PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “mutation load”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 631 records · Page 35Linked to original sources

Roles of iron and HFE mutations on severity and response to therapy during retreatment of advanced chronic hepatitis C.

BACKGROUND & AIMS: Iron overload may cause or contribute to hepatic injury and fibrosis. Mutations in the HFE gene may influence development or progression of chronic liver disease by increasing iron stores or modulating immune responses. The aim of this work was to assess the influence of HFE mutations and serum and hepatic measures of iron status on baseline features and response to lead-in therapy in subjects with advanced chronic hepatitis C enrolled in the Hepatitis C Anti-viral Long-term Treatment to prevent Cirrhosis (HALT-C) Trial. METHODS: Entry criteria included an Ishak fibrosis score >2 and lack of iron overload (Scheuer iron grade <3+) according to local study pathologists. All baseline biopsy specimens were rescored by consensus of study pathologists, and detailed assessment of stainable iron was performed. Hepatic iron concentrations were measured on portions of 144 liver biopsy specimens. A total of 1051 out of 1145 subjects agreed to HFE mutational testing (C282Y, H63D, S65C). RESULTS: Thirty-five percent carried at least one HFE gene mutation. There were no significant differences in the prevalence of HFE gene mutations among subjects with fibrosis (35.5%) versus cirrhosis (32.9%). Thirty-three percent of subjects had end-of-treatment and 16% sustained virologic responses. Presence of HFE mutations, in particular the H63D variation, was associated with increased end-of-treatment (40% vs 29%, P = .0078) and sustained virologic responses (20% with HFE mutation vs 14% sustained virologic response without HFE mutation; P = .009). CONCLUSIONS: Although HFE mutations (especially the most frequent H63D mutation) are associated with increased iron loading, they are also associated with increased sustained virologic responses in US patients with advanced chronic hepatitis C.

Adult↗

Nonsteroidal anti-inflammatory drug-activated gene-1 over expression in transgenic mice suppresses intestinal neoplasia.

BACKGROUND & AIMS: The nonsteroidal anti-inflammatory drug-activated gene (NAG-1) was identified as a proapoptotic, antitumorigenic protein in vitro, induced by many antitumorigenic and chemopreventive drugs including cyclooxygenase inhibitors. However, its antitumorigenic activity has not been elucidated in vivo. METHODS: Transgenic mice were generated that ubiquitously overexpress human NAG-1 under the control of a chicken beta-actin promoter (CAG). The NAG-1 transgenic mice (NAG-(Tg+)) were characterized, and then the antitumorigenic activity was evaluated with 2 colorectal carcinogenesis models: chemical induction with azoxymethane and genetic induction using the Apc(Min+) mutation. RESULTS: NAG-(Tg+) showed no apparent phenotype other than a reduction in body weight, particularly in males. To examine whether NAG-1 expression would suppress intestinal tumorigenesis, the NAG-(Tg+) mice were treated with the colorectal carcinogen azoxymethane. NAG-(Tg+) mice developed 50% fewer aberrant crypt foci and no tumors, in comparison with nontransgenic littermates. This result demonstrates that expression of this human protein in vivo can suppress chemically induced carcinogenesis in the colon. The NAG-(Tg+) mice were also crossed with Apc(Min+) mice to determine the effect of the transgene on intestinal polyp formation. NAG-(Tg+) mice heterozygous for the Apc(Min+) mutation had a significantly reduced polyp load (60%) compared with nontransgenic Apc(Min+) littermates. CONCLUSIONS: Our results support NAG-1 as an important regulator of intestinal adenoma growth in vivo and suggest that NAG-1 may act as a tumor suppressor gene.

Animals↗

Molecular and clinical correlates in iron overload associated with mutations in ferroportin.

Mutations in ferroportin (Fpn) result in iron overload. We correlate the behavior of three Fpn mutants in vitro with patients' phenotypes. Patients with Fpn mutations A77D or N174I showed macrophage iron loading. In cultured cells, FpnA77D did not reach the cell surface and cells did not export iron. Fpn mutant N174I showed plasma membrane and intracellular localization, and did not transport iron. Fpn mutation G80S was targeted to the cell surface and was transport competent, however patients showed macrophage iron. We suggest that FpnG80S represents a class of Fpn mutants whose behavior in vitro does not explain the patients' phenotype.

Amino Acid Substitution↗

Measurement of ATP production in mitochondrial disorders.

