Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “overlapping phenotype”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

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

At least 127 records · Page 7Linked to original sources

The syndromes of Sotos and Weaver: reports and review.

The syndromes of Sotos and Weaver are paradigmatic of the daily nosologic difficulties faced by clinical geneticists attempting to diagnose and counsel, and to give accurate prognoses in cases of extensive phenotypic overlap between molecularly undefined entities. Vertebrate development is constrained into only very few final or common developmental paths; therefore, no developmental anomaly seen in humans is unique to ("pathognomonic" of) one syndrome. Thus, it is not surprising that prenatal overgrowth occurs in several syndromes, including the Sotos and Weaver syndromes. Are they sufficiently different in other respects to allow the postulation of locus (rather than allele) heterogeneity? Phenotypic data in both conditions are biased because of ascertainment of propositi, and the apparent differences between them may be entirely artificial as they were between the G and BBB syndromes. On the other hand, the Sotos syndrome may be a cancer syndrome, the Weaver syndrome not (though a neuroblastoma was reported in the latter); in the former there is also remarkably advanced dental maturation rarely commented on in the latter. In Weaver syndrome there are more conspicuous contractures and a facial appearance that experts find convincingly different from that of Sotos individuals. Nevertheless, the hypothesis of locus heterogeneity is testable; at the moment we are inclined to favor the hypothesis of allele heterogeneity. An international effort is required to map, isolate, and sequence the causal gene or genes.

Brain↗

Atypical late infantile and juvenile forms of neuronal ceroid lipofuscinosis and their diagnostic difficulties.

We have collected 122 late-infantile neuronal ceroid lipofuscinosis (LINCL, CLN2) and 191 juvenile NCL (JNCL, CLN3) cases, diagnosed on the basis of age-at-onset, clinical symptomatology, and pathological findings and representing the most common forms of NCL in the United States, and Europe. However, careful analysis of available data revealed that about 80% of cases show typical and 20% show atypical clinical course and/or pathological findings and thus, may represent variants of LINCL and JNCL, respectively. Recent progress in the biochemistry and molecular genetics of NCL inclined us to reevaluate these atypical NCL cases. The gene responsible for LINCL has not yet been identified, except for the Finnish variant. Accumulation of subunit c of mitochondrial ATP synthase, to curvilinear profiles, is found in LINCL cases. A novel variant of LINCL, with predominantly granular profiles in the lysosomal storage, as well as normal excretion of subunit c in urine samples, was found in five cases. When the palmitoyle-protein thioesterase (PPT) was studied in these five cases, it was found that the level was deficient, suggesting that they are not LINCL, but the infantile form of neuronal ceroid lipofuscinosis (INCL). Using molecular genetic techniques in the typical JNCL cases, common 1.02 kb deletion to CLN3 was found in 23/27 (homozygotes) and in one allele 4/27 (heterozygotes) in affected pedigrees. In atypical JNCL pedigrees, it was found in 5/16 heterozygotes, while in 1/5 pedigrees, a novel mutation of one atypical JNCL where a single amino acid substitution at 295 E-->K was found in one allele. None of the atypical JNCL cases was homozygote. In atypical JNCL cases where mutation in CLN3 has not been identified (11/16 probands), several possibilities may exist. The phenotype may be caused by a yet undefined mutation in CLN3 or may be due to phenotypically overlapping with other forms of NCL. Pheno/genotypic correlation and the diagnostic difficulties are discussed.

Adolescent↗

Autosomal recessive disorder otospondylomegaepiphyseal dysplasia is associated with loss-of-function mutations in the COL11A2 gene.

