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Co-existence of high levels of a cytochrome b mutation and of a tandem 200 bp duplication in the D-loop of muscle human mitochondrial DNA.

Previous studies have suggested that some patients with large-scale mitochondrial DNA (mtDNA) deletions also presented a heteroplasmic 260 bp tandem duplication in the mtDNA D-loop region. Such duplications were observed not only in patients with mitochondrial pathology but also in aged subjects. However, the percentage of duplicated mtDNA did not exceed a few per cent of the total mtDNA, except in one example where it reached 30%. We report here another type of 200 bp duplication in the mtDNA D-loop region that, instead of being associated with a large-scale deletion, is correlated to the presence of a point mutation in the cytochrome b gene. The 200 bp duplication concerned up to 95% of the total mtDNA of some muscle mitochondria and was absent from the patient lymphocyte DNA. The percentages of the 200 bp duplication and that of the cytochrome b mutation were relatively close in whole muscle as well as in single muscle fibres, suggesting a correlation between the mutation and the duplication. This duplication could also be detected by PCR in two other patients with mitochondrial disorders but without known deletion or mtDNA mutation. These data suggest that the accumulation of these small duplications in the mtDNA D-loop could be indicative of the presence of other defects of the mtDNA which would damage the respiratory chain function. These deficiencies would induce the generation of small duplications in the D-loop.

Aged↗

Effects of duplicate and screening isolates on surveillance of community and hospital antibiotic resistance.

OBJECTIVES: To investigate common contentions that duplicate and screening isolates consistently show marked excess resistance, and that inclusion of such isolates significantly distorts regional resistance estimates. METHODS: Two Welsh surveys of antibiotic resistance for routine diagnostic isolates were analysed, comprising 309,129 isolates of six common community pathogens and 85,061 ward isolates of 11 common hospital pathogens. Duplicate isolates were defined as isolates from the same patient of the same pathogen with an indistinguishable susceptibility pattern, excluding the initial isolate. Significance was assessed from 95% confidence limits of the difference between resistance estimates. RESULTS: Duplicate isolates comprised approximately 20% of total isolates. For the 195 antibiotic-pathogen combinations investigated, differences in resistance between duplicate and non-duplicate isolates were statistically significant for 93. Only 54 combinations showed significantly increased resistance amongst duplicates, and only 30 of these showed a difference >5%. Comparisons of de-duplicated with un-de-duplicated regional resistance estimates showed significant differences for only 18 of 195 antibiotic-pathogen combinations; none were sufficient to alter judgement on clinical use. Screening isolates produced little disturbance of resistance estimates for Staphylococcus aureus, with the exception of flucloxacillin resistance, where inclusion of screening and duplicate isolates resulted in an increase of 4.4% for both community and hospital resistance estimates. CONCLUSIONS: The contentions were incorrect for these regional surveys. However, the proportion (and so effects) of screening and duplicate isolates may be greater in surveys of units with frequent repetitive sampling practice (burns, ITU, cystic fibrosis), or pathogens subjected to unusually intensive infection control sampling.

Bias↗

Duplications of the alimentary tract. Clinical characteristics, preferred treatment, and associated malformations.

Duplications of the alimentary tract are unusual congenital anomalies that frequently present a diagnostic as well as therapeutic challenge to the surgeon. Because these lesions occur so infrequently, they are often not suspected until encountered intraoperatively. Due to the complicated anatomy and common blood supply shared between the duplication and associated native bowel, appropriate management requires a familiarity with the anatomy and clinical characteristics of this entity. To better define the range of patient characteristics, clinical presentation, and preferred therapy, 20 enteric duplications were reviewed in 17 patients treated at the Children's Hospital Medical Center from 1956 to 1986. Ages of patients ranged from 1 day to 11 years; 60% were less than 2 years of age at initial presentation. Seven duplications in six patients involved alimentary tract structures of foregut derivation (esophagus, stomach, and Parts I and II of duodenum), with a predominance of girls (4 of 6). Most of these patients (67%) presented with moderate to severe acute respiratory distress and a mass present on chest radiograph. In 67% of the patients, the correct diagnosis was established before operation. None required emergency operative intervention. By contrast, 13 duplications in 11 patients were of midgut or hindgut derivation (Parts III and IV of the duodenum, jejunum, ileum, and colon). In this group of patients, 62% of the duplications involved the cecum, 23% involved the ileum, and 16%, the jejunum. Seventy-eight per cent of the patients were boys. The most common symptoms were nausea and vomiting, and the most common sign was a palpable abdominal mass. Emergency operative intervention was required of eight of 11 patients with duplications involving the small bowel and colon. Three patients presented with an intussusception, four with signs and symptoms consistent with acute appendicitis, one with a small bowel obstruction, and two with gastrointestinal hemorrhage due to the presence of ectopic gastric mucosa within the duplication. It was found that two important points must be considered in regard to the management of enteric duplications: (1) the common blood supply shared between the duplication and native bowel must be carefully protected to avoid undue sacrifice of normal bowel, and (2) the presence of heterotopic gastric mucosa in 35% of patients negates internal drainage.(ABSTRACT TRUNCATED AT 400 WORDS)

