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Histologic activity of childhood chronic hepatitis B related to viremia levels, genotypes, mutations, and epidemiologic factors.

BACKGROUND: Despite high viral load, children with chronic hepatitis B virus (HBV) infection may lack significant biochemical signs of liver dysfunction. Failure to develop abnormal liver chemistriesis is probably due to immunologic hyporeactivity. Despite the absence of biochemical abnormalities in these patients, there is still a risk for long-term complications. The pathogenic importance of viral load and genetic variability is less well studied in children than in adults. METHODS: We evaluated viremia levels, genotypes, and mutations related to histologic evidence of liver damage in 71 HBV carriers, aged 2 to 18 years, all of non-Swedish origin. RESULTS: None of the of 22 children who were hepatitis B e antigen (HBeAg) negative had severe liver disease or had HBV DNA levels greater than 10 copies/mL (mean 10 ); 3 (14%) of them had increased alanine aminotransferase (ALT). The 49 HBeAg-positive children had a mean HBV DNA level of 10 copies/mL, and increased ALT was seen in 28 (55%). Core promoter mutations (at nt 1764) or precore mutations (at codon 1, 2, or 28) were rare; they were seen in four and one HBeAg-positive children, and in four and nine HBeAg-negative children, respectively, without association to liver damage. C-1858 was associated with more liver inflammation. Genotype did not significantly influence liver damage. Children with horizontal transmission had a faster rate of seroconversion and more inflammation of the liver. CONCLUSIONS: Severe HBeAg-negative hepatitis with high HBV DNA levels and mutations in the core promoter or precore regions seems to be less common in children than in adults. C-1858 strains may be more pathogenic, but this requires further study. Epidemiologic factors influence the course of infection.

Adolescent↗

[Variability and development of viral populations: assessment and implications].

RNA virus populations consist of complex distributions of closely related but not identical genomes known as viral quasi-species. The quasi-species concept describes the dynamics of these genomes subjected to a continuous process of variation, competition, and selection. Quasi-species dynamics has broad implications not only in the understanding of the molecular mechanisms underlying adaptation of RNA viruses but also in the design of strategies for control and prevention of viral disease. Viral load and genetic heterogeneity have a determinant influence on the adaptation of RNA virus to their environment. Vaccines designed to control diseases caused by highly variable viruses must contain several B and T epitopes to provide an ample and diversified immune response. Similarly, antiviral drugs should be used in combination therapy to minimize selection of resistant viruses. The theoretical model of quasi-species has opened the way for new antiviral therapies based on augmentation of the mutation rate during replication of viral RNA. Finally the quasi-species concept provides the basis for defining the selective factors that could influence the evolution of RNA virus and promote the emergence or reemergence of viral diseases.

Antibiosis↗

Sexual selection purges mutation load, but not overall genetic diversity, decreasing vulnerability to extinction.

Theory suggests sexual selection will enhance population viability by purging deleterious alleles. However, direct genomic evidence for this fundamental idea is scarce and contradictory. We combined long-term experimental evolution with whole-genome resequencing to directly test how sexual selection affects mutation load, genomic divergence, and extinction risk in small populations (maximum Ne = 40) of Tribolium castaneum. After 156 generations, populations evolving under strong sexual selection carried substantially fewer deleterious alleles than populations under weak sexual selection, based on both individual-level estimates of missense and nonsense variants and population-level Rxy analyses, indicating more efficient purging of deleterious alleles. In contrast, nucleotide diversity and runs of homozygosity were similar across treatments, indicating that purging acted most strongly on deleterious variation, and that reduced mutation load in these small populations under strong sexual selection was not explained by demographic effects. Importantly, population-level mutation load estimates best explained extinction risk under inbreeding, directly linking sexual selection to purging and population viability. Genome scans of high and low sexual selection populations revealed peaks of divergence, which included genes involved in courtship, sex discrimination, and seminal fluid proteins. Our results provide direct genomic evidence that sexual selection can reduce mutation load without eroding standing genetic diversity and thus adaptive potential, while driving adaptive divergence in reproductive traits. This beneficial purging may help explain the widespread prevalence of sexual reproduction in nature despite inherent costs and have important ramifications as to how we manage populations of conservation concern.

