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Mechanisms of formation of micronuclei in somatic cells of tailless amphibians normally and under the effect of N-nitroso-N-methylcarbamide.

We studied the relationship between mitotic regimen and incidence of micronuclei in liver and bone marrow cells of tailless amphibians under the effect of genotoxic carcinogen N-nitroso-N-methylcarbamide. Micronuclei appeared in amphibian somatic cells normally and after mutagenic exposure as a result of abnormal mitosis and of "interphase chromatin diminution". This latter variant was most incident in lymphoid cells, presenting as "caudate nuclei", which should be taken into consideration when interpreting findings of micronucleus analysis.

Animals↗

Challenges of Using Circulating Tumour DNA: Insights from Advanced Prostate Cancer.

Precision oncology relies on integrating tumour fraction, variant allele frequency, clonal haematopoiesis of indeterminate potential assessment, pathogenicity, and clinical context into next-generation sequencing interpretation, enabling biologically informed and clinically meaningful treatment decisions while reducing the risk of overinterpreting nontumour or nonactionable genomic alterations.

Editorial↗

Genes and the parsing of cognitive processes.

Now that the human genome has been sequenced there exists the possibility of identifying specific genes that affect human cognition. In this article, recent studies that have found associations between common gene variants and specific cognitive processes are reviewed. Several principles for evaluating this new field are also discussed. The interpretation of results is far from simple because a single gene can affect multiple processes, multiple genes can impact on a single process, and multiple cognitive processes are intercorrelated. In general, functional neuroimaging has been a more sensitive assay of cognitive processing than behavioral measures used alone, although there are important caveats regarding its use. Replicated findings so far involve associations between a COMT polymorphism and prefrontally-based executive functions and neurophysiology, and a BDNF polymorphism and medial-temporal-cortex based declarative memory processes. Implicit in this review is a concern that many of the cognitive paradigms used evolved for purposes well outside those described here. As such it may be necessary to view cognition in novel ways, based on constraints imposed by genomics and neurobiology, in order to increase the effect size of genotypic influences on cognition.

Animals↗

The early years with Hal Anger.

In the course of your day, when you interpret or count a radioimmunoassay or a sample of blood or body fluid, you will probably use a variant of the well counter invented by Hal O. Anger in the early 1950s. If you obtain or read a patient image, it probably came from some type of his gamma camera. If yoy do or see a single photon emission computed tomography study, Hal Anger showed the feasibility. Even if you are working with positrons, some of the early imaging work was done by devices Hal Anger invented. This article deals primarily with the years I spent with Hal, 1962 to 1964. I was fortunate to have the opportunity to spend this time with him when he had just completed the development of his 11-in gamma camera, the first multipurpose camera suitable for diverse clinical examinations. In retrospect, it is easy to see why Hal was honored by the Society of Nuclear Medicine as one of its pioneers and why he was the first recipient of the Ben Cassen Prize. However, it was not always clear that Hal's creative road would lead to such deserved distinction. I have tried to portray the beginnings of this journey to the best of my recollections.

History, 20th Century↗

Reappearance of HIV multidrug-resistance in plasma and circulating lymphocytes after reintroduction of antiretroviral therapy.

BACKGROUND: After the discontinuation of antiretroviral therapy in HIV-infected patients with highly resistant virus, the detectability of viral resistance mutations quickly decreases. To which extent this represents a true loss of resistance or rather a detectability phenomenon remains unclear. OBJECTIVES: To monitor virologic response and resistance pattern during a non-strategic treatment interruption in the presence of highly drug-resistant viral strains. STUDY DESIGN: We performed serial genotypic resistance analyses on viral DNA isolated from a patient with a multidrug-resistant human immunodeficiency virus infection who discontinued and later on reintroduced antiretroviral therapy. Sequencing was performed on viral DNA from plasma as well as DNA from circulating leukocytes. RESULTS: While under combination antiretroviral therapy with two nucleosidic reverse transcriptase inhibitors, a non-nucleosidic reverse transcriptase inhibitor and a protease inhibitor, the viral load of the patient was around five logs. Genotypic resistance to all available agents was detected during this time. Antiretroviral therapy was then interrupted, and 14 weeks later an almost complete reversion of the virus to wild type was observed. After introduction of a new antiretroviral therapy regimen, the reappearance of nearly all of the formerly present resistance mutations had to be noted within 6 weeks, including mutations without known relation to any of the drugs in the new regimen. CONCLUSIONS: We obviously observed not the de novo appearance of a complex resistance pattern under just 6 weeks of potent antiretroviral therapy, but a reappearing archival strain of the virus. This finding provides evidence for subdetectable persistence of resistant variants during treatment interruptions. Therefore, resistance analyses from peripheral blood performed in times of treatment interruptions should be interpreted with caution as they may provide incomplete information about the resistance profile soon after reintroduction of therapy.