Abnormalities, Multiple↗

Spontaneous duplications and transpositions of a large chromosome segment in Aspergillus nidulans.

Spontaneous revertants of the leaky adE20 mutant of Aspergillus nidulans were obtained as vigorous sectors emerging from stunted colonies on adenine-free medium. Among the genetically heterogeneous sectors up to about 20% were recognized unequivocally as having an additional chromosome segment bearing adE20; two doses of this leaky allele permitted growth without added adenine. Eleven spontaneous duplication strains of independent origin were analysed genetically. Eight carried the duplicate segment on chromosome IIR; three of these, phenotypically similar to all eight, were analysed in detail and were shown-within the limits of such genetic analysis - to have a large, terminal segment of IR duplicated and attached terminally and uninverted to IIR. One strain had a duplication, possibly tandem, on IR and two had duplications attached elsewhere in the genome. The results suggested a preferential site for the initiation of duplicate segments in this system, as well as a preferential site for their attachment. Agents known to modify instability of a previously studied Dp(IR----IIR) strain affected the frequency of duplications among selected adE20 revertant sectors and/or the genomic locations of duplicated segments. Trypan blue and coumarin, which enhance Dp(IR----IIR) instability in a specific way, and Co2+, which stabilizes Dp(IR----IIR), gave 14, 50 and 62% duplication sectors respectively, among revertants. Duplications selected in the presence of Co2+ had mainly IIR attachments; of those from trypan blue and coumarin, about one-quarter were attached to IIL and none to IIR.

Aspergillus nidulans↗

Partial gene duplication in Duchenne and Becker muscular dystrophies.

Duchenne and Becker muscular dystrophies (DMD and BMD) are progressive muscle wasting disorders with an X linked recessive mode of inheritance. We have surveyed 120 unrelated patients with DMD or BMD for gene duplications using a series of genomic probes from within the DMD/BMD gene locus. In three patients, two with DMD and one with BMD, a duplicated region within the DMD/BMD locus has been shown by Southern blot analysis and transmission densitometry. In two cases a new restriction fragment spanning the duplication junction has been visualised, indicating that the duplications are tandemly arranged. Mendelian inheritance of the duplication has been shown in two families by following the segregation of the duplication junction fragment. The three duplication cases have been analysed with a cDNA probe isolated from the DXS206 region of the DMD/BMD locus and the duplication of a specific set of exons has been found in two cases. This study shows that all three duplications are internal to the gene and confirms that such a duplication can result in a genetic disorder through the disruption of exon organisation.

Child↗

Uncoupling of basal body duplication and cell division in crochu, a mutant of Paramecium hypersensitive to nocodazole.

In Paramecium the development of cell shape and surface pattern during division depends on a precise spatial and temporal pattern of duplication of the ciliary basal bodies which are the organizers of the cortical cytoskeleton. According to their localization, basal bodies will duplicate once, more than once or not all and this duplication is coupled with cell division, as is centrosomal duplication in metazoan cells. We describe here a monogenic nuclear recessive mutation, crochu1 (cro1), resulting in abnormal cell shape and cortical pattern and hypersensitivity to nocodazole. The cytological analysis, by immunofluorescence and electron microscopy, demonstrates that the mutation causes hyper duplication of basal bodies and releases both spatial and temporal control of duplication as basal bodies continue to proliferate in interphase and do so at ectopic locations, beneath the surface and in cortical territories where no duplication occurs in the wild type. However, the abnormal surface organization of cro1 cells does not affect the program of basal body duplication during division. By genetic analysis, no interaction was detected with the sm19 mutation which impairs basal body duplication. In contrast, the cro1 mutation suppresses the nocodazole resistance conferred by nocr1, a mutation in a beta-tubulin gene. This interaction suggests that the primary effect of the mutation bears on microtubule dynamics, whose instability, normally increased during division, would persist throughout the interphase and provide a signal for constitutive basal body duplication.

