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Hodgkin and reed-sternberg cells represent an expansion of a single clone originating from a germinal center B-cell with functional immunoglobulin gene rearrangements but defective immunoglobulin transcription.

Single cell studies aimed at clarifying the nature and clonality of Hodgkin and Reed-Sternberg (HRS) cells of classical Hodgkin's disease (HD) have so far produced conflicting results. Using an improved single cell procedure, the HRS cells of 25 patients with nodular sclerosing HD lacking B- and T-cell antigens, with and without Epstein-Barr virus infection, were analyzed for the presence of immunoglobulin (Ig) gene rearrangements. One patient with HD developed follicular lymphoma 2 years later. Both lymphomas originated from a common precursor identified as a germinal center B cell. The data show that all but one of the investigated cases harbored rearranged Ig genes, which were clonal in all instances and carried a high load of somatic mutations. The Ig coding capacity was preserved in 18 of the 24 cases (75%) with rearrangements. However, expression of Ig messenger RNA was not detectable in the HRS cells with the exception of Ig kappa light chain expression in some tumor cells of 1 case. The lack of Ig gene transcription in HRS cells was confirmed by analyzing the HD cell lines L428 and KM-H2 in transient transfection experiments. An Ig promoter/enhancer reporter construct showed virtually no activity in these cells compared to 5 control B-cell lines. We conclude that (1) classical HD is a B-cell lymphoma in most instances, (2) HRS cells are clonal without any exception, (3) they are derived from germinal center B-cells that (4) mostly lack crippling mutations but (5) have consistently lost their Ig gene transcription ability, due to functional defects in the Ig gene regulatory elements. (Blood. 2000;95:1443-1450)

Adolescent↗

[Screening for 6-pyruvoyl-tetrahydrobiopterin synthase (PTPS) deficiency: clinical analysis of 9 patients with PTPS deficiency].

OBJECTIVE: To show the incidence of 6-Pyruvoyl-tetrahydrobiopterin synthase (PTPS) deficiency among hyperphenylalaninemia and conclude the clinical outcome of patients with PTPS deficiency. METHODS: The urinary neopterin (N) and biopterin (B) were determined by HPLC in 69 PKU cases. BH(4) loading test and mutation analysis of PTPS were performed in patients who had abnormal urinary pterin patterns. Three patients with PTPS deficiency were placed on treatment with combined synthetic BH(4) and neurotransmitter precursors such as Dopa and 5-hydroxytryptophan. RESULTS: 9 out of 69 patients, whose urinary N/B exceed 38 [normal: 1.17 (1.4)] and B% were less than 5% [normal: 55.9 (18.6)], were diagnosed as having PTPS deficiency. Four kinds of PTPS gene mutations (P87S, N52S, D96N and G144R) were detected from 4 out of 9 cases with PTPS deficiency. The last mutation was a new mutation. The three typical PTPS-deficient patients had satisfactory physical development, their intelligence quotient (IQ) were 70 approximately 80 after treatment and one partial PTPSD had normal growth and mental development. CONCLUSION: The screening for BH(4) deficiency should be carried out among all patients with hyperphenylalaninemia in order to avoid misdiagnosis.

Biopterins↗

Viral load, viral phenotype modification, zidovudine susceptibility and reverse transcriptase mutations during the first 6 months of zidovudine monotherapy in HIV-1-infected people.

We studied 14 zidovudine-naive, HIV-1-infected patients attending an infectious diseases clinic in Milan during zidovudine therapy for 6 months. We monitored CD4 cell counts, immune complex-dissociated p24 antigen, viral phenotype and viral load in plasma. The virus infecting a subset of patients was examined for zidovudine susceptibility and zidovudine resistance-associated mutations. A significant correlation was established between the increase in the CD4 cell count and the decrease in viral load (Spearman's coefficients < -0.5). Patients who were p24 antigen positive had a higher viral load (P < 0.005 at baseline and after 6 months of therapy). Patients with non-syncytium-inducing (NSI) virus had higher CD4 cell counts over time than those with syncytium-inducing (SI) virus. We also examined the viral load in relation to viral phenotype. The median viral load in patients with NSI virus was higher than in SI controls at baseline, but not after 3 and 6 months of therapy. Sequential isolates of HIV-1 were obtained from nine patients and tested for resistance to zidovudine by monitoring the drug susceptibility and the reverse transcriptase-encoding sequence. Amino acid changes at codons 70 and 215 were present in some but not all isolates with zidovudine-resistant phenotype in vitro. It was possible to perform a correlation between zidovudine susceptibility and zidovudine-associated pol gene mutations only at the 6-month time point (Spearman's coefficient = 0.076). SI phenotype was associated with the development of a decreased zidovudine susceptibility. A correlation between zidovudine-associated pol gene mutations and SI phenotype was detected at the 6-month time point.