Mitochondrial diseases are a heterogeneous group of disorders caused by mutations in both nuclear DNA (nDNA) and mitochondrial DNA (mtDNA). Mitochondrial disease leads to impaired respiratory chain function and reduced ATP production. The aim of this study was to compare disturbances in mitochondrial function by measuring ATP synthesis in fibroblasts derived from patients with nDNA and mtDNA defects. Skin fibroblasts derived from 22 patients with either nDNA-related disorders (n = 8) or mtDNA-related disorders (n = 14) were analysed. ATP synthesis was markedly decreased in fibroblasts derived from patients with nDNA-related disorders but only variably so in patients with mtDNA mutations. In fibroblasts with the MELAS 3243A > G mutation, ATP synthesis correlated with mutant load. We believe that the observed differences in ATP production between cell lines derived from patients with nDNA-related disorders and mtDNA-related disorders may help in the assessment of patients with undiagnosed mitochondrial disease. The clinical comparisons observed in patients with nDNA- and mtDNA-related disorders may be explained by differences in the disturbance of ATP synthesis measured in the two conditions.

Adenosine Triphosphate↗

The molecular basis of ferroportin-linked hemochromatosis.

Mutations in the iron exporter ferroportin (Fpn) (IREG1, SLC40A1, and MTP1) result in hemochromatosis type IV, a disorder with a dominant genetic pattern of inheritance and heterogeneous clinical presentation. Most patients develop iron loading of Kupffer cells with relatively low saturation of plasma transferrin, but others present with high transferrin saturation and iron-loaded hepatocytes. We show that known human mutations introduced into mouse Fpn-GFP generate proteins that either are defective in cell surface localization or have a decreased ability to be internalized and degraded in response to hepcidin. Studies using co-immunoprecipitation of epitope-tagged Fpn and size-exclusion chromatography demonstrated that Fpn is multimeric. Both WT and mutant Fpn participate in the multimer, and mutant Fpn can affect the localization of WT Fpn, its stability, and its response to hepcidin. The behavior of mutant Fpn in cell culture and the ability of mutant Fpn to act as a dominant negative explain the dominant inheritance of the disease as well as the different patient phenotypes.

Animals↗

APC inhibits ERK pathway activation and cellular proliferation induced by RAS.

Inactivating mutations in the adenomatous polyposis coli gene (APC), and activating mutations in RAS, occur in a majority of colorectal carcinomas. However, the relationship between these changes and tumorigenesis is poorly understood. RAS-induced activation of the ERK pathway was reduced by overexpressing APC in DLD-1 colorectal cancer cells. ERK activity was increased by Cre-virus-induced Apc knockout in primary Apc(flox/flox) mouse embryonic fibroblasts, indicating that APC inhibits ERK activity. ERK activity was increased by overexpression and decreased by knock down of beta-catenin. The activation of Raf1, MEK and ERK kinases by beta-catenin was reduced by co-expression of APC. These results indicate that APC inhibits the ERK pathway by an action on beta-catenin. RAS-induced activation of the ERK pathway was reduced by the dominant negative form of TCF4, indicating that the ERK pathway regulation by APC/beta-catenin signaling is, at least, partly caused by effects on beta-catenin/TCF4-mediated gene expression. The GTP loading and the protein level of mutated RAS were decreased in cells with reduced ERK activity as a result of APC overexpression, indicating that APC regulates RAS-induced ERK activation at least partly by reduction of the RAS protein level. APC regulates cellular proliferation and transformation induced by activation of both RAS and beta-catenin signaling.

Adenomatous Polyposis Coli Protein↗

A cohort study of enfuvirtide immunological and virological efficacy in clinical practice.

The aim of the study was to evaluate, under routine circumstances, the immunological and virological efficacy of antiretroviral regimens containing enfuvirtide in multi-class experienced HIV-1 infected patients. This retrospective monocentric study analyzed the clinical, immunological, and virological data of 18 HIV-1 infected patients who started enfuvirtide and completed at least 3 months of therapy. Following 3 months of enfuvirtide therapy, 11 (61%) patients had HIV-1 RNA below 400 copies/ml, among whom 8 (44%) patients below 50 copies/ml. In the ten patients still receiving enfuvirtide after 12 months, the median increase in CD4 cell count was 159 cells/microl (range, -25 to +301) and the mean decrease in HIV-1 RNA was 2.5 +/- 1.4 log(10) copies/ml; in six of these patients, viral load remained below 50 copies/ml. Five patients discontinued enfuvirtide for virological failure but none as a consequence of adverse event. Mutations located within the 36-45 amino acid domain of HR1 region of gp41 and associated to enfuvirtide resistance were found in all seven patients with persistent viral replication. In addition, a new mutation, A50V, emerged in one patient with late viral rebound. Its disappearance after treatment discontinuation suggests that it could play a role in resistance to enfuvirtide. In conclusion, enfuvirtide may be a good therapeutic option as rescue therapy in treatment-experienced patients. However, the mutations conferring resistance to enfuvirtide develop rapidly when viral load is not controlled confirming that enfuvirtide should be prescribed in association with an active background regimen.