Animals↗

Everything you wanted to know about radiographic duplication.

If dental radiographs are not duplicated correctly, the resulting duplicates will be of inferior quality. This article discusses the characteristics of a duplicating film, the principle of radiographic duplication, a description of dental duplicators, the selection of optimum duplicating time, a technique of duplicating radiographs, an alternate technique of duplicating radiographs, errors in duplication and their correction, and the maintenance of duplicators.

Copying Processes↗

Clinical spectrum of alimentary tract duplication in children.

UNLABELLED: Alimentary tract duplication is a rare congenital malformations. Sixteen patients admitted to our pediatric ward were enrolled in a ten-year study over the most recent decade. In this paper, we trace their history and retrospectively analyze sex, age, clinical presentations, duplication size and location, presence of ectopic tissue, complications and additional associated anomalies and prognosis. The duplications were cystic in all cases except one tubular duplication of the colon. The cases included duplication of the stomach in 3 cases (19%); ileum in 12 cases (63%); appendix in 1 case (5%); colon in 3 cases (16%); and rectum in 1 case (5%). The most frequent symptom was intermittent vomiting, half of which occurred before 1 year of age. Other symptoms included abdominal pain (50%), abdominal distension (30%), palpable mass (20%), peritoneal sign (13%), bloody stool (6%), fever (6%), and constipation (6%). The outcome was good, except in 2 patients, 1 of whom died of a perforation of the sigmoid colon duplication, and another who was complicated with multiple congenital anomalies. CONCLUSION: In our series, the average time period from the initial onset of symptoms to the diagnosis was 6.9 days, with only one exception (a 17-year-old girl who had habitual constipation). The constipation in the single exception was not a specific presentation, which may have delayed the diagnosis. Pediatric patients with unexplained gastrointestinal symptoms must be diagnosed for the possibility of alimentary tract duplication, even though it rarely occurs. Ultrasonography is helpful in diagnosing a duplication, as it will identify a three-layered image representing the duplication cyst, common wall, and outer bowel wall. These features have proven useful for establishing the correct diagnosis or ruling out alimentary tract duplication where surgery was indicated anyway.

Abdominal Pain↗

Method of duplicating film using the CR system: evaluation of detectability in a simulated nodule.

PURPOSE: Since film processors used for screen-film systems have been decreasing recently, it is becoming difficult to develop duplicating film (Dup film) used conventionally. The purpose of this study was to evaluate the usefulness of the method of duplicating film using a computed radiography (CR) system. MATERIALS AND METHODS: The process of duplicating film using CR is 1) to eliminate energy accumulated on the imaging plate (IP) using white light, 2) to accumulate energy on the whole surface, and 3) to place the original film in piles. 4) After an exposure of white light, duplicated films can be obtained by CR system. In order to evaluate the reproducibiliy of our system, duplicated films were read by experienced observers and receiver operating characteristic (ROC) analysis was carried out. Observers read 50 images with a simulated nodule and 50 images without a simulated nodule. RESULTS: The average Az values were 0.94 for the original films, 0.91 for films duplicated using Dup film, and 0.90 for films duplicated using the CR system. When the two-tailed paired-T test was performed for each result, there were no statistically significant differences at p<0.05. CONCLUSION: The detectability of a simulated nodule for films duplicated using the CR system did not differ from the detectability of films duplicated using Dup film. This method may be a reasonable substitute for the conventional duplication system.

Copying Processes↗

Duplicational mutation at the Duchenne muscular dystrophy locus: its frequency, distribution, origin, and phenotypegenotype correlation.