Acquired Immunodeficiency Syndrome↗

Persistence of HIV-1 drug resistance mutations and emergence during antiretroviral treatment interruption: considerations from a clinical case.

BACKGROUND: HIV drug resistance (HDR) represents a crucial problem in antiretroviral therapy today. HDR mutations can accumulate, persist in the proviral genome and re-emerge, promoting further failure of rescue regimens. Resistance testing on the proviral genome has been suggested in order to detect the presence of archived resistance mutations and to guide drug prescription. CASE REPORT: We report the persistence of HDR mutations to protease inhibitors (PIs) during effective highly active antiretroviral therapy (HAART) not including PIs and their transient re-emergence after treatment interruption. Further follow-up has demonstrated a progressive reversion toward the wild type. At that point in time, proviral DNA analysis was not more sensitive in detecting mutations than tests of the plasma viral load. CONCLUSIONS: This case demonstrates that HDR mutations can persist even though plasma viral load is undetectable, implying the ability of HIV to escape from treatment recycling and the use of drugs to which HIV is cross-resistant. Also, this case suggests that plasmatic and intracellular HIV compartments find a balance under conditions of active viral replication, which could hamper detection of resistance mutations in the proviral DNA. Therefore, in the case of active viral replication, proviral analysis may not actually provide more information than testing the plasma viral load. The clinical utility and specific indications for testing proviral DNA require further investigation.

Anti-HIV Agents↗

Lifelong voluntary joint loading increases osteoarthritis in mice housing a deletion mutation in type II procollagen gene, and slightly also in non-transgenic mice.

OBJECTIVES: To investigate the effects of voluntary running on the incidence and severity of osteoarthritis (OA) and associated changes in cartilage matrix and subchondral bone in a transgenic Del1 mouse model for OA. METHODS: Del1 mice and their non-transgenic littermate controls were housed from the age of 5-6 weeks to 15 months in individual cages with running wheels. The running activity of each mouse was monitored for the entire 12 month period. Additional Del1 and control mice were housed in individual cages without running wheels. At the end of the experiment the severity of OA was evaluated by light microscopy, and the articular cartilage matrix changes by digital densitometry and quantitative polarised light microscopy. RESULTS: Lifelong voluntary running increased the incidence and severity of OA significantly in Del1 mice (transgenic runners), and slightly also in non-transgenic runners. Severe OA changes increased from 39% in transgenic non-runners to 90% in transgenic runners (p=0.006) in lateral tibial condyles, and from 24% to 80% (p=0.013) in lateral femoral condyles, respectively. The proteoglycan content of articular cartilage was reduced in transgenic runners in comparison with transgenic non-runners (p=0.0167), but a similar effect was not seen in non-transgenic runners compared with non-transgenic non-runners. No attributable differences were seen in the collagen network of articular cartilage or in the subchondral bone between any of the groups. CONCLUSION: The Del1 mutation has earlier been shown to disturb the assembly of the cartilage collagen network and thereby increase the incidence and severity of OA with age. In this study, voluntary running was shown to increase further cartilage damage in the lateral compartments of the knee. This suggests that articular cartilage in Del1 mice is less resistant to physical loading than in control mice. Despite severe OA lesions in the knee joint at the age of 15 months, Del1 mice continued to run voluntarily 2-3 km every night.

Animals↗

Genotypic determinants of the virological response to tenofovir disoproxil fumarate in nucleoside reverse transcriptase inhibitor-experienced patients.