Adult↗

Safety and efficacy of ritonavir and saquinavir in combination with zidovudine and lamivudine.

BACKGROUND: Ritonavir is a potent inhibitor of cytochrome P4503A4 that strongly increases saquinavir bioavailability. In this study we assessed the safety and antiretroviral efficacy of the combination of these two compounds in patients pretreated and receiving continued treatment with zidovudine and lamivudine who were protease inhibitor naive and who had a CD4 cell counts below 200/mm3. METHODS: In this 48-week pilot study, all patients received 600 mg ritonavir and 400 mg saquinavir twice daily. Administration of zidovudine and lamivudine was continued without a change in previous doses. Viral load, CD4 cell count, and the emergence of resistance to the two protease inhibitors were evaluated repeatedly up to week 48. RESULTS: Sixteen patients were included in the study. Previous nucleoside analog treatment duration was 48+/-22 months (mean +/- SD). Two patients quit taking both protease inhibitors within 2 weeks. The ritonavir dose had to be reduced in 10 other patients because of side effects. Between inclusion and week 48, plasma viremia varied from 4.87+/-0.43 to 3.00+/-1.29 log10 copies/mL and CD4 cell counts ranged from 98+/-61 to 250+/-139/mm3. Ten patients (63%) had viral loads below 200 copies/mL and 7 (44%) had viral loads below 50 copies/mL. A single key mutation that conferred ritonavir resistance I84V and V82A/V developed in two patients. A mutation at codon 54 developed in another patient. These mutations were associated with repeated cessations of antiretroviral treatment. No lipodystrophy was observed. CONCLUSION: Ritonavir and saquinavir in combination are quite well tolerated and induce a high and sustained antiretroviral efficacy. A four-drug combination that includes these two protease inhibitors should be considered as a first line of treatment in patients with low CD4 cell counts.

Acquired Immunodeficiency Syndrome↗

Long-term analysis of the resistance development in HIV-1 positive patients treated with protease and reverse transcriptase inhibitors: correlation of the genotype and disease progression.

In this study, 27 HIV-1-positive patients on long-term highly active antiretroviral therapy (HAART) in the Czech Republic were followed for a period of up to 7 years. Variability of the HIV-1 protease (PR) sequence common in the Czech Republic was observed. Under the pressure of inhibitors of protease (PRIs) and reverse transcriptase (RTIs) mutations in PR were detected. Development of resistance to PRIs was followed by a decrease in CD4 count and increase in viral load. The dynamics of viral load closely corresponded to the accumulation of specific primary mutations in PR and RT. Out of 27 patients 18 developed resistance to PRIs and the prolonged therapy led to the accumulation of a higher number of amino acid changes associated with the resistance and, consequently, cross-resistance to several PRIs was observed. These multi-resistant variants of HIV-1 with mutations in PR could not be inhibited sufficiently with PRIs that are currently available in clinical practice. Efficient yet temporary suppression of viral replication was achieved by a lopinavir (LPV) treatment.

Amino Acid Substitution↗

On the relationship between spontaneous mutation rates in vivo and in vitro.

Recent estimates of spontaneous mutation rates in man, in which previous sources of bias are corrected, indicate that the average is about 3 x 10(-7) per locus per generation, a much lower figure than is generally accepted. Assuming 100 to 1000 cell divisions between each gametic union, this information predicts that cellular mutation rats should be in the order of 10(-9) per locus per generation. Since none of the mutation rates measured in cultured cells are this low (average for seven characters equals 7 x 10(-7)), the size of mutation rates in cultured cells cannot be used to substantiate the claim of epigenetic inheritance. Furthermore, this information suggests that in multicellular organisms the germinal tissue is sequestered from mutagenic insult or subjected to selection against mutational damage so as to keep the genetic load of a species at a tolerable level. Alternatively, cell culture environments may present an extremely abnormal situation to somatic cells, thus elevating the mutation rate.

Cells, Cultured↗

Hepatitis B virus infection: current status.

