys and mandrills) and cluster according to the habitats of their hosts, providing evidence for cross-species transmission in shared habitats.

Amino Acid Sequence↗

Similarity in env and gag genes between genomic RNAs of human immunodeficiency virus type 1 (HIV-1) from mother and infant is unrelated to time of HIV-1 RNA positivity in the child.

Variation in the env (V3 region) and gag (p17 region) genes of genomic RNA of human immunodeficiency virus type 1 was studied in three mother-child pairs. One infant was human immunodeficiency virus type 1 RNA positive at birth (pair 114), one became positive 6 weeks after birth (pair 127), and one became positive 30 months after birth (pair 564). The first two children were born to seropositive mothers, and the last child was infected by breast-feeding following seroconversion of the mother after delivery. In both V3 and p17gag, intrasample variability was much higher in the maternal samples, including the first seropositive sample of the seroconverted mother, than in the infants' samples. Variability was less in p17gag than in V3, except in the postnatally infected child. In all three cases, infection of the child was established by variants representing a minority of the cell-free virus population in the maternal samples. For the two infants born to seropositive mothers, V3 sequences were more similar to the sequence populations of maternal samples collected during pregnancy than to those of samples collected at delivery or thereafter. However, in pair 114 a V3 variant identical to the child's virus was also detected in the sample collected at delivery. In contrast to the V3 region, p17gag sequences of maternal samples of the first trimester of pregnancy and at delivery had comparable resemblance to the child's sequences in pair 114, while in pair 127, similarity to sequences of the sample collected at delivery was higher than that to sequences of the sample from early in pregnancy. In the last pair, V3 and p17gag sequences from a maternal sample collected 18 months prior to the first RNA-positive sample of the child resembled the infant's sequences as much as the sample collected close to the presumed time of infection. Taken together, the evolutionary characteristics for genomic RNA env and gag genes did not point to a particular time of mother-to-child transmission.

Amino Acid Sequence↗

Full-length proviruses of baboon endogenous virus (BaEV) and dispersed BaEV reverse transcriptase retroelements in the genome of baboon species.

Baboon endogenous virus (BaEV) is present in multiple copies in many Old World monkey species. BaEV proviruses may contain open reading frames for all major genes, as is indicated by the rescue of infectious virus particles from baboon and gelada tissues after cocultivation with permissive cells. We have analyzed full-length BaEV proviral structures in a baboon (Papio cynocephalus) genomic library and found no evidence for the rearrangements or large deletions commonly observed in endogenous virus genomes from other mammalian species. The two proviruses studied were integrated next to or nearby long interspersed repeat sequence (LINE) transposable elements. Additionally, isolated dispersed fragments with 100% and approximately 77% homology, respectively, to part of the BaEV reverse transcriptase gene were detected. These presumed retroelements were present in an approximately 10-fold excess compared with the full-length proviral genomes. PCR amplification and sequencing of BaEV reverse transcriptase and env fragments from the lambda clones and from the genomic DNA of other baboon species showed that there is little sequence variation present in BaEV DNA in the baboon genome.

Animals↗

Simultaneous introduction of distinct HIV-1 subtypes into different risk groups in Russia, Byelorussia and Lithuania.

OBJECTIVE: To investigate genotypes and serotypes of HIV-1 variants in Russia, Byelorussia and Lithuania. PATIENTS AND METHODS: Sera from 20 HIV-1-infected individuals were tested in an enzyme-linked immunosorbent assay (ELISA) with 19 V3 synthetic peptides, and serum HIV-1 V3 RNA was amplified and sequenced. RESULTS: Sequence comparison of the envelope V3 region among specimens tested revealed a 2-29% range nucleotide divergence, with a mean of 19%. Phylogenetic analysis from the homosexual men were shown to belong to subtype B, and all of the heterosexually infected individuals to subtype C. Sequences from the parenterally infected individuals were more heterogeneous. IOn the peptide ELISA three reactivity patterns were found. Serum samples from six out of seven homosexual men showed reactivity to peptides p108 or p110 representing V3 amino-acid sequences found in US/West European HIV-1 isolates. Serum samples from six of seven individuals who had acquired HIV-1 through heterosexual contacts were reactive to peptide p169. Four out of six parenterally infected patients had peak reactivity to p168. CONCLUSION: Distinct HIV-1 variants were found in Russia, Byelorussia and Lithuania, which were introduced simultaneously in the mid-1980s. This diversity was shown to be associated with the route of transmission. Homosexual men appeared to be infected with subtype B and heterosexually infected individuals with subtype C HIV-1 variants. HIV-1 subtypes A, C, D and G were found among parenterally infected individuals.