Partial gene deletion is the major cause of mutation leading to Duchenne muscular dystrophy (DMD) and Becker muscular dystrophy (BMD). Partial gene duplication has also been recognized in a few cases. We have conducted a survey for duplication in 72 unrelated nondeletion patients, analyzed by Southern blot hybridization with clones representing the entire DMD cDNA. With careful quantitative analysis of hybridization band intensity, 10 cases were found to carry a duplication of part of the gene, a frequency of 14% for nondeletion cases (10/72), or 6% for all cases (10/181). The extent of these duplications has been characterized according to the published exon-containing HindIII fragment map, and in six of the 10 duplications a novel restriction fragment that spanned the duplication junction was detected. The resulting translational reading frame of mRNA has been predicted for nine duplications. A shift of the reading frame was predicted in four of the six DMD cases and in one of the two intermediate cases, while the reading frame remained uninterrupted in both BMD cases. RFLP and quantitative Southern blot analyses revealed a grandpaternal origin of duplication in four families and grandmaternal origin in one family. In all five families, the duplication was found to originate from a single X chromosome. Unequal sister-chromatid exchange is proposed to be the mechanism for the formation of these duplications.

Adolescent↗

Detection of tandem duplications and implications for linkage analysis.

The first demonstration of an autosomal dominant human disease caused by segmental trisomy came in 1991 for Charcot-Marie-Tooth disease type 1A (CMT1A). For this disorder, the segmental trisomy is due to a large tandem duplication of 1.5 Mb of DNA located on chromosome 17p11.2-p12. The search for the CMT1A disease gene was misdirected and impeded because some chromosome 17 genetic markers that are linked to CMT1A lie within this duplication. To better understand how such a duplication might affect genetic analyses in the context of disease gene mapping, we studied the effects of marker duplication on transmission probabilities of marker alleles, on linkage analysis of an autosomal dominant disease, and on tests of linkage homogeneity. We demonstrate that the undetected presence of a duplication distorts transmission ratios, hampers fine localization of the disease gene, and increases false evidence of linkage heterogeneity. In addition, we devised a likelihood-based method for detecting the presence of a tandemly duplicated marker when one is suspected. We tested our methods through computer simulations and on CMT1A pedigrees genotyped at several chromosome 17 markers. On the simulated data, our method detected 96% of duplicated markers (with a false-positive rate of 5%). On the CMT1A data our method successfully identified two of three loci that are duplicated (with no false positives). This method could be used to identify duplicated markers in other regions of the genome and could be used to delineate the extent of duplications similar to that involved in CMT1A.

Alleles↗

[Genetic study of the mechanism of tandem duplication formation in conjugational crosses in Escherichia coli K-12].

The formation of heterozygous tandem duplications of the deo operon was studied in conjugational matings HfrH deoA deoB::Tn5 thyA x HfrH deoC deoD thyA. When the HfrH deoC deoD thr::Tn9 car::Tn10 thyA donor strain was used, the thr::Tn9 and car::Tn10 transposon insertions linked to the deo operon were integrated into some duplications. Duplications carrying the recipient thr+ and car+ alleles in the duplicated state were not found among duplications that did not include the thr::Tn9 and car::Tn10 donor markers. These data indicate that heterozygous deo operon duplications are primarily formed directly during the recombinational interaction between chromosomes in the merozygote, but not on the basis of preexisting sister duplications in the recipient strain. Thus, genetic recombination occurring during the process of conjugation in E. coli induces both symmetrical and unequal crossing over. Nevertheless, when the HfrH deoA deoB::Tn5 thr::Tn9 car::Tn10 thyA strain was used as a recipient, a deo operon duplication containing thr::Tn9 and car::Tn10 markers was found in the homozygous state. Consequently, some heterozygous duplications can also be formed on the basis of preexisting sister duplications.

Conjugation, Genetic↗

Partial tandem duplications of the MLL gene are detectable in peripheral blood and bone marrow of nearly all healthy donors.

Partial tandem duplication within the MLL gene has recently been described as a novel genetic alteration in acute myeloid leukemia (AML). It has been associated with trisomy of chromosome 11, but was also identified in AML patients with normal karyotypes. The current study was performed to investigate whether MLL duplications are restricted to AML, and hence whether they may also occur in normal hematopoietic cells. MLL-duplication transcripts were analyzed by nested reverse-transcriptase polymerase chain reaction (RT-PCR) in peripheral blood in two groups of 45 and 20 patients, respectively, as well as in two bone marrow samples from healthy volunteers. Duplications were detected in two independent nested RT-PCR experiments in the peripheral blood samples of 38 of 45 (84%) and 20 of 20 (100%) of the two groups and in both bone marrow samples. On this basis, MLL duplications seem to occur frequently in a subset of cells in normal hematopoiesis. The type of partially duplicated MLL transcripts varied substantially. Three transcripts were identical to those known from AML. In addition, four new transcripts were characterized. Three of these four were in frame and potentially translatable. MLL duplications were also detected by seminested genomic PCR with intron 9- and intron 1-specific primers in 20 of 20 peripheral blood samples studied, indicating that the duplications are genomically fixed at the DNA level and are not an RT-PCR artifact. In summary, MLL duplications are regularly generated by homologous ALU recombination in a small number of hematopoietic cells of most or even all healthy donors. These data suggest that MLL duplications are not implicated in the malignant transformation in AML, or alternatively, that only a few cells will acquire additional oncogenic mutations necessary to establish the malignant phenotype of AML.