Hepatitis B virus currently infects more than 400 million people worldwide. Despite the availability of hepatitis B vaccine, the overall prevalence of hepatitis B virus infection has declined little in recent years. Hepatitis B virus causes liver injury by an immune response against the virus-infected liver cells and is not directly cytopathic, although immunosuppression appears to enhance replication and lead to direct cytotoxicity. The interplay of the host immune response and the virus's ability to replicate is a prime determinant of the likelihood of liver injury, its intensity, and progression to cirrhosis. A series of stages evolve in the life cycle of each patient's infection, with associated decreases in viral load at each successive stage. Viral mutations in the polymerase or the core gene affect replication and may enhance liver injury. Recently, genotypes have been identified that are linked to clinical outcomes, drug responses, and mutations. Four drugs (interferon alpha, lamivudine, adefovir, and entecavir) have been approved by the US Food and Drug Administration for treatment of hepatitis B virus; they effectively decrease replication and reduce inflammation and fibrosis. Treatment of hepatitis B virus in complex situations such as co-infection with human immunodeficiency virus or immunosuppressive therapy remains challenging. The use of hepatitis B vaccine has been shown to reduce the incidence of new infection in many regions. A decline in the prevalence of hepatitis B infection worldwide will require changes in high-risk behavior and the wider use of vaccination.

Adolescent↗

Extended lamivudine therapy against hepatitis B virus infection in hematopoietic stem cell transplant recipients.

Lamivudine has demonstrated efficacy in the treatment and prevention of hepatitis B virus (HBV) reactivation after hematopoietic stem cell transplantation (HSCT). However, most of these studies involved short durations of prophylaxis, so there is significant concern regarding lamivudine resistance in these patients. Between March 1984 and November 2002, 71 HBV surface antigen-positive HSCT recipients, including a subgroup of 16 who received pretransplantation lamivudine therapy, which was continued into the posttransplantation period to prevent reactivation hepatitis, were enrolled onto our study. The efficacy of lamivudine therapy was first evaluated for the subgroup of 16 patients in terms of treatment response, lamivudine resistance, and viral recurrence after discontinuation by using virologic assays. Efficacy was then evaluated for all patients in terms of the hazards of lamivudine therapy for reactivation hepatitis after transplantation. During a median lamivudine therapy period of 73 weeks (range, 19-153 weeks), the initial response showed a median reduction of 2.54 log10 in serum HBV DNA (-0.28 to 6.72 range). Lamivudine-resistant mutations were detected in 10 (63%) of 16 patients during therapy, and 1 (12%) of 16 patients finally developed a viral breakthrough. At a median follow-up of 30 months after discontinuation, 3 (27%) of 11 cases had recurrence of HBV infection. Despite the emergence of the mutations, no deaths were due to HBV reactivation or severe cases of hepatitis. In the Cox proportion regression model regarding reactivation hepatitis after transplantation of all enrolled patients, lamivudine therapy was found to be the only favorable factor for the event, with a hazard ratio of 0.122 (95% confidence interval, 0.016-0.908; P = .040). In conclusion, extended lamivudine therapy is safe and effective for the prevention of HBV reactivation in an HSCT setting and significantly decreases reactivation hepatitis after transplantation.

Adult↗

Fulminant neurological deterioration in a neonate with Leigh syndrome due to a maternally transmitted missense mutation in the mitochondrial ND3 gene.

Leigh syndrome can result from both nuclear and mitochondrial DNA defects. Mutations in complex V genes of the respiratory chain were considered until recently as the most frequent cause for mitochondrial inherited Leigh syndrome, while gene defects in complex I were related to recessive Leigh syndrome. Recently few reports of mutations in the mitochondrial-encoded complex I subunit genes causing Leigh syndrome have been reported. We describe a 1-month-old baby who acutely deteriorated, with abrupt onset of brainstem dysfunction, due to basal ganglia lesions extending to the brainstem. A muscle biopsy demonstrated complex I deficiency. Subsequent analysis of the mitochondrial genome revealed a homoplastic T10191C mutation in the ND3 gene (in blood and muscle), resulting in a substitution of serine to proline. Hair root analysis revealed a 50% mutant load, reflecting heteroplasmy in early embryonic stages. The mutation was also detected in his mother (5%). Western blot analysis revealed a decrease of the 20 kDa subunit (likely ND6) and of the 30 kDa subunit (NDUFA9), which is probably due to instability attributed to the inability to form subcomplexes with ND3. This is the first description of infantile Leigh syndrome due to a maternally transmitted T10191C substitution in ND3 and not due to a de novo mutation. This mutation is age and tissue dependent and therefore may not be amenable to prenatal testing.

DNA, Mitochondrial↗

Mutagenic effects of ribavirin and response to interferon/ribavirin combination therapy in chronic hepatitis C.

