Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0026827 (hypotonia)
5,860 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

We describe two female siblings with similar clinical features consisting of hydrocephalus, scaphocephaly, hypotonia, mongoloid eye slant, blepharophimosis, micrognathia, supernumerary mouth frenula and mental retardation. Routine cytogenetic studies in the elder patient did not reveal any abnormality, and initially it was assumed that the syndrome had an autosomal recessive inheritance. However, a slightly larger chromosome 13 was seen in routine G-banded metaphases of the mother and the youngest of the two siblings. A shorter chromosome 15 was detected in the mother only. High resolution banding showed that the abnormal chromosome 13 contained an extra G-positive band at 13q12. The short chromosome 15 in the mother appeared to have a deletion of band q12. Fluorescence in situ hybridization using DNA markers specific to chromosomes 13 and 15 unequivocally showed that the mother was a carrier of a balanced reciprocal translocation t(13;15)(q12;q13), whereas the youngest sibling's karyotype was 46,XX,-13,+der(15)t(13;15)(q12;q13)mat, resulting in partial monosomy 13pter----q12 and partial trisomy 15pter----q13. The proband is thus trisomic for the critical region responsible for Prader-Willi syndrome and Angelman syndrome; this was confirmed by DNA analysis demonstrating one paternal and two maternal alleles from multiallelic marker loci mapping to 15q11-q13. This report illustrates the sensitivity and specificity offered by fluorescence in situ hybridization and its usefulness in the diagnosis and delineation of subtle chromosomal rearrangements.
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PMID:Reciprocal translocation between the proximal regions of the long arms of chromosomes 13 and 15 resulting in unbalanced offspring: characterization by fluorescence in situ hybridization and DNA analysis. 135 72

The diagnosis of Angelman syndrome (AS) has seldom been made in infants because the previously described characteristic manifestations usually are not apparent until after age 2 years. We describe 4 AS patients, one of whom has oculocutaneous albinism, who were less than 2 years old when first evaluated. All 4 have deletions of the region q11.2-q13 of chromosome 15. In the 3 cases in which parents were available for study the deleted chromosome 15 was maternally derived, as determined by cytological markers. All of the patients presented with severe to profound global developmental delay and postnatal-onset microcephaly; they had seizures, hypotonia, hyperreflexia, and hyperkinesis. All were hypopigmented as compared to their relatives. Each had eye abnormalities; all had choroidal pigment hypoplasia. None were initially described as having an abnormal appearance. We believe that AS is far more common than previously thought and present these 4 children to emphasize the manifestations that may be helpful in making the diagnosis in the young patient. We also emphasize the hypopigmentation that patients with AS frequently have, including what we think is the first reported case of albinism and AS.
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PMID:Diagnosis of Angelman syndrome in infants. 201 34

Two unrelated females, age 15 and 5 years respectively, were studied cytogenetically because of severe mental retardation, seizures and ataxia-like incoordination. A similar deletion of the proximal long arm of chromosome 15 was found in both patients. Re-evaluation showed no voracious appetite or obesity; normal size of hands and feet, minimal to no hypotonia by history or examination and facial features not typical of the Prader-Willi syndrome. However, the facial appearance of the girls was similar to each other with mild hypertelorism. The similarity of these girls and dissimilarity to Prader-Willi syndrome suggest a different syndrome, perhaps the result of deletion of a different segment of 15q. The findings of ataxic-like movements, frequent, unprovoked and prolonged bouts of laughter and facial appearance are more compatible with the diagnosis of Angelman syndrome.
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PMID:Is Angelman syndrome an alternate result of del(15)(q11q13)? 368 21