Adolescent↗

Gene and Genome Duplication in Spiders.

Gene and genome duplications are widely observed across various organisms, including plants, yeasts, and animals. Numerous studies link gene duplications to the emergence of novel phenotypes, supporting the hypothesis that duplication events are advantageous for adaptive evolution. Whole-genome duplications (WGD) are especially prevalent in plants and have also occurred ancestrally in vertebrates. However, large-scale duplication events in other animal groups remain understudied, partly due to limited genomic resources. Arthropods, particularly insects, represent one of the most diverse animal clades in terms of both species and phenotypic diversity. With increasing availability of chromosome-level genomes, large-scale duplications appear to be rare in insects but are more frequent in chelicerates (e.g. spiders, scorpions, and horseshoe crabs). This makes chelicerates an intriguing group for comparing the mechanisms, fates, and evolutionary impacts of large-scale duplications with those seen in plants and vertebrates. In this review, we synthesize and discuss current research on WGD in spiders and discuss different scenarios for genes following gene duplication events (conservation, nonfunctionalization, subfunctionalization, specialization, drift, neofunctionalization) in the context of experimental studies. We hypothesize if there might be common trajectories after duplication and how these could be tested.

Animals↗

Recent gene duplication and structural remodeling drive rapid lineage-specific gene family evolution in plants.

Gene duplication promotes the generation of novel gene functions and trait diversity across species. Here, we present DupHIST, a computational pipeline that reconstructs the hierarchical timing of gene duplications by integrating maximum likelihood (ML)-based phylogeny with substitution-derived timing via statistical smoothing. Applied to over 4.5 million genes from 114 plant genomes, we successfully inferred duplication histories across nearly 130,000 orthogroups. This large-scale analysis showed that 53.0% of genes arose from recent, lineage-specific duplications, with high concentrations in particular multi-copy families. Among these, NLR, C48, and P450 families exemplified how recently duplicated genes undergo rapid stepwise structural remodeling. This process was primarily driven by small-scale mutations, including insertions, deletions, and frameshifts, that rapidly accumulated shortly after duplication. By resolving the precise duplication order, we reconstructed these architectural changes, thereby enabling both the inference of putative ancestral structures and the exploration of functional diversification arising from structural remodeling. Structure-based clustering further uncovered that recently duplicated, uncharacterized genes retain core domain structures resembling known functional proteins even across phylogenetically distant species lacking sequence homology. Our findings reveal that recent gene duplications and subsequent structural remodeling represent a widespread and lineage-specific force driving rapid diversification of gene families in plants.

Gene duplication history↗

Recent duplication of the common carp (Cyprinus carpio L.) genome as revealed by analyses of microsatellite loci.

Genome duplications may have played a role in the early stages of vertebrate evolution, near the time of divergence of the lamprey lineage. Additional genome duplication, specifically in ray-finned fish, may have occurred before the divergence of the teleosts. The common carp (Cyprinus carpio) has been considered tetraploid because of its chromosome number (2n = 100) and its high DNA content. We studied variation using 59 microsatellite primer pairs to better understand the ploidy level of the common carp. Based on the number of PCR amplicons per individual, about 60% of these primer pairs are estimated to amplify duplicates. Segregation patterns in families suggested a partially duplicated genome structure and disomic inheritance. This could suggest that the common carp is tetraploid and that polyploidy occurred by hybridization (allotetraploidy). From sequences of microsatellite flanking regions, we estimated the difference per base between pairs of alleles and between pairs of paralogs. The distribution of differences between paralogs had two distinct modes suggesting one whole-genome duplication and a more recent wave of segmental duplications. The genome duplication was estimated to have occurred about 12 MYA, with the segmental duplications occurring between 2.3 and 6.8 MYA. At 12 MYA, this would be one of the most recent genome duplications among vertebrates. Phylogenetic analysis of several cyprinid species suggests an evolutionary model for this tetraploidization, with a role for polyploidization in speciation and diversification.

