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Beyond junctions: nonlocal form constraints on motion interpretation.

Because of the aperture problem, local motion measurements must be combined across space. However, not all motions should be combined. Some arise from distinct objects and should be segregated, and some are due to occlusion and should be discounted because they are spurious. Humans have little difficulty ignoring spurious motions at occlusions and correctly integrating object motion, and are evidently making use of form information to do so. There is a large body of theoretical and empirical evidence supporting the importance of form processes involving junctions in the way motion is integrated. To assess the role of more complex form analysis, we manipulated nonlocal form cues that could be varied independently of local junctions. Using variants on diamond and plaid stimuli used in previous studies, we found that manipulations distant from the junctions themselves could cause large changes in motion interpretation. Nonlocal information often overrides the integration decisions that would be expected from local cues. The mechanisms implicated appear to involve surface segmentation, amodal completion, and depth ordering.

Cues↗

MR pitfalls and variants in the extrahepatic abdomen.

Although MR is used increasingly for abdominal imaging, there are many sources of potential diagnostic error. This article provides a review of the interpretive pitfalls, artifacts, and anatomic variations that are encountered most frequently when using MR imaging to evaluate extrahepatic abdominal structures.

Abdomen↗

A classification-based framework for predicting and analyzing gene regulatory response.

BACKGROUND: We have recently introduced a predictive framework for studying gene transcriptional regulation in simpler organisms using a novel supervised learning algorithm called GeneClass. GeneClass is motivated by the hypothesis that in model organisms such as Saccharomyces cerevisiae, we can learn a decision rule for predicting whether a gene is up- or down-regulated in a particular microarray experiment based on the presence of binding site subsequences ("motifs") in the gene's regulatory region and the expression levels of regulators such as transcription factors in the experiment ("parents"). GeneClass formulates the learning task as a classification problem--predicting +1 and -1 labels corresponding to up- and down-regulation beyond the levels of biological and measurement noise in microarray measurements. Using the Adaboost algorithm, GeneClass learns a prediction function in the form of an alternating decision tree, a margin-based generalization of a decision tree. METHODS: In the current work, we introduce a new, robust version of the GeneClass algorithm that increases stability and computational efficiency, yielding a more scalable and reliable predictive model. The improved stability of the prediction tree enables us to introduce a detailed post-processing framework for biological interpretation, including individual and group target gene analysis to reveal condition-specific regulation programs and to suggest signaling pathways. Robust GeneClass uses a novel stabilized variant of boosting that allows a set of correlated features, rather than single features, to be included at nodes of the tree; in this way, biologically important features that are correlated with the single best feature are retained rather than decorrelated and lost in the next round of boosting. Other computational developments include fast matrix computation of the loss function for all features, allowing scalability to large datasets, and the use of abstaining weak rules, which results in a more shallow and interpretable tree. We also show how to incorporate genome-wide protein-DNA binding data from ChIP chip experiments into the GeneClass algorithm, and we use an improved noise model for gene expression data. RESULTS: Using the improved scalability of Robust GeneClass, we present larger scale experiments on a yeast environmental stress dataset, training and testing on all genes and using a comprehensive set of potential regulators. We demonstrate the improved stability of the features in the learned prediction tree, and we show the utility of the post-processing framework by analyzing two groups of genes in yeast--the protein chaperones and a set of putative targets of the Nrg1 and Nrg2 transcription factors--and suggesting novel hypotheses about their transcriptional and post-transcriptional regulation. Detailed results and Robust GeneClass source code is available for download from http://www.cs.columbia.edu/compbio/robust-geneclass.

Algorithms↗

First nationwide full-genome characterisation of human-derived Andes virus in Chile: a retrospective genomic epidemiology study.