Prader-Willi syndrome (PWS) is a disorder characterized by neonatal hypotonia with poor suck, mild to moderate mental retardation, obesity beginning after 3 yr of age, hypogonadism and characteristic facial features. High resolution cytogenetic studies showed a deletion of the proximal chromosome 15q(q11-q13) region in approximately 50%. Interestingly, the same deletion was described in another distinct mental disorder: the Angelman syndrome (AS). This deletion was confirmed by molecular analyses, and a new mechanism was reported: uniparental disomy (maternal in PWS and paternal in AS) strongly implicate genomic imprinting in this chromosomal region. The principal aim of our group is to apply cytogenetic and molecular biology techniques to perform diagnosis and genetic counselling. Patient studies were usually based on high resolution cytogenetic analysis, quantitative Southern blotting (with D15S9, D15S11, D15S10, D15S12 loci) and dinucleotide repeat polymorphism assay by polymerase chain reaction (PCR) (IR4 .3R and GABARB3). The combination of these different methods allowed us to propose a diagnostic strategy for PWS.
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PMID:Prader-Willi syndrome: diagnostic strategy with a cytogenetic and molecular approach. 791 May 2

We report two sibs with Angelman syndrome or an apparently new syndrome. In addition to severe mental retardation and seizures, clinical examination showed an ataxic and stiff legged gait, truncal hypotonia with hypertonia of the limbs, dysmorphic facial features (brachycephaly, large mouth, pointed chin and a prominent jaws) and scoliosis. Brain CT scan and MRI revealed ventricular enlargement and squared frontal horns. Pregnancy and delivery were uneventful. Karyotypes were normal. No deletion of chromosome 15q11-13 region was shown by molecular genetic techniques. The parents who are normal are second cousins. The condition is therefore probably inherited as an autosomal recessive one.
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PMID:Mental retardation, ataxia, seizures, dysmorphia, and hydrocephaly in two sibs. Angelman syndrome or new syndrome. 835 66

Prader-Willi syndrome is characterized by hypotonia and feeding difficulties in the neonatal period, with the childhood development of hyperphagia leading to obesity, developmental delay, hypogonadism, short stature and small hands and feet. Correct diagnosis of Prader-Willi syndrome is important because of its clinical implications and the need for family genetic counseling. In order to determine the most efficient method of diagnosing the condition, we evaluated 37 patients with a putative diagnosis of Prader-Willi syndrome by both clinical and molecular cytogenetic analyses. Clinical evaluation showed that 25 patients fulfilled the diagnostic criteria for Prader-Willi syndrome. A deletion of the region 15q11.2-13 was cytogenetically identified in 20 patients using a high-resolution technique. Four additional cases were detected by fluorescence in situ hybridization (FISH) with the cosmid probes for D15S11, r-aminobutyric acid receptor beta 3 (GABRB3), small nuclear ribonucleoprotein-associated peptide N (SNRPN) or D15S10 (Prader-Willi/ Angelman syndrome region probes). The deletion of SNRPN was documented in 24 Prader-Willi syndrome patients. Only one additional patient with typical Prader-Willi syndrome features did not have any deletion over 15q11-13 at either the cytogenetic or molecular level. FISH provides a more reliable method than high-resolution chromosome analysis for the diagnosis of Prader-Willi syndrome. Associated conditions such as hypopigmentation, small-joint laxity, arachnodactyly, seizure disorder, optic atrophy, congenital heart disease, Perthes' disease, hirsutism, astigmatism/amblyopia, microcephaly and neuropsychiatric disturbances dictate the effects of a contiguous gene syndrome. Morbidity is high among patients with obesity and associated conditions. Appropriate genetic counseling should be given to the parents and dietary management should be helpful for patients with Prader-Willi syndrome.
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PMID:Prader-Willi syndrome: clinical and molecular cytogenetic investigations. 877 55