Adult↗

The receptor binding site of human interleukin-3 defined by mutagenesis and molecular modeling.

Interleukin-3 (IL-3) is a member of the cytokine superfamily that promotes multi-potential hematopoietic cell growth by interacting with a cell surface receptor composed of alpha and beta chains. The newly available three-dimensional structure of a variant of human (h) IL-3 allowed us to evaluate new and existing mutagenesis data and to rationally interpret the structure-function relationship of hIL-3 on a structural basis. The amino acid residues that were identified to be important for hIL-3 activity are grouped into two classes. The first class consists of largely hydrophobic residues required for the structural integrity of the protein, including the residues in IL-3 that are largely conserved among 10 mammalian species. These residues form the core of a scaffold for the second class of more rapidly diverging solvent-exposed residues, likely to be required for interaction with the receptor. Ten important and solvent-exposed residues, Asp21, Gly42, Glu43, Gln45, Asp46, Met49, Arg94, Pro96, Phe113, and Lys116, map to one side of the protein and form a putative binding site for the alpha subunit of the receptor. A model of the IL-3.IL-3 receptor complex based on the human growth hormone (hGH).hGH soluble receptor complex structure suggests that the interface between IL-3 and the IL-3 receptor alpha subunit consists of a cluster of hydrophobic residues flanked by electrostatic interactions. Although the IL-3/IL-3 receptor beta subunit interface cannot be uniquely located due to the lack of sufficient experimental data, several residues of the beta subunit that may interact with Glu22 of IL-3 are proposed. The role of these residues can be tested in future mutagenesis studies to define the interaction between IL-3 and IL-3 receptor beta subunit.

Amino Acid Sequence↗

Excess amino acid polymorphism in mitochondrial DNA: contrasts among genes from Drosophila, mice, and humans.

Recent studies of mitochondrial DNA (mtDNA) variation in mammals and Drosophila have shown an excess of amino acid variation within species (replacement polymorphism) relative to the number of silent and replacement differences fixed between species. To examine further this pattern of nonneutral mtDNA evolution, we present sequence data for the ND3 and ND5 genes from 59 lines of Drosophila melanogaster and 29 lines of D. simulans. Of interest are the frequency spectra of silent and replacement polymorphisms, and potential variation among genes and taxa in the departures from neutral expectations. The Drosophila ND3 and ND5 data show no significant excess of replacement polymorphism using the McDonald-Kreitman test. These data are in contrast to significant departures from neutrality for the ND3 gene in mammals and other genes in Drosophila mtDNA (cytochrome b and ATPase 6). Pooled across genes, however, both Drosophila and human mtDNA show very significant excesses of amino acid polymorphism. Silent polymorphisms at ND5 show a significantly higher variance in frequency than replacement polymorphisms, and the latter show a significant skew toward low frequencies (Tajima's D = -1.954). These patterns are interpreted in light of the nearly neutral theory where mildly deleterious amino acid haplotypes are observed as ephemeral variants within species but do not contribute to divergence. The patterns of polymorphism and divergence at charge-altering amino acid sites are presented for the Drosophila ND5 gene to examine the evolution of functionally distinct mutations. Excess charge-altering polymorphism is observed at the carboxyl terminal and excess charge-altering divergence is detected at the amino terminal. While the mildly deleterious model fits as a net effect in the evolution of nonrecombining mitochondrial genomes, these data suggest that opposing evolutionary pressures may act on different regions of mitochondrial genes and genomes.

Amino Acid Sequence↗

Turnover of the cell wall peptidoglycan during growth of Neisseria gonorrhoeae and Escherichia coli. Relative stability of newly synthesized material.