BACKGROUND: Andes virus (ANDV) is the only hantavirus known to transmit between humans and causes hantavirus cardiopulmonary syndrome in Chile and Argentina. In Chile, ANDV genomic diversity remains incompletely characterised. This study aimed to characterise the genetic diversity, geographical structure, and molecular signatures of ANDV using human clinical samples collected over a 13-year period (2011-24). METHODS: We conducted a retrospective genomic epidemiology study of ANDV infections in Chile. Clinical samples from patients with confirmed ANDV, collected between March 9, 2011, and June 27, 2024, were analysed and sequenced. Clinical and epidemiological data were obtained from diagnostic laboratories and surveillance programmes. Consensus sequences for the S, M, and L segments were generated, and genetic clustering and divergence were assessed using phylogenetic inference and variant calling. FINDINGS: We analysed clinical samples from 58 infected individuals and identified two major genomic variants of ANDV with distinct geographical distributions, defined by regionally structured patterns of nucleotide and amino acid substitutions across the S, M, and L segments: ANDV Chi-North (central Chile) and ANDV-South (southern Chile). No consistent clustering by clinical severity was observed, and no recurrent non-synonymous substitutions were uniquely associated with severe disease. Substitutions previously associated with person-to-person transmission in outbreaks in Argentina were not consistently observed in Chilean sequences, including in four person-to-person transmission cases. Although some substitutions described in ANDV-like viruses were present in the Chi-North lineage, this lineage remained phylogenetically distinct and geographically restricted to central Chile. INTERPRETATION: To our knowledge, this study provides the first nationwide genomic characterisation of human-derived ANDV in Chile. The identification of geographically structured variants indicates that ANDV diversity in Chile is driven by regional diversification rather than clinical outcome. The absence of consistent amino acid signatures associated with disease severity or person-to-person transmission suggests that these phenotypes are unlikely to be explained by viral genetic variation alone. These findings refine current understanding of ANDV evolution and highlight the need for continued integrated genomic surveillance in endemic regions. FUNDING: Agencia Nacional de Investigación y Desarrollo de Chile and National Institutes of Health.

Humans↗

A- and B-subunit variant distribution in the holoprotein variants of protein toxin abrin: variants of abrins I and III have constant toxic A subunits and variant lectin B subunits.

The cytotoxic lectin abrin shows more than 30 variant forms (R. Hegde, T. K. Maiti, and S. K. Podder, 1991, Anal. Biochem. 194, 101-109). The lectin B subunit as cause for variance in abrins I and III was detected by a combination of one- and two-dimensional electrophoresis and Western blotting. Intriguingly, in abrin I but not in abrin III, association of a single A subunit with the variant B subunits shifts the holoprotein pI toward the alkaline side indicating that the subunit association involves neutralization of few negative charges. The B-subunit variants of abrins I and III overlap in their pI, and the A-subunit association gives the holoproteins a distinctness on isoelectric focusing gel. The results were also confirmed by analyzing the pH titration curves. These differences in the subunit association pattern between abrins I and III are in corroboration with the previously observed differences in the kinetics of protein synthesis inactivation and accessibility of the disulfide bridge to reducing agents in the presence or absence of putative receptor (R. Hegde, A. Karande, and S. K. Podder, 1993 Eur. J. Biochem. 215, 411-419). Further, the genetic origin of variance was confirmed by peptide mapping of the individual subunit variants. Considering a theoretical value of 0.1 to 0.2 pI/charge, a 15-17 charge difference could be predicted between the variants of two extreme pIs. The fact that the A subunits are not shared between the groups was taken to interpret that the protein synthesized as prepro form is processed posttranslationally and the processing takes place only after the disulfide bond formation between A and B subunits. The N-terminal 16 amino acids of A subunits of abrins I and III showed 26% dissimilarity. The A subunits of abrins I and III did not react with concanavalin A, indicating that the heterogeneity in the molecular weight is because of differential processing but not because of glycosylation.

Abrin↗

Impact of genetic polymorphisms in transmembrane carrier-systems on drug and xenobiotic distribution.

Active transport across biological membranes has become a noticeable factor in the absorption, distribution, and excretion of an increasing number of drugs. Different transmembrane transport systems including organic anion transporters (OATP, solute carrier family SLC21A), organic cation transporters (OCT, SLC22A), dipeptide transporters (PEPT, SLC15A), nucleoside transporters (CNT, SLC28A), monocarboxylate carriers (MCT, SLC2A), and members of the large ATP-binding cassette family (ABC, SLC3A) are involved in drug disposition. Genetic polymorphisms in transport proteins frequently occur and contribute to interindividual differences in the efficacy and safety of pharmatherapy. Currently, the most advanced research has been done on P-glycoprotein (ABCB1, SLC3A1.201.1). Knowledge of this transporter indicates that haplotype analysis rather than association with single nucleotide polymorphisms (SNPs) provides the most appropriate interpretation of pharmacogenetic data from drug transporters. This review gives an overview and update on the pharmacological impact of genetic variants in transmembrane transporters.

Animals↗

Bone-marrow derived hematopoietic stem/progenitor cells express multiple isoforms of NADPH oxidase and produce constitutively reactive oxygen species.

