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M A Montano

Publications and source records attributed to M A Montano.

11 recordsLinked to original sources

An efficient test for comparing sequence diversity between two populations.

We address the problem of comparing interindividual genomic sequence diversity between two populations. Although the methods are general, for concreteness we focus on comparing two human immunodeficiency virus (HIV) infected populations. From a viral isolate(s) taken from each individual in a sample of persons from each population, suppose one or multiple measurements are made on the genetic sequence of a coding region of HIV. Given a definition of genetic distance between sequences, the goal is to test if the distribution of interindividual distances differs between populations. If distances between all pairs of sequences within each group are used, then data-dependencies arising from the use of multiple sequences from individuals invalidates the use of a standard two-sample test such as the t-test. Where this problem has been recognized, a typical solution has been to apply a standard test to a reduced dataset comprised of one sequence or a consensus sequence from each patient. Disadvantages of this procedure are that the conclusion of the test depends on the choice of utilized sequences, often an arbitrary decision, and exclusion of replicate sequences from the analysis may needlessly sacrifice statistical power. We present a new test free of these drawbacks, which is based on a statistic that linearly combines all possible standard test statistics calculated from independent sequence subsamples. We describe statistical power advantages of the test and illustrate its use by application to nucleotide sequence distances measured from HIV-1 infected populations in southern Africa (GenBank accession numbers AF110959--AF110981) and North America/Europe. The test makes minimal assumptions, is maximally efficient and objective, and is broadly applicable.

Africa, Southern↗

Elevated tumor necrosis factor-alpha activation of human immunodeficiency virus type 1 subtype C in Southern Africa is associated with an NF-kappaB enhancer gain-of-function.

The human immunodeficiency virus type 1 (HIV-1) epidemic within southern Africa is predominantly associated with the HIV-1C subtype. Functional analysis of the enhancer region within the long terminal repeat (LTR) indicates that HIV-1C isolates have >/=3 NF-kappaB binding sites, unlike other subtypes, which have only 1 or 2 sites. A correlation was shown between NF-kappaB enhancer configuration and responsiveness to the proinflammatory cytokine tumor necrosis factor (TNF)-alpha within the context of naturally occurring subtype LTRs, subtype-specific NF-kappaB enhancer regions cloned upstream of an isogenic HXB2 core promoter or a heterologous SV40 minimal promoter, and full-genome subtype clones. In all cases, TNF-alpha activation was correlated with the subtype configuration of the NF-kappaB enhancer. Whether the naturally occurring gain-of-function in the NF-kappaB enhancer of HIV-1C observed in this study can provide a selective advantage for the virus in vivo remains to be determined and warrants further study.

Binding Sites↗

Transmission of human immunodeficiency type 1 viruses with intersubtype recombinant long terminal repeat sequences.

Retroviruses such as human immunodeficiency virus type 1 (HIV-1) contain two RNA strands per virion, and recombination can occur frequently during reverse transcription. Recombination may occur between HIV-1 genomes of the same subtype or among genomes of two or more distinct subtypes present in an individual. In the current study, we found that recombinatorial events were not limited to viral structural genes such as gag and env, but rather, recombination could likewise occur within the 5' long terminal repeat (LTR). Intersubtype recombinant LTRs among HIV-1 subtypes A, C, and D were found in Tanzanian infants. By introducing novel LTR sequences, these recombinant LTR viruses may further increase the adaptive potential and fitness of HIV-1.

Base Sequence↗

Molecular cloning and phylogenetic analysis of human immunodeficiency virus type 1 subtype C: a set of 23 full-length clones from Botswana.

To better understand the virological aspect of the expanding AIDS epidemic in southern Africa, a set of 23 near-full-length clones of human immunodeficiency virus type 1 (HIV-1) representing eight AIDS patients from Botswana were sequenced and analyzed phylogenetically. All study viruses from Botswana belonged to HIV-1 subtype C. The interpatient diversity of the clones from Botswana was higher than among full-length isolates of subtype B or among a set of full-length HIV-1 genomes of subtype C from India (mean value of 9. 1% versus 6.5 and 4.3%, respectively; P < 0.0001 for both comparisons). Similar results were observed in all genes across the entire viral genome. We suggest that the high level of HIV-1 diversity might be a typical feature of the subtype C epidemic in southern Africa. The reason or reasons for this diversity are unclear, but may include an altered replication efficiency of HIV-1 subtype C and/or the multiple introduction of different subtype C viruses.