Acquired Immunodeficiency Syndrome↗

The role of viral diversity in HIV pathogenesis.

From the time of seroconversion, patients who retain a high viral load are known to progress more rapidly to AIDS than individuals who have lower levels of HIV. Increased viral load is accompanied by decreasing CD4 cell numbers, and CD4 cell counts are therefore widely used as a diagnostic marker or predictor of progression in HIV patients. During the asymptomatic phase, however, CD4 counts often remain in the "normal" range, and this marker provides little information on potential disease progression. A shift in viral phenotype from non-syncytium-inducing (NSI) to syncytium-inducing (SI) heralds disease progression, and early in infection SI progression can be distinguished from nonprogression on the basis of CD4 changes. NSI progression, on the other hand, cannot be distinguished from nonprogression on the basis of CD4 counts but can be distinguished on the basis of RNA load. Molecular assessment of viral phenotype, such as quantitative measures of HIV RNA, as well as syncytium-inducing and nonsyncytium-inducing is therefore able to provide valuable information on the probable course of progression in individual patients, thus aiding in more effective disease management.

Acquired Immunodeficiency Syndrome↗

An N-glycan within the human immunodeficiency virus type 1 gp120 V3 loop affects virus neutralization.

Carbohydrate side chains of envelope glycoproteins of HIV-1 and other viruses have been postulated to interfere with binding of neutralizing antibodies. So far, however, little evidence for interference of specific N-glycans with virus neutralization has been provided. We used four infectious HIV-1 molecular clones chimeric for their gp 120 V3 domains to study the influence on HIV-1 neutralization of an N-glycan localized within the V3 loop. Two clones lacking the 301N-glycan were at least 8-fold more sensitive to neutralization by two V3-specific monoclonal antibodies (MAbs) and 2- to 10-fold more sensitive to neutralization by a CD4-binding-site-specific human MAb than two HIV-1 clones glycosylated at this site. The affinity of the V3 MAbs for soluble gp120 of the four clones was similar. However, a decreased binding of these MAbs to the gp120 of the two 301N-glycosylated clones was observed when the majority of gp120 was virion-associated during the initial binding step. These findings indicate that the 301N-glycan may interfere with the binding of neutralizing antibodies by limiting the accessibility of neutralization sites or by inducing conformational changes in the HIV-1 gp120 molecule.

Amino Acid Sequence↗

Antibody responses to HIV-1 envelope and gag epitopes in HIV-1 seroconverters with rapid versus slow disease progression.

We studied the relationship between the rate of disease progression after HIV-1 seroconversion and the level of IgG antibody response to HIV-1 envelope and core epitopes. This was done by comparing a group of fast-progressing individuals and a group of slow-progressing individuals for serum IgG titers to peptides from the gp120-V3 neutralization domain, to a peptide from the immunodominant gp41 epitope (residues 590 to 607), and to recombinant gp120 and p24. The two groups displayed a large overlap in titers to the envelope epitopes, which precluded their differentiation at most time points after seroconversion. Low responsiveness to envelope antigens was not only found in a few fast-progressors but also in one individual who remained asymptomatic for at least 92 months after seroconversion. The only significant differences between the groups were found in the first months after seroconversion when the responses to the V3 domain and the gp41 epitope were more vigorous in the group of fast-progressors. Furthermore, on evaluating ratios of anti-V3 antibody titers to anti-gp120 antibody titers we found no indication that fast disease progression was associated with a restriction in antibody response to the V3 epitope. We did confirm the finding that fast disease progression is associated with low levels of p24-directed antibodies, both early after seroconversion and at later stages. These data demonstrate that levels of IgG antibodies to envelope epitopes are poor predictors of rapid disease progression and suggest that the role of V3-directed neutralizing antibodies in preventing subversion of the immune system is not decisive in natural HIV-1 infection.