Otospondylomegaepiphyseal dysplasia (OSMED) is an autosomal recessive skeletal dysplasia accompanied by severe hearing loss. The phenotype overlaps that of the autosomal dominant disorders-Stickler and Marshall syndromes-but can be distinguished by disproportionately short limbs, severe hearing loss, and lack of ocular involvement. In one family with OSMED, a homozygous Gly-->Arg substitution has been described in COL11A2, which codes for the alpha2 chain of type XI collagen. We report seven further families with OSMED. All affected individuals had a remarkably similar phenotype: profound sensorineural hearing loss, skeletal dysplasia with limb shortening and large epiphyses, cleft palate, an extremely flat face, hypoplasia of the mandible, a short nose with anteverted nares, and a flat nasal bridge. We screened affected individuals for mutations in COL11A2 and found different mutations in each family. Individuals from four families, including three with consanguineous parents, were homozygous for mutations. Individuals from three other families, in whom parents were nonconsanguineous, were compound heterozygous. Of the 10 identified mutations, 9 are predicted to cause premature termination of translation, and 1 is predicted to cause an in-frame deletion. We conclude that the OSMED phenotype is highly homogenous and results from homozygosity or compound heterozygosity for COL11A2 mutations, most of which are predicted to cause complete absence of alpha2(XI) chains.

Adult↗

Phenotypic variability of the cat eye syndrome. Case report and review of the literature.

We present a male infant with preauricular skin tags and pits, downslanting palpebral fissures, hypertelorism, ectopic anus, hypospadias, and hypoplastic left heart syndrome. The clinical features in our patient show phenotypic overlap with the cat eye syndrome, as illustrated by the review of 105 reported cases. Cytogenetic analysis revealed a supernumerary marker chromosome, which was identified by microdissection and fluorescence in situ hybridization as an isodicentric chromosome 22(pter --> q11.2::q11.2 --> pter). It was proved with probes specific for the cat eye syndrome critical region that this region was present in quadruplicate in the propositus. We conclude that CES is characterized by large phenotypic variability, ranging from near normal to severe malformations, as reflected in the neurodevelopmental outcome. Preauricular skin tags and/or pits are the most consistent features, and suggest the presence of a supernumerary bisatellited marker chromosome 22 derived from duplication of the CES critical region.

Abnormalities, Multiple↗

Whole-exome Sequencing Identifies Novel Candidate PCNT Variants in a Child With Overlapping MOPD II Features: A Case Report.

A 7-year-old Chinese boy presented with severe postnatal growth failure (height <3rd percentile at age 7 years), global developmental delay, moderate intellectual disability, and characteristic dysmorphic features including hypertelorism, short palpebral fissures, low-set ears, and a broad nasal bridge. A single electrocardiogram demonstrated a borderline corrected QT interval (QTc = 450 ms). No arrhythmias, QT-prolonging medications, electrolyte abnormalities, or relevant family cardiac history were identified. This finding warrants longitudinal cardiology follow-up and should not be interpreted as definitive Long QT syndrome. Whole-exome sequencing identified two novel missense variants in the PCNT gene (NM_006031.5): c.5675A>G (p.Glu1892Gly) in exon 28 and c.9734G>T (p.Arg3245Ile) in exon 45. Both variants were absent from gnomAD, ExAC, the 1000 Genomes Project database, and Chinese population databases, fulfilling ACMG criterion PM2. Although classified as variants of uncertain significance (VUS) because of limited functional evidence and conflicting in silico predictions, the variants occur in a gene associated with primordial dwarfism and are accompanied by partial phenotypic overlap with Microcephalic Osteodysplastic Primordial Dwarfism Type II (MOPD II). However, parental segregation analysis was unavailable; therefore, the variant phase could not be confirmed, and a recessive disease mechanism could not be established. These findings support the presence of candidate PCNT variants in an atypical primordial dwarfism phenotype and illustrate the utility of whole-exome sequencing for generating testable molecular hypotheses in genetically heterogeneous growth disorders. A definitive molecular diagnosis cannot be established at present, and the isolated borderline QTc finding requires further clinical evaluation.

Humans↗

Nevo syndrome with an NSD1 deletion: a variant of Sotos syndrome?