Consolidated evidence highlights the importance of redox signalling in poising the balance between self-renewal and differentiation in adult stem cells. The present study shows that human hematopoietic stem/progenitor cells (HSCs) constitutively generate low levels of hydrogen peroxide whose production is inhibited by DPI, apocynin, catalase, and LY294002 and scarcely stimulated by PMA. Moreover, it is shown that HSCs express at the mRNA and protein levels the catalytic subunits of NOX1, NOX2, and NOX4 isoforms of the NADPH oxidase family along with the complete battery of the regulatory subunits p22, p40, p47, p67, rac1, rac2, NOXO1, and NOXA1 as well as the splicing variant NOX2s and that the three NOX isoforms are largely co-expressed in the same HSC. These findings are interpreted in terms of a positive feed-back mechanism of NOXs activation enabling a fine tuning of the ROS level to be possibly used in redox-mediated signalling for growth and differentiation of HSCs.

Acetophenones↗

Molecular epidemiology of a large outbreak of hepatitis B linked to autohaemotherapy.

BACKGROUND: Unregulated skin-piercing procedures potentially facilitate the transmission of bloodborne pathogens. In February, 1998, a patient who had recently received autohaemotherapy at an alternative medicine clinic in the UK was diagnosed with acute hepatitis B. The autohaemotherapy procedure involved the drawing of 1 mL of the patient's blood, mixing with saline, and reinjection of the autologous blood mixture. We investigated the extent of hepatitis B virus (HBV) infection in patients and staff of the clinic. METHODS: Patients who had attended the clinic between January, 1997, and February, 1998, were tested for serological markers of HBV, and for HBV DNA by PCR. HBV DNA was sequenced to assess the relatedness of the virus identified in the cases. We analysed the number and dates of visits with regard to HBV status. FINDINGS: Serum samples were received from 352 patients and four staff members. Serological evidence of exposure to HBV was found in 57 (16%). Of the 33 patients and staff who were positive for hepatitis B surface antigen, 30 (91%) showed complete nucleotide identity in the DNA segments derived from the surface and core genes. Five patients with linked infection had markers of chronic hepatitis B, and one of these was regarded as the likely source of the outbreak. The attack rate was associated with the number of visits (p<0.0001) and the week of visit (p=0.011). Contaminated saline in a repeatedly used bottle was the probable vehicle of transmission. INTERPRETATION: We have described a large community-based outbreak of hepatitis B due to transmission by a single HBV variant. Our findings emphasise the continuing risk of transmission of bloodborne viruses in all health-care settings where skin-piercing procedures are used.

Adult↗

Interaction between gene polymorphisms of nitric oxide synthase and renin-angiotensin system in the progression of membranous glomerulonephritis.

BACKGROUND: The renin-angiotensin system (RAS) and nitric oxide synthase (NOS) play a key role in the progression of primary glomerulonephritis (GN). Although previous studies have examined genetic risk associated with single gene variations, experiments assessing risk conferred by multiple gene variations are still scanty. METHODS: The effect of combination of variant alleles of four genes encoding for three components of the RAS [angiotensin converting enzyme insertion/deletion (ACE I/D), angiotensin II receptor 1 (AT1R 1166A/C), angiotensinogen (AGT M235T)] and for NOS (ecNOS4b/a) on the development and progression of membranous GN (MGN) were evaluated in a longitudinal study comparing 117 patients with serum creatinine (s-Cr) <1.5 mg/dl at renal biopsy and follow-up > or = 5 years (Kaplan-Meier and Cox multivariate analysis). The control group consisted of DNA from 171 organ donors. RESULTS: We found no relationship between single or combined variations of the four gene polymorphisms and development of MGN. Among single gene variations, there were no independent genetic risk factors for the progression of renal disease, after adjustment for age, sex, hypertension, proteinuria, s-Cr, chronicity and activity index. However, double variation coincidences such as the combination of the allele a of ecNOS4b/a and both the allele D of ACE I/D (chi(2) =4.80, P = 0.028; HR = 1.97, 95% CI 0.98-3.96) and the allele T of AGT (M235T) (chi(2) = 5.09, P = 0.024; HR = 2.84, 95% CI 1.39-5.82) exerted an additional effect that was higher than that of the single gene variations. CONCLUSION: This study is the first to demonstrate a role for an interaction between simultaneous variations of genes encoding for NOS and components of RAS in the progression of MGN. Interactions between various polymorphisms may explain conflicting results obtained in previous studies that examined single gene variations, since the effect of a single locus variation may be influenced by the simultaneous presence of other variant alleles in polygenic diseases such as primary GN. However, the small sample sizes and possible multiple interactions limited the interpretation of the current findings, which may represent true biological interaction or simply statistical interactions or spurious results due to the small sample sizes.

Adult↗

Mucinous tumors of the ovary: a clinicopathologic analysis of 75 borderline tumors (of intestinal type) and carcinomas.