Adult↗

The natural history of HIV-1 infection: virus load and virus phenotype independent determinants of clinical course?

Virus load and virus phenotype have both been indicated as major determinants of disease progression in HIV-1 infection. In this study HIV-1 RNA copy numbers in serum, virus phenotype, and CD4+ cell counts were analyzed longitudinally in a group of 20 seroconverters progressing to AIDS within 5.5 years. In this group 12 individuals developed AIDS without syncytium-inducing (SI) viruses ever being isolated, while 8 individuals showed a non-SI (NSI) to SI phenotypic switch prior to AIDS development. HIV-1 RNA copy numbers in sera of all progressors were stable and high from seroconversion until development of AIDS. Twenty-one seroconverters remaining asymptomatic for more than 5.5 years were selected as nonprogressing controls, and both progressors and nonprogressors were evaluated at seroconversion and early in infection (3 years post seroconversion). Comparative analysis revealed that at the point of seroconversion HIV-1 RNA copy numbers in sera from NSI progressors, SI progressors, and nonprogressors were not significantly different, nor were their CD4+ cell counts. At seroconversion all individuals harbored viruses with an NSI phenotype. In contrast to the progressors, HIV-1 RNA copy numbers in sera of nonprogressors had declined significantly during the early period of infection. At the second time point RNA copy numbers in the sera of NSI progressors and nonprogressors differed significantly (P = 0.0005), while RNA copy numbers in the sera of SI progressors and nonprogressors did not. However, at this time point the CD4+ cell counts of SI progressors were significantly lower than those from nonprogressors (P = 0.002), while the CD4+ cell counts of NSI progressors and nonprogressors did not differ significantly. These results show that early in HIV-1 infection progressors and nonprogressors are distinguishable. NSI progressors can be distinguished from nonprogressors on the basis of serum HIV-1 RNA load and S1 progressors on the basis of CD4+ cell decline. In addition, a significant decrease in the number of HIV-1 RNA copies in the early phase of infection seems to postpone the development of AIDS.

Acquired Immunodeficiency Syndrome↗

Inhibition of apoptosis in T cells expressing human T cell leukemia virus type I Tax.

This study set out to determine whether T cell dysfunction associated with HTLV-I led to increased sensitivity of infected cells to apoptosis or, owing to their potential to develop ATL, if infected cells would become resistant to this process. To test this hypothesis we utilized the monoclonal antibody anti-APO-1, which has been demonstrated to induce apoptosis in human T cells. Human T cell lines expressing HTLV-I showed reduced susceptibility to anti-APO-1-induced apoptosis despite expression of high levels of cell surface APO-1. Cell-free supernatant of the Tax-expressing cell line C8166 and heat-inactivated supernatant of the HTLV-I-producing cell line MT2 transferred increased resistance to anti-APO-1 to susceptible Jurkat T cells. Susceptible T cells transfected with an HTLV-I Tax-expressing vector or treated with soluble Tax protein became less susceptible to anti-APO-1-induced cell death. Furthermore, primary human lymphocytes treated with soluble Tax were less susceptible to apoptosis induced by anti-APO-1. The protective effect of Tax in T cell lines and primary human lymphocytes was reversed by the addition of anti-Tax antibodies. Anti-APO-1-induced apoptosis was also found to be inhibited in Jurkat cells by the induction of protein kinase C (PKC) with 12-O-tetradecanoylphorbol-13-acetate (TPA). Resistance to apoptosis conferred by HTLV-I Tax and an active PKC pathway may be factors contributing to the survival of dysregulated HTLV-I-infected T cells prone to the development of adult T cell leukemia.

Antibodies, Monoclonal↗

Syncytium-inducing and non-syncytium-inducing capacity of human immunodeficiency virus type 1 subtypes other than B: phenotypic and genotypic characteristics. WHO Network for HIV Isolation and Characterization.