Animals↗

A scale of functional divergence for yeast duplicated genes revealed from analysis of the protein-protein interaction network.

BACKGROUND: Studying the evolution of the function of duplicated genes usually implies an estimation of the extent of functional conservation/divergence between duplicates from comparison of actual sequences. This only reveals the possible molecular function of genes without taking into account their cellular function(s). We took into consideration this latter dimension of gene function to approach the functional evolution of duplicated genes by analyzing the protein-protein interaction network in which their products are involved. For this, we derived a functional classification of the proteins using PRODISTIN, a bioinformatics method allowing comparison of protein function. Our work focused on the duplicated yeast genes, remnants of an ancient whole-genome duplication. RESULTS: Starting from 4,143 interactions, we analyzed 41 duplicated protein pairs with the PRODISTIN method. We showed that duplicated pairs behaved differently in the classification with respect to their interactors. The different observed behaviors allowed us to propose a functional scale of conservation/divergence for the duplicated genes, based on interaction data. By comparing our results to the functional information carried by GO annotations and sequence comparisons, we showed that the interaction network analysis reveals functional subtleties, which are not discernible by other means. Finally, we interpreted our results in terms of evolutionary scenarios. CONCLUSIONS: Our analysis might provide a new way to analyse the functional evolution of duplicated genes and constitutes the first attempt of protein function evolutionary comparisons based on protein-protein interactions.

Computational Biology↗

Association of FOXC1 Duplications With Juvenile Open-Angle Glaucoma.

IMPORTANCE: While FOXC1 single-nucleotide variants and deletions are well-established causes of Axenfeld-Rieger syndrome, few FOXC1 duplications have been reported. This study investigated families with duplications encompassing the FOXC1 gene to refine the associated phenotypic spectrum and contribution to glaucoma. OBJECTIVE: To investigate the prevalence and phenotype of FOXC1 duplications in 2 large glaucoma registries. DESIGN, SETTING, AND PARTICIPANTS: This retrospective observational genetic cohort study included participants recruited from the Australian & New Zealand Registry of Advanced Glaucoma (ANZRAG) and the Massachusetts Eye and Ear (MEE) cohort from 2008 through 2025. Participants with glaucoma, and available relatives, underwent genomic testing to identify duplications encompassing FOXC1 using exome sequencing and genotyping arrays (ANZRAG) or whole-genome sequencing (MEE). Data analyses were conducted from 2022 through 2025. MAIN OUTCOMES AND MEASURES: Prevalence of FOXC1 duplications, age at glaucoma onset, and phenotype, including ocular and systemic features. RESULTS: Twenty individuals from 10 families (50% female and 50% male; 70% self-described as broadly European [Australian/British, British, English/German, English/Polish, European, or Scottish], 25% as Asian [Chinese or Filipino], and 5% as Latin American [Salvadoran]) were identified with FOXC1 duplications. All genetically tested individuals were diagnosed with glaucoma, demonstrating high penetrance. Seventeen individuals were referred with juvenile open-angle glaucoma (JOAG), 1 with primary open-angle glaucoma, 1 with primary congenital glaucoma, and 1 with anterior segment dysgenesis. The diagnosis of 4 individuals from 1 family with ectropion uveae was revised to anterior segment dysgenesis. Systemic features were reported for 2 participants (10.5%), including subtle dental findings and mild facial dysmorphism. Duplications encompassing FOXC1 were among the most common monogenic contributors to JOAG. In the ANZRAG group, they accounted for 13.5% (95% CI, 6.7%-25.3%) of JOAG probands with a genetic diagnosis, second to MYOC (53.8%; 95% CI, 40.5%-66.7%). In the MEE group, FOXC1 duplications accounted for 9.5% (95% CI, 2.7%-28.9%) of JOAG probands with a genetic diagnosis. CONCLUSIONS AND RELEVANCE: These findings suggest FOXC1 duplications are an underrecognized, highly penetrant, but variably expressive, genetic variation associated with JOAG. Findings for the relatively modest number of individuals in the retrospective study were associated with wide confidence intervals. This limitation is often inherent to studies of JOAG, a rare condition for which individual genetic variants account for only a subset of cases. Despite this, the findings highlight the genetic heterogeneity of JOAG and support the potential importance of considering routine genetic copy-number variant analysis for individuals with JOAG.

Humans↗