Base Sequence↗

Molecular epidemiology of an HIV-1 subtype A subcluster among injection drug users in the Southern Ukraine.

Phylogenetic characterization of primary isolates from 17 HIV-1-infected individuals within a recent epidemic in the city of Odessa, Ukraine was conducted. The isolates were drawn from two time periods, 1993 and 1996. The 1996 isolates coincided with the first apparent expansion of HIV-1 among injection drug users (IDU). Multi-locus phylogenetic analysis indicated that HIV-1 gag, env, tat, and long terminal repeat (LTR) sequences all conformed to the HIV-1 classification of a subcluster within subtype A. There was no evidence for intersubtype recombinants among these isolates. A number of potential signature sequences, particularly within env, were identified in these two time periods, possibly suggesting a selective pressure on viral evolution among IDU. Results of this study are consistent with a recent introduction and subsequent independent evolution of an HIV-1 subtype A subcluster among IDU in the Southern Ukraine. This study demonstrates a congruence of multi-locus phylogenetic analysis, and suggests that non-B genetic subtypes, such as HIV-1 subtype A, may become relevant to the study of IDU transmission in the future.

Amino Acid Sequence↗

Dysregulation through the NF-kappaB enhancer and TATA box of the human immunodeficiency virus type 1 subtype E promoter.

The global diversity of human immunodeficiency virus type 1 (HIV-1) genotypes, termed subtypes A to J, is considerable and growing. However, relatively few studies have provided evidence for an associated phenotypic divergence. Recently, we demonstrated subtype-specific functional differences within the long terminal repeat (LTR) region of expanding subtypes (M. A. Montano, V. A. Novitsky, J. T. Blackard, N. L. Cho, D. A. Katzenstein, and M. Essex, J. Virol. 71:8657-8665, 1997). Notably, all HIV-1E isolates were observed to contain a defective upstream NF-kappaB site and a unique TATA-TAR region. In this study, we demonstrate that tumor necrosis factor alpha (TNF-alpha) stimulation of the HIV-1E LTR was also impaired, consistent with a defective upstream NF-kappaB site. Furthermore, repair of the upstream NF-kappaB site within HIV-1E partially restored TNF-alpha responsiveness. We also show, in gel shift assays, that oligonucleotides spanning the HIV-1E TATA box displayed a reduced efficiency in the assembly of the TBP-TFIIB-TATA complex, relative to an HIV-1B TATA oligonucleotide. In transfection assays, the HIV-1E TATA, when changed to the canonical HIV-1B TATA sequence (ATAAAA-->ATATAA) unexpectedly reduces both heterologous HIV-1B Tat and cognate HIV-1E Tat activation of an HIV-1E LTR-driven reporter gene. However, Tat activation, irrespective of subtype, could be rescued by introducing a cognate HIV-1B TAR. Collectively, these observations suggest that the expanding HIV-1E genotype has likely evolved an alternative promoter configuration with altered NF-kappaB and TATA regulatory signals in contradistinction with HIV-1B.

Base Sequence↗

Divergent transcriptional regulation among expanding human immunodeficiency virus type 1 subtypes.

The current AIDS pandemic represents the uneven spread of multiple genetically related subtypes (A to J) of human immunodeficiency virus type 1 (HIV-1). Notably, HIV-1 E in southeast Asia and HIV-1 C in sub-Saharan Africa are expanding faster and are likely of greater global significance than the HIV-1 B subtype prevalent in the United States and Europe. While many studies have focused on genetic variation among structural genes, we chose to conduct a comparative analysis of the long terminal repeats of HIV-1 E and HIV-1 C isolates and report subtype-specific differences in enhancer copy numbers and sequences, as well as divergent activation in response to the cellular transcriptional activators Rel-p65 and NFATc and viral Tat. This study is the first to identify functional distinctions in promoter architecture between HIV-1 subtypes and raises the possibility that regulatory divergence among the subtypes of HIV-1 has occurred. Divergent transcriptional regulation may explain some of the epidemiologically observed differences in transmission and pathogenesis and underscores the need for further comparative analysis of HIV-1 regulation.

Base Sequence↗

NF-kappa B homodimer binding within the HIV-1 initiator region and interactions with TFII-I.