Animals↗

Genetic and environmental influence on inspiratory resistive load detection.

To differentiate genetic factors from environmental forces in determining threshold for resistance load detection (RLD), 62 healthy adolescent twins (mean age = 16 years) and 74 healthy adult twins (mean age = 34 years) were studied by the standard psychophysical technique. The zygosity was determined by blood groups, finger prints, and physical appearances. Mean values for age, height, weight, pulmonary functions (FVC, FEV1, FEV1/FVC, Raw, and FRC) were not different between monozygotic (MZ) and dizygotic (DZ) pairs either in adolescent or adult twins. Threshold for RLD was analyzed in terms of added resistance divided by airway resistance plus apparatus resistance (Weber fraction) and mouth pressure (P) at the threshold. Both Weber fraction and P were equivalent between MZ and DZ either in adolescent or adult twins. In adolescence, within-pair variance for P was significantly greater in DZ than in MZ, but within-pair variances for Weber fraction were similar between MZ and DZ, the former indicating that threshold for RLD is predominantly influenced by genetic factors. In adults, within-pair variances for Weber fraction and P were not different between MZ and DZ, indicating that environmental factors predominate over genetic factors. When adolescent and adult twins were lumped together, mean values for Weber fraction and P were not different between male and female. Relationship between P and age was significant both in male and female. P (male) = 0.281 + 0.013 X age (years) +/- SD 0.36 cm H2O, and P (female) = 0.235 + 0.013 X age (years) +/- 0.48 cm H2O. These results indicate that the threshold for RLD is influenced predominantly by genetic factors in adolescence, but environmental factors predominate in the adult. Although sex difference is not clear, P at the threshold increases with age in both sexes.

Adolescent↗

[Influence of population's genetic structure on the load size of monogenic hereditary diseases in Russia].

The paper presents the results of genetic and epidemiological study of populations in 5 Russian regions: the Kirov, Kostroma, and Bryansk Provinces, Krasnodar Territory, and the Republic of Mari El. The total size of the study population was over 1.5 million. Random inbreeding (Fst) in all Russian rural populations was significant and varied from 0.34 x 10(-3) to 7.6 x 10(-3). The prevalence rates for autosomal dominant (AD) disorders ranged from 0.22 to 3.93 per 1000. The load of autosomal recessive (AR) disorders varied from 0.17 to 2.01. The prevalence rates for AD and AR disorders was twice lower in the urban populations than those in the rural ones. The prevalence of X-linked recessive disorders was 0.33 per 1000 males. An analysis was made to examine the correlation between inherited diseases and Fst. The Pierson correlation coefficient was 0.81 and 0.87 for AD and AR disorders, respectively. The regression suggested that genetic differentiation of the populations with genes for hereditary disorders is partially related to gene drift. This suggestion was proved by genetic geographical mapping analysis. The similarity in the patterns of genetic distance distribution for all 3 genetic systems was revealed by the correlation coefficients between the maps for neutral genetic markers and the genes of AD and AR disorders which were equal to 0.67 and 0.65. There was the highest correlation coefficient between the maps of genetic distances for the genes of AD and AR disorders (Rs = 0.88).

Consanguinity↗

[Genetic structure and the load of hereditary diseases in five populations of Arkhangel'skaia region].

A population and medical genetic investigation was performed in a number of raions in the Arkhangel' skaya oblast. Random inbreeding coefficients were 0.000358 and 0.000361 in the Vinogradovskii and Krasnoborskii raions. Malecot's local inbreeding coefficients were 0.000565 and 0.000472, respectively. The endogamy indices were 0.37 and 0.54, respectively. In the urban population, the loads of autosomal dominant, autosomal recessive, and X-linked pathology were 1.01 and 0.98 per 1000 individuals, and 0.29 per 1000 men; in the rural population, they were 1.22, 1.55, and 1.08, respectively. In the populations studied, the hereditary pathology spectrum is described.

Consanguinity↗

HIV-2 genetic variation and DNA load in asymptomatic carriers and AIDS cases in Guinea-Bissau.