OBJECTIVE: To assess the genotypic determinants of the virological response to tenofovir disoproxil fumarate (TDF) in a multicentre cohort of antiretroviral (ARV)-experienced patients receiving TDF as a part of a salvage therapy. METHODS: HIV-1 genotype was assessed at baseline in a subgroup of 161 patients of the French expanded access program receiving a stable TDF-including regimen for 3 months or more. Reverse transcriptase mutations associated with the viral load decrease at month 3 with a P-value <0.15 were retained for the construction of a mutation score. The score was then validated using a multivariate analysis and bootstrap resampling method. RESULTS: The strongest association with decrease in viral load was observed with a set of seven mutations (TDF mutation score) that consisted of M41L, E44D, D67N, T69D/N/S, L74V, L210W and T215Y/F RT mutations. The RT K65R mutation and the insertions at codon 69 were not included in the analysis due to low prevalences. A TDF mutation score of < or = 2 predicted the absence of resistance to TDF and > or = 6 mutations predicted resistance to TDF with corresponding reductions in viral load of -1.3 +/- 1.1, and +0.1 +/- 0.7 log10 copies/ml, respectively. In patients with a TDF mutation score of 3-5, the decrease in viral load was -0.8 +/- 1.0 log10 copies/ml and was considered possibly resistant. In the multivariate analysis, a TDF mutation score > or = 6, previous use of amprenavir, indinavir and lopinavir, and co-prescription of didanosine were associated with a worse virological response. The bootstrap analysis showed the robustness of the TDF mutation score. CONCLUSION: In ARV-experienced patients receiving TDF-containing regimens, a score derived from seven reverse transcriptase mutations was shown to be independently predictive of the virological response.

Adenine↗

Can highly active antiretroviral therapy be interrupted in patients with sustained moderate HIV RNA and > 400 CD4+ cells/microl? Impact on immunovirological parameters.

Because the effects of treatment interruption on patients with >400 CD4(+) cells/microl and prolonged moderate HIV loads is unknown, their HIV1 RNA and DNA loads, plasma, and PBMC resistance mutations and CD4+ kinetics were studied during 12 months of treatment interruption. Fifty-seven patients were included: 28 with undetectable (median 40 months) and 29 with moderate (>1 year) HIV1 RNA levels (3.3 log10 copies/ml) at the baseline M0. HIV1 RNA and CD4+ counts were determined monthly. PBMC HIV1 DNA was quantified (real-time PCR) and its reverse transcriptase (RT) and protease (PR) genotypes analyzed (M0, M6, M12). Regardless of HIV1 RNA detectability at the baseline M0, all patients had comparable HIV1 RNA (median 4.6), DNA (median 2.9), CD4+ (median 455) at month 12 (M12). The decisive moment was month 1 (M1), when the HIV1 RNA increase and CD4 decline stabilized, rendering M0 differences non-significant and predicting outcome. The lower the CD4+ nadir was before HAART, the steeper the CD4+ decline at M1. HIV1 DNA shifted to wild-type genotype in 47% (M6) and 79% (M12) of RT; 64% of PR major resistance mutations disappeared (M12). Treatment interruption is possible, regardless of the baseline M0 HIV RNA status, but it must take into consideration the CD4+ nadir, an outcome predictor, to initiate HAART before too severe depletion to preserve the possibility of treatment interruption. HIV1 DNA genotyping helps monitor patients with undetectable HIV RNA at M0.

Anti-HIV Agents↗

Molecular-clinical correlations in a family with variable tissue mitochondrial DNA T8993G mutant load.

Unlike many pathogenic mitochondrial DNA mutations, the T8993G mutation associated with Leigh syndrome (LS) and neurogenic muscle weakness, ataxia, retinitis pigmentosa (NARP) typically shows little variation in mutant load between different tissue types. We describe the molecular and clinical findings in a family with variable disease severity and tissue T8993G mutant loads. Real-time ARMS qPCR testing showed that two brothers with features of NARP and LS had high mutant loads (>90%) in all tissues tested, similar to previously reported cases. Their sister, who has mild speech delay but attends normal school, was found to have a relatively high mutant load (mean 93%) in tissues derived from endoderm (buccal mucosa) and mesoderm (blood and skin fibroblasts). However, in tissue derived from ectoderm (hair bulbs), she carried a considerably lower proportion of mutant mtDNA. Because both surface ectoderm, which gives rise to outer epithelia and hair, and neuroectoderm, which gives rise to the central nervous system, are derived from ectoderm, it is tempting to speculate that the mutant load detected in the oligosymptomatic sister's hair bulbs is a reflection of the brain mutant load. We conclude that significant variation in tissue mutant load may occur in at least some individuals that harbor the T8993G mutation. This adds additional complexity to genetic counseling and prenatal diagnosis in such instances. Given the shared embryonic origin of hair bulbs and brain, we recommend performing hair bulb mtDNA analysis in asymptomatic or oligosymptomatic individuals that have high blood mutant loads in order to understand better the genotype-phenotype correlations related to the T8993G mutation.

Ataxia↗

Hepatitis C, iron status, and disease severity: relationship with HFE mutations.