A 17-month-old girl with clinical manifestations of Nevo syndrome and NSD1 (nuclear receptor binding SET domain protein 1) deletion is described. Nevo syndrome is a rare overgrowth syndrome showing considerable phenotypic overlap with Sotos syndrome-another, more frequent overgrowth syndrome caused by NSD1 mutations or deletions. About a half of Japanese Sotos syndrome patients carry a 2.2-Mb common deletion encompassing NSD1 and present with frequent brain, cardiovascular, or urinary tract anomalies. The girl we described had the common deletion and showed patent ductus arteriosus, atrial septal defect, vesicoureteral reflux, and bilateral hydronephrosis. It was thus concluded that the clinical manifestations, including the Nevo syndrome phenotype, were caused by the microdeletion.

Chromosome Deletion↗

Molecular analysis of MVK mutations and enzymatic activity in hyper-IgD and periodic fever syndrome.

Hyperimmunoglobulinaemia D and periodic fever syndrome (HIDS) is an autosomal recessive inflammatory disorder characterised by recurrent episode of fever associated with lymphadenopathy, abdominal distress, joint involvement and skin lesions. We recently demonstrated that mutations in the mevalonate kinase gene (MVK) are associated with HIDS. Direct DNA sequencing was done to screen the entire coding region of MVK in 25 unrelated patients with HIDS. Mutations were detected in the coding region of the gene including 11 missense mutations, one deletion, the absence of expression of one allele, as well as three novel polymorphisms. Seven of these mutations are novel. The large majority of the patients were compound heterozygotes for two mutations. Of these, V377I (G-->A) is the most common mutation occurring in 20 unrelated patients and was found to be associated with I268T in six patients. Mutations were associated with a decrease of mevalonate kinase (MK) (ATP:mevalonate 5-phosphotransferase, EC 2.7.I.36) enzymatic activity but not as profound as in mevalonic aciduria, a syndrome also caused by a deficient activity of MK. In HIDS the mutations are located all along the protein which is different from mevalonic aciduria where MK mutations are mainly clustered to a same region of the protein. On the basis of this study, we propose that the diagnostic screen of MVK in HIDS should be first directed on V377I and I268T mutations. Three patients are also described to illustrate the genotypic and phenotypic overlap with mevalonic aciduria.

Adult↗

Mutation analysis of the NSD1 gene in a group of 59 patients with congenital overgrowth.

Sotos syndrome is characterized by pre- and post-natal overgrowth, typical craniofacial features, advanced bone age, and developmental delay. Some degree of phenotypic overlap exists with other overgrowth syndromes, in particular with Weaver syndrome. Sotos syndrome is caused by haploinsufficiency of the NSD1 (nuclear receptor SET domain containing gene 1) gene. Microdeletions involving the gene are the major cause of the syndrome in Japanese patients, whereas intragenic mutations are more frequent in non-Japanese patients. NSD1 aberrations have also been described in some patients diagnosed as Weaver syndrome. Some authors have suggested a certain degree of genotype-phenotype correlation, with a milder degree of overgrowth, a more severe mental retardation, and a higher frequency of congenital anomalies in microdeleted patients. Data on larger series are needed to confirm this suggestion. We report here on microdeletion and mutation analysis of NSD1 in 59 patients with congenital overgrowth. Fourteen novel mutations, two previously described and one microdeletion were identified. All patients with a NSD1 mutation had been clinically classified as "classical Sotos," although their phenotype analysis demonstrated that some major criteria, such as overgrowth and macrocephaly, could be absent. All patients with confirmed mutations shared the typical Sotos facial gestalt. A high frequency of congenital heart defects was present in patients with intragenic mutations, supporting the relevance of the NSD1 gene in the pathogenesis of this particular defect.

Adolescent↗

Arguments for the genetic basis of the bipolar spectrum.