We show that the binding of Rel p50 and p52 homodimers at sites within the transcriptional initiation region of HIV-1 provides for their ability to interact with other proteins that bind the initiator. The binding of one such protein, the initiator protein TFII-I, to the initiation region of HIV-1 is augmented in the presence of Rel p50 and Rel p52 homodimers. Consistent with this, in vitro Rel homodimers potentiate HIV-1 transcription in a manner dependent upon TFII-I. The findings suggest that Rel dimers may regulate HIV-1 transcription in two ways. First, through binding at the kappa B enhancer sites at (-104 to -80), NF-kappa B p50:p65 participates in classical transcriptional activation. Second, Rel dimers such as p50 or p52 might bind at initiator sequences to regulate the de novo binding of components of certain preinitiation complexes. These findings, and the existence of Rel binding sites at the initiators of other genes, suggest roles for Rel proteins in early events determining transcriptional control.

Base Sequence↗

Rhodococcus species fatal infection in an immunocompetent host.

A 24-year-old woman had fatal pneumonia-associated adult respiratory distress syndrome caused by Rhodococcus species. Histological examination of lung biopsy tissue showed intracellular coccobacillary microorganisms. Antimicrobial susceptibility tests on the patient's blood isolate showed that it was resistant to clindamycin and norfloxacin but susceptible to several other antimicrobial agents. Also, the isolate's biochemical reactions and pattern of RNA gene-containing restriction fragments were significantly different from those of the 20 recognized Rhodococcus species, suggesting that this patient's infection was caused by an as yet uncharacterized Rhodococcus species. Of the 17 human cases of nonequi Rhodococcus species infection reported to date (including the current case), nine patients were immunocompetent, five had disseminated infection, and four died. Further studies will be required to unequivocally establish the species status of this patient's Rhodococcus isolate biochemically and genetically.

Actinomycetales Infections↗

Prenatal diagnosis of alpha-thalassemia by polymerase chain reaction and dual restriction enzyme analysis.

Asian couples at risk for a fetus with homozygous alpha-thalassemia (hydrops fetalis) are often identified by their low erythrocyte mean corpuscular volume (MCV) and normal hemoglobin electrophoresis when little time remains to test their genotypes by restriction enzyme analysis. DNA analysis is performed directly on chorionic villi or amniocytes remaining after an aliquot is used to establish a backup cell culture. The polymerase chain reaction (PCR) protocol quickly determines whether the fetus has hydrops fetalis without waiting for cultured cells to grow. Previously, growing cultured fetal cells to obtain more fetal material to establish unambiguously the fetal genotype with two independent restriction enzyme digests absorbed a significant portion of the time remaining to complete prenatal diagnosis. A dual restriction enzyme digestion protocol was development using a 3' zeta-globin probe to clearly distinguish the most common alpha-thalassemia deletions that represent nearly all the alpha-thalassemia haplotypes in Southeast Asia.

Base Sequence↗

Increased promoter diversity reveals a complex phylogeny of human immunodeficiency virus type 1 subtype C in India.

OBJECTIVE: To evaluate human immunodeficiency virus type 1 (HIV-1) long terminal repeat (LTR) sequence diversity among distinct populations within India and to determine the prevalent subtype. STUDY DESIGN/METHODS: Analysis of the 3'LTR was conducted from 28 HIV-1-positive samples: 1992-1993 (Pune, New Delhi) and 1995-1996 (Pune, Mumbai and Vellore). Genomic DNA was extracted from cocultivated peripheral blood mononuclear cells (PBMCs) and used for polymerase chain reaction (PCR) amplification and sequencing using dye terminator chemistry. Sequences were edited, aligned, and analyzed phylogenetically utilizing gap-stripped and bootstrapping parameters. Mobility shift assays were used to confirm binding activity. RESULTS: All nucleotide sequences were HWV-1 subtype C based on phylogenetic analysis. The isolates from Pune/Delhi formed subclusters when analyzed separately, irrespective of time or sample source. However, no significant subclustering was observed with isolates from Mumbai or Vellore or with the entire sample set when analyzed collectively. Subtype-specific enhancer analysis revealed an expected third NF-kappaB site but also revealed six isolates with insertions and deletions not previously described, one of which resembles an AP-1 binding site. CONCLUSIONS: The results confirm the prevalence of HIV-1C and suggest increasingly complex phylogeny of HIV-1C within India, such that the previously observed subclustering may no longer adequately reflect the diversity of isolates currently circulating throughout India.

Base Sequence↗