BACKGROUND & AIMS: Mild to moderate hepatic iron loading is common in patients with chronic hepatitis C. We sought to determine whether mutations in the hemochromatosis gene, HFE, are associated with iron overload and acceleration of disease progression in hepatitis C patients. METHODS: A total of 316 patients with chronic hepatitis C were studied: 198 consecutive patients undergoing liver biopsy for compensated liver disease and 118 who underwent liver transplantation for end-stage liver disease. Serum iron studies, quantitative hepatic iron concentration, histologic activity index, and HFE genotype were determined. RESULTS: Among patients with compensated liver disease, the presence of HFE mutations was independently associated with elevations in serum iron level, serum transferrin-iron saturation, serum ferritin level, and hepatic iron index (P < 0.05). After adjustment for duration of infection with hepatitis C virus, HFE mutations were also independently associated with the presence of bridging fibrosis or cirrhosis (odds ratio, 18; 95% confidence interval, 1.7-193). HFE mutations were not independently associated with iron loading in patients with end-stage liver disease. There was no significant difference in the prevalence of HFE mutations between patients with compensated and end-stage liver disease (42% vs. 33%, respectively; P = 0.67). CONCLUSIONS: The presence of HFE mutations is independently associated with iron loading and advanced fibrosis in patients with compensated liver disease from chronic hepatitis C, especially after controlling for duration of disease. These results suggest that HFE mutations accelerate hepatic fibrosis in hepatitis C but may not be responsible for progression to end-stage liver disease.

Disease Progression↗

Implications of genotyping of spouses to limit investigation of children in genetic hemochromatosis.

BACKGROUND: A genetic test for hemochromatosis has allowed for the first time, genotypic identification of heterozygotes. The purpose of this study is to determine whether genotyping of spouses of homozygotes results in fewer investigations of children and subsequent cost savings. METHODS: Two hundred and ninety one children of homozygotes were studied using HLA typing, transferrin saturation and serum ferritin. Ninety six percent of the probands were homozygous for the C282Y mutation of the HFE gene. Pedigrees were reviewed to determine cost savings incurred if the spouse had been genotyped to guide follow-up studies in the children. Paternity was confirmed by HLA studies. RESULTS: There were 13 homozygotes identified. All homozygous children tested (10/10) were homozygous for the C282Y mutation. There were no iron loaded children identified in homozygotes negative for the C282Y mutation. Genotyping of the spouse eliminated the need for the investigation of 269 children. The cost savings of this strategy were modeled using the cost of the family studies (consultation, iron studies) minus the cost of spouse assessment (consultation, genotyping) plus the cost of assessment of children in families in which the spouse was a heterozygote. The spousal genotyping strategy resulted in a cost savings of 39%. CONCLUSION: Genotying the spouse of a homozygote is the best cost-efficient strategy in pedigree studies because it leads to more selective investigation of children for the hemochromatosis gene.

Base Sequence↗

Genotypic resistance in HIV-1-infected patients with persistently detectable low-level viremia while receiving highly active antiretroviral therapy.

BACKGROUND: Technical limitations in the sensitivity of commercial genotyping methods may prevent clinicians from determining whether drug-resistant human immunodeficiency virus type 1 (HIV-1) is present in patients with low-level viremia. We performed ultrasensitive HIV-1 genotyping for patients with persistent plasma virus loads of 50-400 copies/mL to better define the prevalence of drug resistance and the most common resistance mutations during persistently detectable low-level viremia. METHODS: Genotyping of HIV-1 was performed with an ultrasensitive clonal genotyping method. RESULTS: We studied 21 patients who had persistent, detectable, low-level viremia for a median of 11 months. Nine (43%) of 21 patients had HIV-1 isolates with significant resistance mutations. The most common mutations were M184V, K65R, and M41L/T215Y. CONCLUSIONS: The finding that clinically significant resistance mutations were present in some but not all patients with persistent viremia (range, 50-400 copies/mL) highlights the need to improve the sensitivity of current clinical assays for detection of drug resistance.

Adult↗

The rabbit study: ritonavir and saquinavir in combination in saquinavir-experienced and previously untreated patients.