The peptidoglycan of a number of strains of Neisseria gonorrhoeae and Escherichia coli turned over during exponential growth as monitored by the loss of radioactivity (supplied as [14C]glucosamine) from SDS-insoluble material. However, no turnover of the peptide side chains of E. coli peptidoglycan was observed (monitored by diamino[3H]pimelic acid) even though turnover of glycan material was occurring. Turnover rates of 9 to 15% per generation were recorded for all the N. gonorrhoeae strains studied except for the autolytic variant RD5 which showed a higher rate of turnover (20 to 26% per generation). In contrast to previous interpretations, these rates of turnover were not affected by benzylpenicillin, unless sufficient antibiotic was present to affect culture turbidity, when lysis occurred. Examination of the fragments (monomer, dimer and their O-acetylated counterparts, and oligomers) produced by Chalaropsis B muramidase treatment of prelabelled peptidoglycan revealed that no fraction of the peptidoglycan was immune from turnover. However, peptidoglycan pulse-labelled for only 10 min did not show immediate turnover. The lapse of time before turnover commenced was strain dependent, with a maximum value of 1.5 generations. This work confirms that the peptidoglycan of N. gonorrhoeae undergoes a period of maturation and suggests that only mature peptidoglycan turns over.

Bacterial Proteins↗

Analysis of missense variation in human BRCA1 in the context of interspecific sequence variation.

INTRODUCTION: Interpretation of results from mutation screening of tumour suppressor genes known to harbour high risk susceptibility mutations, such as APC, BRCA1, BRCA2, MLH1, MSH2, TP53, and PTEN, is becoming an increasingly important part of clinical practice. Interpretation of truncating mutations, gene rearrangements, and obvious splice junction mutations, is generally straightforward. However, classification of missense variants often presents a difficult problem. From a series of 20,000 full sequence tests of BRCA1 carried out at Myriad Genetic Laboratories, a total of 314 different missense changes and eight in-frame deletions were observed. Before this study, only 21 of these missense changes were classified as deleterious or suspected deleterious and 14 as neutral or of little clinical significance. METHODS: We have used a combination of a multiple sequence alignment of orthologous BRCA1 sequences and a measure of the chemical difference between the amino acids present at individual residues in the sequence alignment to classify missense variants and in-frame deletions detected during mutation screening of BRCA1. RESULTS: In the present analysis we were able to classify an additional 50 missense variants and two in-frame deletions as probably deleterious and 92 missense variants as probably neutral. Thus we have tentatively classified about 50% of the unclassified missense variants observed during clinical testing of BRCA1. DISCUSSION: An internal test of the analysis is consistent with our classification of the variants designated probably deleterious; however, we must stress that this classification is tentative and does not have sufficient independent confirmation to serve as a clinically applicable stand alone method.

Amino Acid Sequence↗

Leiomyosarcoma versus myofibrosarcoma: observations and terminology.

Two spindle cell sarcomas, which showed similarities in light microscopic histology and immunostaining and were diagnosed as leiomyosarcomas by these criteria, were compared ultrastructurally to show the value of electron microscopy in subtyping these neoplasms. Both were subcutaneous, case 1 occurring in the nasolabial fold and case 2 in the upper calf. Both consisted of fascicles of spindle cells, and both stained positively for vimentin and alpha-smooth muscle actin; only case 2 stained additionally for desmin. Case 1 showed strong and case 2 weak or negative staining for fibronectin. By electron microscopy, case 1 contained prominent rough endoplasmic reticulum, peripheral fine filaments with focal densities, and fibronexus junctions. By contrast, case 2 was characterized by an external lamina and well-developed bundles of fine filaments with focal densities. Case 2 was considered a typical leiomyosarcoma, and case 1 was interpreted as showing myofibroblastic differentiation. The nomenclature for these myofibroblastic tumors is discussed, and myofibrosarcoma and leiomyosarcoma, myofibroblastic variant are suggested as suitable terms.

Adult↗

How to interpret a healthcare economic analysis.