Positively charged amino acid substitutions at positions 11 and 25 within the loop of the third variable region (V3) of HIV-1 subtype B envelope have been shown to be associated with the syncytium-inducing (SI) phenotype of the virus. The present study was designed to examine SI and NSI-associated V3 mutations in HIV-1 subtypes other than B. HIV-1 RNA was isolated from 53 virus stocks and 26 homologous plasma samples from 53 recently infected individuals from Brazil, Rwanda, Thailand, and Uganda. The C2-V3 region of the viral envelope was converted to cDNA, amplified, and sequenced. Of 53 primary virus stock samples 49 were biologically phenotyped through measurement of the syncytium-inducing capacity in MT-2 cells (to differentiate between SI and NSI phenotypes). In addition, after passage of primary isolates through PHA stimulated donor PBMC, the replication capacity was determined in U937-2, CEM, MT-2, and Jurkat-tat cell lines (to differentiate rapid/high and slow/low phenotypes). According to the sequence analysis 9 (17.0%) of the viruses belonged to subtype A, 15 (28.3%) to subtype B, 1 (1.9%) to subtype C, 13 (24.5%) to subtype D, and 15 (28.3%) to subtype E. Sequence analysis of virus RNA, obtained from 26 homologous plasma samples, confirmed the homogeneity of sequence populations in plasma compared to primary virus isolates. Of the 49 viruses tested 12 had the SI phenotype, 5 were confirmed to be rapid/high, and 4 appeared to be slow/low pattern 3 replicating. Of 49, 29 had the NSI phenotype, 24 were confirmed to be slow/low pattern 1 or 2, and 3 appeared to be slow/low pattern 3 replicating. Analysis of mutations at V3 loop amino acid positions 11 and 25 revealed that 10/12 (83.3%) of the SI viruses had SI-associated V3 mutations and that 28/29 (96.6%) of the NSI viruses lacked these mutations. V3 loop heterogeneity, length polymorphism, and a high number of positively charged amino acid substitutions were most frequently found among subtype D variants. These results indicate that both the phenotypic distinction between SI and NSI viruses and the association of biological phenotype with V3 mutations is present among HIV-1 subtypes other than B.

Adult↗

Conserved V3 loop sequences and transmission of human immunodeficiency virus type 1.

The third variable region (V3) of the surface glycoprotein (gp120) of envelope sequence subtype B, type 1 human immunodeficiency virus (HIV-1B), is highly variable among T cell line-adapted viruses and syncytium-inducing HIV-1-B isolates. Here we analyze the V3 region sequences from 93 individuals close to the time of seroconversion and show that the cysteine-bridged V3 loop, which also encompasses a major neutralizing determinant, is highly conserved, whereas sequences immediately surrounding the loop are similarly divergent in all HIV-1-B strains. Viruses with this conserved V3 loop have been reported to be more resistant to antibody-mediated neutralization than T cell-adapted viruses with divergent V3 sequences. We hypothesize, therefore, that on transmission from a donor to a recipient, virions inherently more resistant to neutralization by donor antibodies have a greater chance of initiating infection than those more sensitive to neutralization. This might explain the conservation of V3 early in infection and has implications for the design of HIV vaccines.

Amino Acid Sequence↗

Frequent and early HIV-1MN neutralizing capacity in sera from Dutch HIV-1 seroconverters is related to antibody reactivity to peptides from the gp120 V3 domain.