Family members of bipolar probands have been repeatedly shown to have an increased risk for mood disorders. However, a range of different syndromes in the bipolar spectrum are commonly observed in these relatives. This suggests the hypothesis that these different syndromes may be genetically related. It further suggests that bipolar disorder may be better conceptualized from a genetic standpoint as a quantitative trait. In such a model, the same genes may predispose to a variety of phenotypes ranging from schizoaffective disorder to cyclothymic temperament. Previous attempts to test such a multifactorial model have provided some limited support. However, other studies argue that some forms of bipolar disorder such as bipolar II may be genetically distinct. In this review, various quantitative and categorical models of illness are considered and the data supporting them reviewed. It is proposed that the existing data may best fit a model in which different sets of genes predispose to overlapping phenotypes that are in part both quantitative and distinct in nature.

Bipolar Disorder↗

Severe oculocerebrocutaneous (Delleman) syndrome: overlap with Goldenhar anomaly.

Oculocerebrocutaneous syndrome (OCCS), or Delleman syndrome, is a multiple congenital anomaly syndrome characterized by orbital cysts, cerebral malformations, and focal dermal hypoplasia [Delleman and Oorthuys, 1981, Clin Genet 19:191-198; Delleman et al., 1984, Clin Genet 25:470-472]. Two previous reports presented children having what is suggested as the more severe form of the OCCS syndrome who also had anophthalmia, congenital hydrocephalus, and cleft lip and palate [Leichtman et al., 1994, Am J Med Genet 50:39-41; Angle and Hersh, 1997, Am J Med Genet 68:39-42]. We report on a third case of severe OCCS, an infant girl with a similar constellation of findings and additional anomalies including lateral facial cleft, vertebral anomaly, and ventricular septal defect. The additional findings in our patient highlight the phenotypic overlap of OCCS and the Goldenhar anomaly, an overlap previously noted by Delleman and Oorthuys [1981], and others [Al-Gazali et al., 1988, J Med Genet 25: 773-778]. We suggest that the minimal diagnostic criteria for Delleman syndrome include central nervous system cyst or hydrocephalus, orbital cysts or microphthalmia, and focal skin defects.

Abnormalities, Multiple↗

Genes establishing dorsoventral pattern formation in the zebrafish embryo: the ventral specifying genes.

We identified 6 genes that are essential for specifying ventral regions of the early zebrafish embryo. Mutations in these genes cause an expansion of structures normally derived from dorsal-lateral regions of the blastula at the expense of ventrally derived structures. A series of phenotypes of varied strengths is observed with different alleles of these mutants. The weakest phenotype is a reduction in the ventral tail fin, observed as a dominant phenotype of swirl, piggytail, and somitabun and a recessive phenotype of mini fin, lost-a-fin and some piggytail alleles. With increasing phenotypic strength, the blood and pronephric anlagen are also reduced or absent, while the paraxial mesoderm and anterior neuroectoderm is progressively expanded. In the strong phenotypes, displayed hy homozygous embryos of snailhouse, swirl and somitabun, the somites circle around the embryo and the midbrain region is expanded laterally. Several mutations in this group of genes are semidominant as well as recessive indicating a strong dosage sensitivity of the processes involved. Mutations in the piggytail gene display an unusual dominance that depends on both a maternal and zygotic heterozygous genotype, while somitabun is a fully penetrant dominant maternal-effect mutation. The similar and overlapping phenotypes of mutants of the 6 genes identified suggest that they function in a common pathway, which begins in oogenesis, but also depends on factors provided after the onset of zygotic transcription, presumably during blastula stages. This pathway provides ventral positional information, counteracting the dorsalizing instructions of the organizer, which is localized in the dorsal shield.

Animals↗

King syndrome: further clinical variability and review of the literature.

The King syndrome is characterized by a Noonan-like phenotype, the presence of a nonspecific myopathy and a predisposition to malignant hyperthermia. In some families, mild physical manifestations of the phenotype and/or elevated serum creatine phosphokinase (CPK) in relatives suggest the presence of an autosomal dominant myopathy with variable expressivity. We summarize the cases of 14 previously reported patients and describe a new patient, a 7-year-old girl, with the King syndrome and the unique findings of diaphragmatic eventration, tethered spinal cord, and severe paucity of type 2 skeletal muscle fibers. It has been proposed that the King syndrome represents a common phenotype that may result from several different slowly progressive congenital myopathies. This hypothesis, and the phenotypic overlap between the King and Noonan syndromes are discussed in light of the findings in this new patient.