PURPOSE: The purpose of the review is to present guidelines to help the clinician to interpret healthcare economic analyses and review pertinent recent analysis in the ophthalmic literature. RECENT FINDINGS: There are four variants of healthcare economic analyses: (1) cost-minimization analysis; (2) cost-benefit analysis; (3) cost-effectiveness analysis and (4) cost-utility analysis. Cost-utility utility analysis has assumed an increasingly important role in healthcare, with increasing number of analyses occurring in the peer-reviewed ophthalmic literature. These include cost-utility analyses of cataract surgery in the first and second eyes, amblyopia treatment, and cost-utility analyses encompassing the vitreoretinal interventions of the following: (1) laser photocoagulation for exudative macular degeneration; (2) laser treatment for diabetic retinopathy; (3) laser photocoagulation for branch retinal vein obstruction; (4) diabetic vitrectomy; (5) treatment of proliferative retinopathy of prematurity and (6) treatment of retinal detachment associated with proliferative vitreoretinopathy. As an increasing number of cost-utility analyses become available they will provide the information system for the practice of value-based medicine, or medicine based upon the patient-perceived value conferred by interventions. SUMMARY: Increasing numbers of cost-utility analysis in the ophthalmic literature suggest that ophthalmic interventions, including vitreoretinal interventions, are cost effective. Cost-utility analysis is a major tool in value-based medicine, the practice of medicine based upon the patient-perceived value conferred by healthcare interventions.

Cost-Benefit Analysis↗

Genetic and genomic approaches to studying stature and pubertal timing.

Stature and puberal timing are two complex genetic traits that vary widely within a population due to a combination of genetic and environmental factors. Rare mutations explain a fraction of severe short stature, but rare mutations are less likely to explain most of idiopathic short stature or most of the population variation in height or the timing of puberty. In this review, we discuss how association and linkage studies, in conjunction with new genomic technologies, will allow researchers to survey genes for the variants that underlie these traits. For both association and linkage studies to be successful, large samples and careful interpretation are critical.

Body Height↗

Common genetic variation at the endothelial nitric oxide synthase locus and relations to brachial artery vasodilator function in the community.

BACKGROUND: Sequence variants at the endothelial nitric oxide synthase (NOS3) locus have been associated with endothelial function measures, but replication has been limited. METHODS AND RESULTS: In reference pedigrees, we characterized linkage disequilibrium structure at the NOS3 locus using 33 common single nucleotide polymorphisms (SNPs). Eighteen SNPs that capture underlying common variation were genotyped in unrelated Framingham Heart Study participants (49.5% women; mean age, 62 years) with measured brachial artery flow-mediated dilation (n=1446) or hyperemic flow velocity (n=1043). Within 3 defined blocks of strong linkage disequilibrium that spanned NOS3, 11 SNPs captured >80% of common haplotypic variation. Among men, there were nominally significant associations between 8 NOS3 SNPs (minimum P=0.002) and between haplotypes (minimum P=0.002) and either flow-mediated dilation or hyperemic flow velocity. In women, we did not observe significant associations between NOS3 SNPs or haplotypes and endothelial function measures. To correct for multiple testing, we constructed 1000 bootstrapped null data sets and found that empirical probability values exceeded 0.05 for both phenotypes. CONCLUSIONS: A parsimonious set of SNPs captures common genetic variation at the NOS3 locus. A conservative interpretation of our results is that, accounting for multiple testing, we did not observe statistically significant relations between NOS3 sequence variants and endothelial function measures in either sex. The nominal associations of select NOS3 variants with endothelial function in men (unadjusted for multiple testing) should be viewed as hypothesis-generating observations and may merit testing in other cohorts and experimental designs.

Aged↗

The specificity of the interaction between the agretope of an antigen and an Ia-molecule can depend on the T cell clonotype.

A series of T cell clones was developed from (B10 x B10.BR)F1 mice immunized with the isolated A chain of pig insulin. The T cell clones show considerable diversity as defined by their distinct reactivities to pig, beef, sheep and horse insulins in combination with the same syngeneic Ab alpha Ak beta molecules. These species variants of insulin differ from each other only in amino acid residues in position A8, A9 or A10 within the so-called A chain loop and responsiveness of mice to these variants is under Ir gene control. A detailed analysis of the stimulatory capacity of various insulin/Ia combinations including inhibition experiments with anti-Ia- and -L3T4 antibodies led to the following interpretation: the amino acid residues A8-A10 are involved in the interaction of the insulin A chain with the Ia molecules. This region can, therefore, be regarded as part of the agretope. Structural variations within this region can modify the stimulatory potency of the insulin variants. However, whether a particular amino acid substitution results in an enhancement or a reduction of the response depends on the fine specificity of the T cell clone involved. Thus, an interaction of Ia molecules with antigen cannot solely account for the functional specificity of an agretope, rather this also depends on the structure of the particular T cell receptor that participates in recognition.