BACKGROUND/AIMS: To elucidate whether ribavirin acts as a mutagen in the clinical setting and to clarify the relationship between ribavirin-induced mutations and virological response to combined therapy. METHODS: Thirty-four patients with hepatitis C virus (HCV) genotype 1b received ribavirin monotherapy for 4 weeks, followed by a 24-week course of IFN/ribavirin therapy. HCV mutations during a non-treatment observation period and during subsequent ribavirin monotherapy were determined, and the relationship between mutations and response to subsequent IFN/ribavirin therapy was evaluated. RESULTS: Serum HCV significantly decreased from 6.90 to 6.56 log10copy/ml in response to ribavirin monotherapy (P < 0.0001). Nucleotide mutations in the NS5A and NS5B regions occurred during ribavirin monotherapy at a rate of 2.9 x 10(-2)/site/year and 1.3 x 10(-2)/site/year, respectively, a significantly higher rate than the mutation rates during the prior non-treatment observation period (0.60 x 10(-2)/site/year and 0.24 x 10(-2)/site/year, P = 0.02, respectively). Mutation rates in the NS5A region were significantly higher in sustained viral responders (SVRs, n = 10) than in non-responders (8.8 x 10(-2)/site/year vs. 0.38 x 10(-2)/site/year, P = 0.0005, respectively). In the NS5A region, non-synonymous mutations only occurred in SVRs. CONCLUSIONS: Ribavirin may act as a mutagen, and mutations occurring during ribavirin therapy correlate with the virological response to subsequent IFN/ribavirin combination therapy.

Amino Acid Sequence↗

Adefovir-resistant hepatitis B can be associated with viral rebound and hepatic decompensation.

BACKGROUND/AIMS: The susceptibility of adefovir-resistant hepatitis B virus (HBV) mutants is only reduced by 3-10-fold in in vitro studies, suggesting that virologic breakthrough and clinical deterioration are unlikely. The aim of this study was to describe the clinical course of patients with adefovir-resistant HBV infection. METHODS: Testing for adefovir-resistant mutations was performed on patients who had a suboptimal response or virologic breakthrough on adefovir. Adefovir-resistant mutations were detected using a line probe assay and direct sequencing of the HBV P-gene. RESULTS: Eight male patients with pre-existing lamivudine resistance or breakthrough (mean age 47+/-13 years) were found to have adefovir-resistant mutations rtA181V/T or rtN236T. Baseline median ALT was 66 IU/L (range, 27-1161) and median HBV DNA 7.9 log10 copies/ml (range, 6-8.3). At the time of adefovir resistance (mean of 20+/-9 months), HBV DNA increased to > or = 5 log10 copies/ml in 7 patients. After detection of adefovir resistance, hepatic decompensation occurred in 2 patients, 1 of whom died. Salvage therapy with lamivudine, entecavir or tenofovir was given to 7 patients and a reduction in HBV DNA by > or = 3 log10 was seen in 3 patients. CONCLUSIONS: In conclusion, adefovir resistance can be associated with significant viral rebound and hepatic decompensation which may be fatal.

Adenine↗

Ageing in plants.

Ageing in green plants differs in some fundamental ways from the process in animals. The seasonal cycle and persistence of a plant is governed by a combination of the determinate or indeterminate status of meristems (growth centres) and the cell death and disposal strategies employed by plants to generate well-adapted anatomies and morphologies. The degree of perenniality depends on the balance between exploratory growth and the wave of tissue death that succeeds it, and extremes of longevity can arise by relatively minor changes in the quantitative relationship between growth and death. The senescence and elimination of organs and tissues are related to the internal reallocation of resources but are programmed phases in the integrated development of the whole plant and do not represent a kind of ageing by stress or starvation. Meristems of long-lived plants accumulate genetic damage but selection mechanisms exist within the organism to control genetic load, and even to exploit somatic mutations that confer adaptive benefits. It is concluded that most plants do not age in the strict gerontological sense and that extremely long-lived forms like trees and clonal creeping perennials are sustained by selection and correction at the level of semi-autonomous cell lineages.

Aging↗

Disorders of homocysteine metabolism.

This review of recent advances covers (1) the metabolism of methionine and its regulation, emphasizing interactions with the three important vitamins folate, cobalamin and pyridoxine; (2) present knowledge of enzymological and moleculargenetic aspects of homozygous deficiencies of the three enzymes which cause elevated homocyst(e)ine; (3) recent clinical findings, post-methionine loading results related to enzyme and mutation studies in obligate heterozygotes for cystathionine beta-synthase deficiency; (4) important new evidence for disturbed homocysteine metabolism in neural tube defects, particularly based on studies of the thermolabile methylene-tetrahydrofolate reductase mutation which is also of importance in vascular disease; (5) the suitability and limitations of animal models that have so far been described.

5,10-Methylenetetrahydrofolate Reductase (FADH2)↗