Thirteen protease inhibitor-naive patients with HIV-1 infection, and 12 patients with a median of 58 months prior treatment with saquinavir (SQV) monotherapy, were treated with SQV (400 mg twice daily) and ritonavir (RIT, 500 mg twice daily) in a study designed to assess the effect of prior treatment with SQV monotherapy on the antiretroviral activity of RIT-SQV combination therapy. Median baseline viral load and CD4+ cell counts were 155,000 and 262,000 copies/ml and 333 and 225 cells/mm3 in the naive and experienced groups, respectively. Mean viral load changes at 24 weeks were -1.63 and -0.27 log copies/ml in the naive and SQV-experienced groups, respectively (intent-to-treat analysis). Baseline genotype by point mutation assay and sequencing in the SQV-experienced group was highly predictive of virological response. Eight of 11 SQV-experienced patients had evidence of phenotypic resistance to RIT at baseline, despite previous treatment with SQV only. There was strong correlation between phenotypic resistance to RIT and the presence of the L90M mutation. We conclude that prolonged prior treatment with saquinavir monotherapy may produce cross-resistance to ritonavir and reduce the subsequent response to ritonavir-saquinavir in combination. In this study, both phenotypic resistance to ritonavir and presence of the L90M mutation predicted the viral load response to ritonavir-saquinavir.

Adult↗

Prenatal diagnosis in known fragile X carriers.

Prenatal diagnosis for fragile X syndrome was performed in 34 pregnancies of 33 known carriers, on 22 chorionic villus samples (CVS), and 15 amniocentesis samples. Fetal and maternal DNA were analyzed by the EagI/EcoRI Southern blot of Rousseau et al. [1991: N Engl J Med 325:1673-1681], with detection of full mutations ensured by a second loading with brief electrophoresis. As a supplemental assay for full mutations, cytogenetic induction was performed in 20 cases. Positive cytogenetic results were helpful in confirming full mutations in CVS cases where the fetal DNA was intermediate in appearance, between a large premutation and a small full mutation. Of 8 mothers with full mutations, the fetal results were 5 full, 2 normal, and 1 premutation (whose mother was a full/pre compound heterozygote). Of 26 mothers with premutations, the fetal results were 5 full, 13 normal, 7 premutation, and 1 uninterpretable (maternal contamination). Maternal premutations were sized in kb by Southern blot and in CGG repeat number by PCR; the predicted correlation between maternal length and penetrance was seen. Follow-up studies include 3 full mutations and 2 premutations confirmed by DNA analysis at birth. Maternal contamination of CVS samples was encountered in 3 of 22 cases, illustrating the value of EagI in detecting maternal (lyonized) chromosomes.

Amniocentesis↗

Genetic evidence for the requirement of RecA loading activity in SOS induction after UV irradiation in Escherichia coli.

The SOS response in Escherichia coli results in the coordinately induced expression of more than 40 genes which occurs when cells are treated with DNA-damaging agents. This response is dependent on RecA (coprotease), LexA (repressor), and the presence of single-stranded DNA (ssDNA). A prerequisite for SOS induction is the formation of a RecA-ssDNA filament. Depending on the DNA substrate, the RecA-ssDNA filament is produced by either RecBCD, RecFOR, or a hybrid recombination mechanism with specific enzyme activities, including helicase, exonuclease, and RecA loading. In this study we examined the role of RecA loading activity in SOS induction after UV irradiation. We performed a genetic analysis of SOS induction in strains with a mutation which eliminates RecA loading activity in the RecBCD enzyme (recB1080 allele). We found that RecA loading activity is essential for SOS induction. In the recB1080 mutant RecQ helicase is not important, whereas RecJ nuclease slightly decreases SOS induction after UV irradiation. In addition, we found that the recB1080 mutant exhibited constitutive expression of the SOS regulon. Surprisingly, this constitutive SOS expression was dependent on the RecJ protein but not on RecFOR, implying that there is a different mechanism of RecA loading for constitutive SOS expression.

Escherichia coli↗

The evolution of intratetrad mating rates.

Intratetrad mating, the fusion of gametes formed in a single meiosis, has unusual consequences for genetic diversity, especially in genome regions linked to mating type loci. Here we investigate the fate of modifier alleles that alter the rate of intratetrad mating, under models of heterozygote advantage and of genetic load resulting from recurrent mutation. In both cases, intratetrad mating is favored if the recombination rate between the selected locus and mating type is less than the frequency of lethal recessive alleles at that locus in the population. Positive feedback often accelerates the invasion of modifiers to the intratetrad mating rate. Recombination rate and intratetrad mating rate exert indirect selection on one another, resulting in a cascading decline in outcrossing, even in the absence of any cost of sex. However, under recurrent mutation, alleles for obligate intratetrad mating invade only very slowly, perhaps explaining why outcrossing can persist at low frequencies in a largely intratetrad mating population.

Biological Evolution↗

The determination of complete human mitochondrial DNA sequences in single cells: implications for the study of somatic mitochondrial DNA point mutations.