Abnormalities, Multiple↗

New case of the Richieri-Costa/Guion-Almeida syndrome.

We describe a boy with multiple congenital anomalies/mental retardation (MCA/MR) syndrome. He has growth retardation, microbrachycephaly, coloboma of the iris, and typical facial anomalies including cleft lip/palate. This phenotype overlaps with that described by Richieri-Costa and Guion-Almeida in three Brazilian brothers. The new patient provides further evidence of the existence of this rare clinical entity.

Abnormalities, Multiple↗

von Voss-Cherstvoy syndrome: a variable perinatally lethal syndrome of multiple congenital anomalies.

We report 4 cases and review 7 from the literature with a pattern suggesting a variable early lethal multiple congenital anomaly syndrome. This was first reported by von Voss et al. [1979: "Klinische Genetik in der Pädiatrie," pp 70-74] and Cherstvoy et al. [1980: Lancet ii:485], and can affect upper limbs, face, brain, heart, lungs, urogenital and gastrointestinal systems, vertebrae and ribs, and can include thrombocytopenia. The initial cases had occipital encephaloceles and phocomelia, but milder cerebellar anomalies and radial ray defects may be seen instead. Both sexes are affected and parental age is not increased. This may be heterogeneous, but two consanguineous families, one with recurrences, suggest autosomal recessive inheritance in at least some instances, although the recurrences had milder brain findings than the other cases. The original designation of DK-phocomelia syndrome is inaccurate, since arm findings may be limited to radial anomalies; we suggest instead the von Voss-Cherstvoy syndrome. This may be heterogeneous, but at present, phenotypic overlap prevents differentiation of subgroups. The disorder appears to be part of a group of syndromes with radial and hematologic abnormalities.

Abnormalities, Multiple↗

Beckwith-Wiedemann syndrome: multiple molecular mechanisms.

Beckwith-Wiedemann syndrome (BWS) is a congenital overgrowth condition with an increased risk of developing embryonic tumours, such as Wilms' tumour. The cardinal features are abdominal wall defects, macroglossia and gigantism. BWS is generally sporadic; only 10-15% of cases are familial. A variety of molecular aberrations have been associated with BWS. The only mutations within a gene are loss-of-function mutations in the CDKN1C gene, which codes for an imprinted cell-cycle regulator. CDKN1C mutations appear to be particularly associated with umbilical abnormalities, but not with increased predisposition to Wilms' tumour. In the remaining BWS subgroups, a disturbance of the tight epigenetic regulation of gene expression (patUPD 11p, microdeletions or epimutations) seems to be the cause of the syndrome. Here we describe the clinical presentation of BWS and its dissociation from phenotypically overlapping overgrowth syndromes. We then review the current concepts of causative molecular genetic and epigenetic mechanisms, and discuss future directions of research.

Animals↗

Maternal origin of a novel C-terminal truncation mutation in CDKL5 causing a severe atypical form of Rett syndrome.

The CDKL5 gene has been implicated in infantile spasms and more recently in a Rett syndrome-like phenotype. We report a case of a young girl presenting generalized convulsions at 10 days of life. Subsequent mutation analysis by denaturing high-performance liquid chromatography of MECP2 and CDKL5 genes revealed heterozygosity for a c.47_48insAGG insertion in exon 1 of MECP2 and heterozygosity for a new nonsense mutation p.Q834X and a new missense variant p.V999M in the CDKL5 gene. Co-segregation analysis showed that the nonsense mutation was a de novo mutation and that the insertion and the missense variant were also found in the asymptomatic mother. In the absence of skewed X inactivation in the mother, it is likely that these last two variants are not pathogenic. Reverse transcription-polymerase chain reaction from lymphoblastoid cells of the patient showed only the transcript without the nonsense and missense variations suggesting decreased stability of mature mRNA by nonsense-mediated decay. These data also suggest an occurrence of the de novo mutation in maternal germ line cells. Moreover, this report reinforces the observation that the CDKL5 phenotype overlaps with Rett syndrome and that CDKL5 gene analysis is recommended in females with a seizure disorder commencing in the first weeks of life.