The temporal development of HIV-1 neutralizing activity and antibodies to the gp120-V3 neutralization domain were studied in sera from 20 Dutch HIV-1-infected individuals followed from seroconversion on. Serum neutralizing capacity was assessed with three T cell line-tropic isolates: HIV-1MN, HIV-1HXB2, and the patient isolate HIV-1(320). Neutralizing activity to HIV-1MN developed in 18 individuals (90%) within 0 to 10 months after seroconversion. Parallel evolution of IgG reactivity to V3 peptides of United States/European type variants, and the capability of such peptides to completely inhibit HIV-1MN neutralization in four of five tested sera (taken 1-2 years after seroconversion), indicate that a large proportion of HIV-1MN neutralizing antibodies is directed to V3. The early appearance and high frequency of HIV-1MN neutralizing activity in the Dutch study group indicate the close relationship of HIV-1MN to HIV-1 variants circulating in the Netherlands. Neutralizing activity to HIV-1HXB2 (in 15 of 20 individuals) developed several months after that to HIV-1MN in all individuals (average, 10 months after seroconversion) and was not seen in the absence of HIV-1MN neutralizing activity. Neutralizing activity to the Dutch isolate HIV-1(320) (found in 11 of 18 tested individuals) emerged simultaneously with that to HIV-1MN in 4 individuals but appeared later in 7. In most individuals, HIV-1HXB2 neutralization was not accompanied by reactivity to a V3 peptide from this strain, indicating that the extension of neutralizing activity to more divergent strains, which takes place at later stages, must be attributed to non-V3-directed antibodies.

Adult↗

Characteristics of long-term asymptomatic infection with human immunodeficiency virus type 1 in men with normal and low CD4+ cell counts.

From a cohort study of homosexual men in Amsterdam, 61 human immunodeficiency virus (HIV)-infected men who had remained asymptomatic for at least 7 years were identified. In a nested case control study, these men were compared with 142 men who progressed symptomatic HIV infection (CDC class IV) within 7 years, regarding laboratory markers, sexual behavior, psychologic coping, and drug use. Of the 61 long-term asymptomatic men, 13 had a CD4+ cell count > or = 500/mm3 after 7 years; in 2 of these 13, the CD4+ cell count had not declined during follow-up. Independent of CD4+ cell count, long-term asymptomatic HIV-1 infection was characterized by stable T cell reactivity after stimulation with monoclonal CD3 antibodies, seropositivity for antibodies to HIV core proteins, and the absence of hepatitis B markers. No association with markers of high-risk sex or the recreational use of drugs was found. Long-term asymptomatic men had a slightly lower score regarding the coping behavior active problem-solving; no other associations with coping behaviors were found.

Adult↗

Calcium-mediated inhibition of phorbol ester and Tax trans-activation of the human T cell leukaemia virus type 1.

Human Jurkat T cells containing a stably integrated human T cell leukaemia virus type 1 (HTLV-1) long terminal repeat (LTR) reporter gene construct were used to study the role of calcium-dependent cellular activation pathways in LTR trans-activation. Treatment of these cells with the calcium ionophore ionomycin resulted in a reduced basal response of the LTR and reduced responses to 12-O-tetradecanoylphorbol-13-acetate-and Tax-mediated trans-activation. This effect was also observed for virus production in the HTLV-1-producing T cell line MT-2. Experiments designed to determine the events underlying this inhibition, using inhibitors of calcium-related events, revealed that the ionomycin-induced repression of the LTR was alleviated in all cases by cyclosporin A. This compound was also effective in preventing the ionomycin-induced reduction in virus production in MT-2 cells. These results suggest a role for calcium-related events in the down-regulation of HTLV-1 expression.

Calcium↗

Human immunodeficiency virus type 1 evolution in vivo tracked by DNA heteroduplex mobility assays.

High mutation rates and strong selective pressures imposed on human immunodeficiency viruses in vivo result in the formation of pools of genetic variants known as quasispecies. DNA heteroduplex mobility and tracking analyses were used to monitor the generation of HIV sequence diversity, to estimate quasispecies complexity, and to assess the turnover of genetic variants to approach an understanding of the relationship between viral quasispecies evolution in vivo and disease progression. Proviral DNA pools were nearly homogeneous soon after sexual transmission. The emergence and clearance of individual variants then occurred at different rates in different individuals. High quasispecies complexity was found in long-term-infected, asymptomatic individuals, while rapid CD4+ cell decline and AIDS were often, but not always, associated with lower quasispecies complexity. Proviral genetic variation was often low following in vitro culture, because of the outgrowth of one or a few variants that often became more abundant only later as proviruses in peripheral blood mononuclear cells. These studies provide insight into the dynamics of human immunodeficiency virus sequence changes in vivo and illustrate the utility of heteroduplex analysis for the study of phenomena associated with rapid genetic changes.

Acquired Immunodeficiency Syndrome↗