With the exception of benign cystadenomas, mucinous ovarian tumors are rare and heterogeneous neoplasms. They have been classified as either borderline tumors or carcinomas for almost 30 years. Subsequently, the borderline tumors have been subclassified into endocervical-like and intestinal types. The diagnostic criteria for distinguishing borderline tumors of the intestinal type from mucinous carcinomas have varied, making difficult the interpretation of prognostic information. More recently, a further subdivision of the former tumors into forms with only epithelial atypia and variants with focal intraepithelial carcinoma has been proposed. Consequently, in this study of 41 mucinous borderline tumors of intestinal type and 34 mucinous carcinomas, the former were also subdivided into 30 cases with mild to moderate atypia only and 11 with areas of intraepithelial carcinoma. All 30 purely borderline tumors were stage I tumors, and all 15 with follow-up information (including one case with microinvasion) were clinically benign. All 11 mucinous borderline tumors that had foci of intraepithelial carcinoma were also stage I neoplasms, and none of the eight patients with follow-up data (including one with microinvasive carcinoma) recurred. Thirty-four invasive carcinomas were subclassified into 15 expansile and 19 infiltrative subtypes. All 15 carcinomas with only expansile invasion were stage I; none of the 11 with follow-up data recurred. Three of nine patients with stage I infiltrative carcinomas with follow-up information had a fatal recurrence. Eight of the remaining 10 infiltrative carcinomas had extended beyond the ovary at the time of diagnosis (stages II and III); of the six patients with follow-up data, four died of tumor and two were alive with disease. In stage I carcinomas nuclear grade and tumor rupture correlated with unfavorable prognosis, but less than infiltrative invasion. However, all three fatal tumors were infiltrative carcinomas that had ruptured, and two contained grade 3 malignant nuclei. Combination of infiltrative invasion, high nuclear grade, and tumor rupture is a strong predictor of recurrence for stage I mucinous ovarian tumors. Among the 19 infiltrative tumors, 13 contained foci of anaplastic carcinoma. Of the seven patients with stage I tumors and follow-up data, only one patient whose tumor had ruptured intraoperatively had a fatal recurrence. The presence of anaplastic components in stage Ia (intact) carcinomas did not have an adverse effect in their outcome, even when the undifferentiated carcinomatous elements appeared in the form of mural nodules.

Adenocarcinoma, Mucinous↗

False positive liver scan due to a thin left hepatic lobe.

A young man with pectus excavatum and Gilbert's syndrome was found to have an abnormal hepatic photoscan, repeatedly interpreted as showing a mass lesion in the left lobe. Although his habitus suggested that it was a normal anatomic variant, numerous diagnostic procedures did not convincingly exclude disease of the liver. Peritoneoscopy confirmed that the left lobe was thin but otherwise normal. We review the causes of false positive liver scans.

Adult↗

Scalable Deep Learning of Histology Images Reveals Genetic and Phenotypic Determinants of Adipocyte Hypertrophy.

BACKGROUND: White adipose tissue dysfunction has emerged as a critical factor in cardiometabolic disease development, yet the cellular microstructure and genetic architecture of adipocyte morphology remain poorly explored. METHODS: We introduce Adipocyte U-Net 2.0, an advanced deep learning method for the semantic segmentation of adipose tissue histology, enabling analysis of over 27 million adipocytes from 2,667 individuals. FINDINGS: Our approach revealed that adipocyte hypertrophy associates with metabolic dysfunction, including increased fasting glucose, glycated hemoglobin, leptin, and triglycerides, with decreased adiponectin and HDL cholesterol levels. Through the largest genome-wide association study of adipocyte size to date (NSubcutaneous = 2,066, NVisceral = 1,878), we identified four genome-wide significant loci: two in sex-combined analysis (rs73184721 in NAALADL2 and rs200047724 in NRXN3) and two female-specific variants (rs140503338 and rs11656704 in ULK2). Notably, these genetic associations showed congruent relationships with cardiometabolic traits, suggesting shared biological mechanisms. INTERPRETATION: Our findings demonstrate the utility of deep learning for adipocyte phenotyping at scale and provide novel insights into the genetic basis of adipocyte morphology and its relationship to metabolic disease.

Journal Article↗

A shape-space-based approach to tracking myocardial borders and quantifying regional left-ventricular function applied in echocardiography.