Base Sequence↗

Molecular genetics in classic Ehlers-Danlos syndrome.

Classic Ehlers-Danlos syndrome is a heritable disorder of connective tissue that is characterized by skin hyperextensibility, fragile and soft skin, delayed wound healing with formation of atrophic scars, easy bruising, and generalized joint hypermobility. Mutations in the COL5A1 and the COL5A2 gene, encoding the alpha1 and the alpha2-chain of type V collagen respectively, are identified in approximately 50% of patients with a clinical diagnosis of classic EDS. In approximately one third of patients, the disease is caused by a mutation leading to a non-functional COL5A1 allele, and resulting in haplo-insufficiency of type V collagen. In a smaller proportion of patients, a structural mutation in COL5A1 or COL5A2, resulting in the production of a functionally defective type V collagen protein, is responsible for the phenotype. Inter- and intrafamilial phenotypic variability is observed, but no genotype-phenotype correlations can be made so far. The relatively low mutation detection rate in the COL5A1/A2 genes suggests genetic heterogeneity. Indeed rarely mutations in type I collagen have been identified in patients with classic EDS. Mutations in the gene for tenascin-X have been implicated in an autosomal recessive condition phenotypically overlapping with classic EDS. Several other candidate genes, such as decorin, have emerged from the study of transgenic mouse models with clinical and ultrastructural features reminiscent of classic EDS. However, to date, no human examples have been reported for these mouse models.

Collagen Type V↗

[Clinical heterogeneity of childhood diabetes in Baranya county].

INTRODUCTION: Immune mediated type 1 diabetes is the most frequent form of childhood diabetes while type 2 and other forms are more rare in childhood in the Caucasian population. Differentiation of various diabetes subtypes has importance in the choice of treatment and prognosis. AIMS: The aim of the study was to describe clinical heterogeneity of childhood diabetes and to evaluate possibilities of phenotypical classification. METHODS: Two hundred twenty eight children (128 girls and 100 boys) with diabetes diagnosed at the Department of Pediatrics, University of Pécs, in the period of 1978-2000 were examined. Glycated hemoglobin levels, insulin requirement, body weight at diagnosis and association of type 1 diabetes with other disorders were analysed. RESULTS: Thirty one patients (13.6%) had permanently low (< 8%) glycated hemoglobin levels. Low glycated hemoglobin level associated with low insulin requirement (< 0.5 U/kg/day) was observed in three patients (1.4%) with 4 years of disease duration and in 2 patients (0.9%) during the whole disease course. These patients can be classified as non-classical type 1 diabetes cases. Obesity associated with less than 0.5 U/kg/day insulin requirement observed at least for two years from diagnosis was found in 2 cases (0.9%). These cases may be diagnosed as having childhood type 2 diabetes. The authors identified two diabetes patients with Down syndrome while MODY and transient neonatal diabetes were observed in one cases each. Diabetes associated conditions diagnosed in single cases each were as follows: thymus tumor, Duchenne muscular dystrophy, autoimmune polyglandular syndrome type 2, and T-cell lymphoma. CONCLUSIONS: Childhood diabetes cases can be classified into several subgroups on clinical grounds, insulin requirement, and glycemic control. The data suggest that the prevalence of type 2 and non-classical type 1 diabetes is probably only a few percent among children with diabetes in Hungary. Due to phenotypic overlap between different forms of diabetes, measurement of beta-cell specific autoantibodies and C peptide levels can be recommended for etiologic classification.

Adolescent↗