The purpose of this study was to document which genetic subtypes of HIV-2 are present in Guinea-Bissau and to investigate whether asymptomatic HIV-2 carriers and AIDS patients carry distinct genetic variants. A secondary aim was to correlate proviral DNA load to clinical and immunologic status of the patients. Thirty-eight asymptomatic HIV-2 carriers and 11 AIDS patients from Bissau, Guinea-Bissau were included in a cross-sectional study in which HIV-2 env V3 sequences, HIV-2 DNA load, and CD4-positive (CD4+) lymphocyte counts were determined. Phylogenetic analyses showed that all investigated subjects carried subtype A HIV-2 variants and that the sequences from AIDS patients and asymptomatic carriers did not form distinct subclusters in the tree. As expected, patients with AIDS had significantly higher median HIV-2 DNA load than did asymptomatic carriers (4.6 vs. 2.0 log10 HIV-2 DNA copies/10(6) CD4+ lymphocytes). Our study indicates that the HIV-2 epidemic in Guinea-Bissau is almost exclusively caused by subtype A HIV-2 variants and that the HIV-2 infections among the asymptomatic carriers and AIDS cases included in the study do not have distinct epidemiologic histories.

Acquired Immunodeficiency Syndrome↗

Lethals in subdivided populations.

The fate of lethal alleles in populations is of interest in evolutionary and conservation biology for several reasons. For instance, lethals may contribute substantially to inbreeding depression. The frequency of lethal alleles depends on population size, but it is not clear how it is affected by population structure. By analysing the case of the infinite island model by numerical approaches and analytical approximations it is shown that, like population size, population structure affects the fate of lethal alleles if dominance levels are low. Inbreeding depression caused by such alleles is also affected by the population structure, whereas the mutation load is only weakly affected. Heterosis also depends on population structure, but it always remains low, of the order of the mutation rate or less. These patterns are compared with those caused by mildly deleterious mutations to give a general picture of the effect of population structure on inbreeding depression, heterosis, and the mutation load.

Alleles↗

Designing a neural network for the constraint optimization of the fitness functions devised based on the load minimization of the genetic code.

Nonrandom patterns in codon assignments are supported by many statistical and biochemical studies in the last two decades. The canonical genetic code is known to be highly efficient in minimizing the effects of mistranslational errors and point mutations, an ability, which in term is designated "load minimization". Prior studies have included many attempts at quantitative estimation of the fraction of randomly generated codes, which in terms of load minimization, score higher than the canonical genetic code. In this study, a neural network, which estimates a highly optimized genetic code in a relatively short period of time has been devised. Several fitness functions were used throughout this text. Meanwhile, we have made use of two cost measure matrices, PAM74-100 and mutation matrix.

Algorithms↗

On the expected relationship between inbreeding, fitness, and extinction.

We assessed the expected relationship between the level and the cost of inbreeding, measured either in terms of fitness, inbreeding depression or probability of extinction. First, we show that the assumption of frequent, slightly deleterious mutations do agree with observations and experiments, on the contrary to the assumption of few, moderately deleterious mutations. For the same inbreeding coefficient, populations can greatly differ in fitness according to the following: (i) population size; larger populations show higher fitness (ii) the history of population size; in a population that recovers after a bottleneck, higher inbreeding can lead to higher fitness and (iii) population demography; population growth rate and carrying capacity determine the relationship between inbreeding and extinction. With regards to the relationship between inbreeding depression and inbreeding coefficient, the population size that minimizes inbreeding depression depends on the level of inbreeding: inbreeding depression can even decrease when population size increases. It is therefore clear that to infer the costs of inbreeding, one must know both the history of inbreeding (e.g. past bottlenecks) and population demography.

Adaptation, Physiological↗

Mutagenesis and human genetic disease: dominant mutation frequencies and a characterization of mutational events in mice and humans.