Animals↗

Transmission and prevalence of HIV resistance among treatment-naive subjects.

Recent reports demonstrate the transmission of drug-resistant HIV-1 variants to newly infected individuals, although estimates of the prevalence of drug resistance among populations from different geographic regions are highly varied. The interpretation and comparison of available study results are confounded by the lack of consensus regarding the nomenclature and reporting of antiviral resistance. This report re-evaluates previously presented and published data using uniform criteria for genotypic and phenotypic drug resistance. Treatment-inexperienced and recently or chronically infected populations are reviewed. The prevalence of transmitted drug resistance ranges from 1% to 11% among recently infected persons using these criteria. Programmes to monitor and characterize drug resistance among newly infected persons and their source partners are essential to evaluate the selection processes that influence the transmission of certain genetic variants of HIV. Temporal trends in the prevalence of transmitted drug resistance among diverse populations are necessary to evaluate the potential need for selective and generalized drug resistance screening programmes among newly infected, treatment-naive patients.

Anti-HIV Agents↗

Estimating the effect of human base excision repair protein variants on the repair of oxidative DNA base damage.

Epidemiologic studies have revealed a complex association between human genetic variance and cancer risk. Quantitative biological modeling based on experimental data can play a critical role in interpreting the effect of genetic variation on biochemical pathways relevant to cancer development and progression. Defects in human DNA base excision repair (BER) proteins can reduce cellular tolerance to oxidative DNA base damage caused by endogenous and exogenous sources, such as exposure to toxins and ionizing radiation. If not repaired, DNA base damage leads to cell dysfunction and mutagenesis, consequently leading to cancer, disease, and aging. Population screens have identified numerous single-nucleotide polymorphism variants in many BER proteins and some have been purified and found to exhibit mild kinetic defects. Epidemiologic studies have led to conflicting conclusions on the association between single-nucleotide polymorphism variants in BER proteins and cancer risk. Using experimental data for cellular concentration and the kinetics of normal and variant BER proteins, we apply a previously developed and tested human BER pathway model to (i) estimate the effect of mild variants on BER of abasic sites and 8-oxoguanine, a prominent oxidative DNA base modification, (ii) identify ranges of variation associated with substantial BER capacity loss, and (iii) reveal nonintuitive consequences of multiple simultaneous variants. Our findings support previous work suggesting that mild BER variants have a minimal effect on pathway capacity whereas more severe defects and simultaneous variation in several BER proteins can lead to inefficient repair and potentially deleterious consequences of cellular damage.

DNA Damage↗

Hepatocellular carcinoma as a complex polygenic disease. Interpretive analysis of recent developments on genetic predisposition.

The different frequency of hepatocellular carcinoma (HCC) in humans at risk suggests a polygenic predisposition. However, detection of genetic variants is difficult in genetically heterogeneous human population. Studies on mouse and rat models identified 7 hepatocarcinogenesis susceptibility (Hcs) and 2 resistance (Hcr) loci in mice, and 7 Hcs and 9 Hcr loci in rats, controlling multiplicity and size of neoplastic liver lesions. Six liver neoplastic nodule remodeling (Lnnr) loci control number and volume of re-differentiating lesions in rat. A Hcs locus, with high phenotypic effects, and various epistatic gene-gene interactions were identified in rats, suggesting a genetic model of predisposition to hepatocarcinogenesis with different subset of low-penetrance genes, at play in different subsets of population, and a major locus. This model is in keeping with human HCC epidemiology. Several putative modifier genes in rodents, deregulated in HCC, are located in chromosomal segments syntenic to sites of chromosomal aberrations in humans, suggesting possible location of predisposing loci. Resistance to HCC is associated with lower genomic instability and downregulation of cell cycle key genes in preneoplastic and neoplastic lesions. p16(INK4A) upregulation occurs in susceptible and resistant rat lesions. p16(INK4A)-induced growth restraint was circumvented by Hsp90/Cdc37 chaperons and E2f4 nuclear export by Crm1 in susceptible, but not in resistant rats and human HCCs with better prognosis. Thus, protective mechanisms seem to be modulated by HCC modifiers, and differences in their efficiency influence the susceptibility to hepatocarcinogenesis and probably the prognosis of human HCC.

Animals↗