This paper presents a new semi-automatic method for quantifying regional heart function from two-dimensional echocardiography. In the approach, we first track the endocardial and epicardial boundaries using a new variant of the dynamic snake approach. The tracked borders are then decomposed into clinically meaningful regional parameters, using a novel interpretational shape-space motivated by the 16-segment model used in clinical practice for qualitative assessment of heart function. We show how a quantitative and automatic scoring scheme for the endocardial excursion and myocardial thickening can be derived from this. Results illustrating our approach on apical long-axis two-chamber-view data from a patient with a myocardial infarct in the apical anterior/inferior region of the heart are presented. In a case study (five patients, nine data sets) the performance of the tracking and interpretation techniques are compared with manual delineations of borders using a number of quantitative measures of regional comparison.

Algorithms↗

Involvement of the amino-terminal beta-hairpin of the Aspergillus ribotoxins on the interaction with membranes and nonspecific ribonuclease activity.

Ribotoxins are a family of potent cytotoxic proteins from Aspergillus whose members display a high sequence identity (85% for about 150 amino acid residues). The three-dimensional structures of two of these proteins, alpha-sarcin and restrictocin, are known. They interact with phospholipid bilayers, according to their ability to enter cells, and cleave a specific phosphodiester bond in the large subunit of ribosome thus inhibiting protein biosynthesis. Two nonconservative sequence changes between these proteins are located at the amino-terminal beta-hairpin of alpha-sarcin, a characteristic structure that is absent in other nontoxic structurally related microbial RNases. These two residues of alpha-sarcin, Lys 11 and Thr 20, have been substituted with the equivalent amino acids in restrictocin. The single mutants (K11L and T20D) and the corresponding K11L/T20D double mutant have been produced in Escherichia coli and purified to homogeneity. The spectroscopic characterization of the purified proteins reveals that the overall native structure is preserved. The ribonuclease and lipid-perturbing activities of the three mutants and restrictocin have been evaluated and compared with those of alpha-sarcin. These proteins exhibit the same ability to specifically inactivate ribosomes, although they show different activity against nonspecific substrate analogs such as poly(A). The mutant variant K11L and restrictocin display a lower phospholipid-interacting ability correlated with a decreased cytotoxicity. The results obtained are interpreted in terms of the involvement of the amino-terminal beta-hairpin in the interaction with both membranes and polyadenylic acid.

Allergens↗

Medical applications of array CGH and the transformation of clinical cytogenetics.

Microarray-based comparative genomic hybridization (array CGH) merges molecular diagnostics with traditional chromosome analysis and is transforming the field of cytogenetics. Prospective studies of individuals with developmental delay and dysmorphic features have demonstrated that array CGH has the ability to detect any genomic imbalance including deletions, duplications, aneuploidies and amplifications. Detection rates for chromosome abnormalities with array CGH range from 5-17% in individuals with normal results from prior routine cytogenetic testing. In addition, copy number variants (CNVs) were identified in all studies. These CNVs may include large-scale variation and can confound the diagnostic interpretations. Although cytogeneticists will require additional training and laboratories must become appropriately equipped, array CGH holds the promise of being the initial diagnostic tool in the identification of visible and submicroscopic chromosome abnormalities in mental retardation and other developmental disabilities.

Chromosome Aberrations↗

Human genome sequence variation and the search for genes influencing stroke.

BACKGROUND: Technological progress spurred by the Human Genome Project is accelerating the pace of genetic studies of common diseases, including stroke. Stroke clinicians will soon need to interpret increasingly complex genetic studies. SUMMARY OF REVIEW: Linkage analysis and epidemiological association are 2 fundamental methods of identifying gene variants affecting common diseases such as stroke. Combining these methods with advanced molecular genetic techniques, 3 recently published studies have made important contributions to the genetics of common vascular diseases: identification of the location of a gene for stroke on chromosome 5q12 and identification of gene variants that may increase risk of myocardial infarction. Driven by genomic technology, future studies will be increasingly comprehensive and systematic in their assessment of the contribution of genetics to the clinical course of stroke. The scale and complexity of such studies will require large-scale collaboration among stroke physicians, geneticists, and biostatisticians. CONCLUSIONS: Rapid improvements in technology and study design are likely to elucidate the role of inherited genetic variation in complex diseases such as stroke. Understanding the methods of population-based genetic investigation and the patterns of human genome variation will enable stroke physicians to follow these future developments.

Genetic Linkage↗

Genetic testing in chronic pancreatitis.

Genetic changes associated with some forms of chronic pancreatitis have been recently defined. There are three genes that play a role, each with a variety of genotypes and different pathologic mechanisms and clinical correlations. Selection of the appropriate diagnostic tests requires integration of the clinical and family history and the interpretation of results has a significant impact on genetic counseling for the patient and family. The relative significance of some variant alleles is still under investigation as they are common in the population and show low penetrance. Knowledge of the pathophysiology of each abnormal allele could lead the way towards more specific therapeutic options in the future.

Chronic Disease↗