Dominant deleterious traits are generally regarded to be the most relevant genetic endpoints when the expected increased mutational load of genetic diseases associated with exposure to mutagenic agents is considered in humans. At present, human risk estimation procedures rely on results from laboratory mammal germ-cell mutagenicity experiments as well as on data from human epidemiology and medical genetics. A comparison of the mouse and human data indicates that a small subset of loci, which when mutated result in a dominant phenotype, is contributing disproportionately to the observed mutation frequency. This is likely due to the fact that those loci with an observed high mutation frequency are inherently unstable, the function of such loci is critical, and/or the wild-type phenotype requires two copies of the normal gene (haploinsufficiency). The locus specificity of the observed spontaneous and induced mutation frequencies implies that efforts must be made to closely match those genetic endpoints screened in the mouse with the human genetic endpoints considered relevant in estimating the genetic risk after exposure to mutagenic agents. The contributions to our understanding of the organization, function, and stability of the mouse and human genomes provided by molecular biological techniques should make compliance with this restriction feasible.

Animals↗

A common genetic factor explains the association between psychopathic personality and antisocial behavior.

BACKGROUND: Both psychopathic personality traits and antisocial behavior are influenced by genetic as well as environmental factors. However, little is known about how genetic and environmental factors contribute to the associations between the psychopathic personality traits and antisocial behavior. METHOD: Data were drawn from a longitudinal population-based twin sample including all 1480 twin pairs born in Sweden between May 1985 and December 1986. The twins responded to mailed self-report questionnaires at two occasions: 1999 (twins 13-14 years old), and 2002 (twins 16-17 years old). RESULTS: A common genetic factor loaded substantially on both psychopathic personality traits and antisocial behavior, whereas a common shared environmental factor loaded exclusively on antisocial behavior. CONCLUSIONS: The genetic overlap between psychopathic personality traits and antisocial behavior may reflect a genetic vulnerability to externalizing psychopathology. The finding of shared environmental influences only in antisocial behavior suggests an etiological distinction between psychopathic personality dimensions and antisocial behavior. Knowledge about temperamental correlates to antisocial behavior is important for identification of susceptibility genes, as well as for possible prevention through identification of at-risk children early in life.

Adolescent↗

Proteinuria in the bovine serum albumin loaded rats is aggravated by genetically determined hypertension.

The effects of bovine serum albumin (BSA) loading on urinary protein excretion rate (PU) were investigated in spontaneously hypertensive (Okamoto) and normotensive Wistar-Kyoto and Wistar rats. Baseline PU was greater in spontaneously hypertensive rats of both sexes than in the corresponding normotensive groups. Male rats excreted more protein than females. A significant direct correlation could be demonstrated between blood pressure and PU induced by BSA. Glomerular epithelial cell foot process fusion rate was significantly greater in female spontaneously hypertensive rats than in all other groups and correlated with PU increase, especially in female spontaneously hypertensive rats. This study therefore indicates that hypertension which is acquired independently of the glomerular lesion induced by BSA administration accentuates proteinuria in this model of disease.

Animals↗

Obsessive compulsive disorder among idiopathic focal dystonia patients: an epidemiological and family study.

BACKGROUND: A disturbed function of striato-thalamo-cortical circuitry is hypothesized to underlie idiopathic focal dystonia (IFD) and obsessive compulsive disorder (OCD), two severe and disabling neurologic and psychiatric disorders. Previous studies on small samples showed either higher obsessionality scores or higher frequency of OCD in dystonic patients than in normal control subjects. The aim of this study was to evaluate the frequency and familial loading of OCD in a population of patients with IFD. METHODS: We evaluated OCD diagnosis and family history in 76 patients affected by IFD. RESULTS: Of our subjects 19.7% satisfied DSM-IV criteria for OCD diagnosis and had a family morbidity risk for OCD of 13.8%, significantly higher than that found in the general population. CONCLUSIONS: Our results support the hypothesis of a common pathologic background for OCD and IFD, at least in a subgroup of IFD, indicating basal ganglia dysfunction.

Adult↗

Mutation-selection balance: ancestry, load, and maximum principle.