Studies of single cells have previously shown intracellular clonal expansion of mitochondrial DNA (mtDNA) mutations to levels that can cause a focal cytochrome c oxidase (COX) defect. Whilst techniques are available to study mtDNA rearrangements at the level of the single cell, recent interest has focused on the possible role of somatic mtDNA point mutations in ageing, neurodegenerative disease and cancer. We have therefore developed a method that permits the reliable determination of the entire mtDNA sequence from single cells without amplifying contaminating, nuclear-embedded pseudogenes. Sequencing and PCR-RFLP analyses of individual COX-negative muscle fibres from a patient with a previously described heteroplasmic COX II (T7587C) mutation indicate that mutant loads as low as 30% can be reliably detected by sequencing. This technique will be particularly useful in identifying the mtDNA mutational spectra in age-related COX-negative cells and will increase our understanding of the pathogenetic mechanisms by which they occur.

Alleles↗

HIV-1 reverse transcriptase (RT) genotype and susceptibility to RT inhibitors during abacavir monotherapy and combination therapy.

OBJECTIVE: To examine changes in HIV-1 susceptibility (genotype and phenotype) during an initial abacavir monotherapy phase followed by the addition of zidovudine and lamivudine. DESIGN: Sixty HIV-1 infected, antiretroviral therapy-naive subjects were randomized to receive 100, 300 or 600 mg abacavir twice daily. Subjects completing 24 weeks of randomized therapy or meeting a protocol defined switch criterion could switch to open label abacavir/zidovudine/lamivudine. METHODS: Plasma HIV-1 reverse transcriptase was genotyped at baseline, week 12, and at the last time point on ABC monotherapy. Drug susceptibility was analysed at baseline and on subsequent samples with sufficient HIV-1 RNA levels using the recombinant virus assay. Virological responses (week 24) were correlated to week 24 genotypes. RESULTS: Mutant viruses were not detected before week 12 with the exception of one subject. At the latest time point on abacavir monotherapy (range, weeks 6-48), 21 out of 43 subjects harboured virus with resistance conferring mutations including single, double and triple combinations of K65R, L74V, Y115F and M184V. The most common mutational pattern was L74V + M184V (11/21 cases). Twenty of the 21 subjects with isolates containing abacavir-associated mutations reached week 48, and upon addition of lamivudine/zidovudiine, 16 out of 20 (80%) had week 48 plasma HIV-1 -RNA below 400 copies/ml. At week 48, 16 out of 46 genotypes were obtained; one of these was wild-type; 15 contained M184V either alone, in combination with K65R and/or L74V and/or Y115F or with thymidine analogue-associated mutations. Week 48 viral load levels for these 15 subjects was low (median 3.43 log10 copies/ml or -1.99 log10 copies reduction from baseline). Genotype correlated well with phenotypic resistance to ABC; four samples with three abacavir-associated mutations had high level abacavir resistance (> 8-fold) and six samples with two or three mutations showed intermediate (4-8-fold) resistance. All samples with single mutations retained full ABC susceptibility. CONCLUSIONS: Resistance conferring mutations to abacavir were relatively slow to develop during the monotherapy phase, and did not preclude durable efficacy of abacavir/lamivudine/zidovudine up to 48 weeks.

Cohort Studies↗

Mutation of a conserved glycine in the SH1-SH2 helix affects the load-dependent kinetics of myosin.

The ATP hydrolysis rate and shortening velocity of muscle are load-dependent. At the molecular level, myosin generates force and motion by coupling ATP hydrolysis to lever arm rotation. When a laser trap was used to apply load to single heads of expressed smooth muscle myosin (S1), the ADP release kinetics accelerated with an assistive load and slowed with a resistive load; however, ATP binding was mostly unaffected. To investigate how load is communicated within the motor, a glycine located at the putative fulcrum of the lever arm was mutated to valine (G709V). In the absence of load, stopped-flow and laser trap studies showed that the mutation significantly slowed the rates of ADP release and ATP binding, accounting for the approximately 270-fold decrease in actin sliding velocity. The load dependence of the mutant's ADP release rate was the same as that of wild-type S1 (WT) despite the slower rate. In contrast, load accelerated ATP binding by approximately 20-fold, irrespective of loading direction. Imparting mechanical energy to the mutant motor partially reversed the slowed ATP binding by overcoming the elevated activation energy barrier. These results imply that conformational changes near the conserved G709 are critical for the transmission of mechanochemical information between myosin's active site and lever arm.

Actins↗