We analyze the equilibrium behavior of deterministic haploid mutation-selection models. To this end, both the forward and the time-reversed evolution processes are considered. The stationary state of the latter is called the ancestral distribution, which turns out as a key for the study of mutation-selection balance. We find that the ancestral genotype frequencies determine the sensitivity of the equilibrium mean fitness to changes in the corresponding fitness values and discuss implications for the evolution of mutational robustness. We further show that the difference between the ancestral and the population mean fitness, termed mutational loss, provides a measure for the sensitivity of the equilibrium mean fitness to changes in the mutation rate. The interrelation of the loss and the mutation load is discussed. For a class of models in which the number of mutations in an individual is taken as the trait value, and fitness is a function of the trait, we use the ancestor formulation to derive a simple maximum principle, from which the mean and variance of fitness and the trait may be derived; the results are exact for a number of limiting cases, and otherwise yield approximations which are accurate for a wide range of parameters. These results are applied to threshold phenomena caused by the interplay of selection and mutation (known as error thresholds). They lead to a clarification of concepts, as well as criteria for the existence of error thresholds.

Animals↗

Salt appetite, body sodium, handling of a NaCl load, renin, and aldosterone in genetically and spontaneously hypertensive rats.

Salt appetite, body sodium, handling of a NaCl load, plasma renin activity (PRA), and plasma aldosterone concentration (PAC) were compared in New Zealand genetically hypertensive (GH) and Japanese spontaneously hypertensive rats (SHRs) and their respective normotensive controls [normal Wistar (N) and Wistar-Kyoto (WKY) rats]. Salt appetite was increased in SHRs compared with GH, N, and WKY rats when rats were on salt-free chow and given a choice of distilled water and NaCl solution. Body sodium, measured by whole body counting, was higher in SHRs than in the other strains but did not differ among GH, N, and WKY rats. The rate of excretion of a NaCl load was not increased in GH rats and was slightly increased in SHRs only when on a very low NaCl intake. PRA and PAC (radioimmunoassay) were lower in SHRs than in GH, N, and WKY rats. PAC had a significant negative correlation with body sodium across the four strains. There is no evidence of any abnormality in sodium regulation in GH rats. However, the SHRs have an increased salt appetite and an increased body sodium even when sodium intake is limited; PRA and PAC appear to have responded appropriately to the increased body sodium.

Aldosterone↗

Modes of reproduction and the accumulation of deleterious mutations with multiplicative fitness effects.

Mutational load depends not only on the number and nature of mutations but also on the reproductive mode. Traditionally, only a few specific reproductive modes are considered in the search of explanations for the maintenance of sex. There are, however, many alternatives. Including these may give radically different conclusions. The theory on deterministic deleterious mutations states that in large populations segregation and recombination may lead to a lower load of deleterious mutations, provided that there are synergistic interactions. Empirical research suggests that effects of deleterious mutations are often multiplicative. Such situations have largely been ignored in the literature, since recombination and segregation have no effect on mutation load in the absence of epistasis. However, this is true only when clonal reproduction and sexual reproduction with equal male and female ploidy are considered. We consider several alternative reproductive modes that are all known to occur in insects: arrhenotoky, paternal genome elimination, apomictic thelytoky, and automictic thelytoky with different cytological mechanisms to restore diploidy. We give a method that is based on probability-generating functions, which provides analytical and numerical results on the distributions of deleterious mutations. Using this, we show that segregation and recombination do make a difference. Furthermore, we prove that a modified form of Haldane's principle holds more generally for thelytokous reproduction. We discuss the implications of our results for evolutionary transitions between different reproductive modes in insects. Since the strength of Muller's ratchet is reduced considerably for several forms of automictic thelytoky, many of our results are expected to be also valid for initially small populations.

Data Interpretation, Statistical↗

Influence of the genetic background and parasite load of mice on the immune response developed against nymphs of Ixodes ricinus.

The immune response of BALB/c (H-2d), DBA (H-2d), C57BL/6 (H-2b), C3H (H-2k), CBA (H-2k), SJL (H-2s), and FVB (H-2q) mice infested once with 15 nymphs of Ixodes ricinus is polarized toward Th2 as suggested by cytokines produced by lymph node cells stimulated with concanavalin A. The parasite load does not influence the polarization of the immune response as observed in BALB/c mice, which developed a Th2 response when infested with 5 or 45 nymphs. As assessed by attachment and weights of engorged nymphs, no resistance was acquired by BALB/c, C57BL/6, or C3H mice undergoing three successive infestations. However, these mice produced a gradual increase in IgE.

Animals↗