We have evaluated fluorescence in situ hybridization (FISH) analysis for the clinical laboratory detection of the 15q11-q13 deletion seen in Prader-Willi syndrome (PWS) and Angelman syndrome (AS) using probes for loci D15S11, SNRPN, D15S10, and GABRB3. In a series of 118 samples from patients referred for PWS or AS, 29 had deletions by FISH analysis. These included two brothers with a paternally transmitted deletion detectable with the probe for SNRPN only. G-banding analysis was less sensitive for deletion detection but useful in demonstrating other cytogenetic alterations in four cases. Methylation and CA-repeat analyses of 15q11-q13 were used to validate the FISH results. Clinical findings of patients with deletions were variable, ranging from newborns with hypotonia as the only presenting feature to children who were classically affected. We conclude that FISH analysis is a rapid and reliable method for detection of deletions within 15q11-q13 and whenever a deletion is found, FISH analysis of parental chromosomes should also be considered.
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PMID:FISH detection of chromosome 15 deletions in Prader-Willi and Angelman syndromes. 888 76

We report the clinical features in 27 Australasian patients with Angelman syndrome (AS), all with a DNA deletion involving chromosome 15(q11-13), spanning markers from D15S9 to D15S12, about 3 center dot 5 Mb of DNA. There were nine males and 18 females. All cases were sporadic. The mean age at last review (end of 1994) was 11 center dot 2 years (range 3 to 34 years). All patients were ataxic, severely retarded, and lacking recognisable speech. In all patients, head circumference (HC) at birth was normal but skewed in distribution, with 62 center dot 5% at the 10th centile. At last review HC was around the 50th centile in three patients (12 center dot 5%) while 15 had poor postnatal head growth. Short stature was not invariable, 5/26 (19%) were on or above the 50th centile. Hypotonia at birth was recorded in 15/24 (63%) and neonatal feeding difficulties were recorded in 20/26 (77%). Epilepsy was present in 26/27 (96%) with onset by the third year of life in 20 patients (83%). Improvement in epilepsy was reported in 11/16 patients (69%) with age. An abnormal EEG was reported in 25/25 patients. Hypopigmentation was present in 19/26 (73%). One patient had oculocutaneous albinism. Five patients could not walk independently. Of the remaining 22 who could walk, age of onset of walking ranged from 2 to 8 years. Disrupted sleep patterns were present in 18/21 patients (86%), with improvement in 9/12 patients (75%) over 10 years of age. The clinical features in this group of deletional AS patients were similar to previous reports, but these have not separated patients into subgroups based on DNA studies. In our group of deletional cases, 100% showed severe mental retardation, ataxic movements, absent language, abnormal EEG, happy disposition (noted in infancy in 95%), normal birth weight and head circumference at birth, and a large, wide mouth. These features occurred with a higher frequency than in AS patients as a whole. Our study also provided information on the evolution of the phenotype. The data can act as a benchmark for comparisons of AS resulting from other genetic mechanisms.
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PMID:Clinical features in 27 patients with Angelman syndrome resulting from DNA deletion. 892 45

The clinical findings in 12 Angelman syndrome (AS) patients (4 sib pairs and 4 sporadic cases, aged 12-55 years) without a cytogenetic or molecular detectable defect at the AS locus were compared to those of 28 AS patients (aged 11-50 years) with a deletion, in order to determine whether the clinical spectrum differed between the two groups. There were only two minor differences, i.e., mandibular prognathism was always found in the patients with a defect (100% vs. 58%), whereas truncal hypotonia was found less frequently in the group with a detectable genetic defect (54% vs. 91%). All other clinical and physical characteristics were equally represented in the two groups. Epileptic seizures occurred in 93% and 75%, respectively, of patients with and without a detectable chromosome 15 defect. Specific EEG patterns were found in 90% of both groups. The clinical signs and symptoms of our patients closely resemble those in familial AS cases reported in the literature, with the exception of scoliosis, which was present in 55% of the patients in our study. We conclude that the absence of a detectable cytogenetic or molecular defect at the AS locus is not associated with a strikingly different AS phenotype, compared to those with such a defect. Mutation analysis of the UBE3A gene in our patients without a detectable genetic defect, especially in the familial cases, is currently underway.
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PMID:Angelman syndrome without detectable chromosome 15q11-13 anomaly: clinical study of familial and isolated cases. 950 47

Duplications of chromosome region 15q11q13 often occur as a supernumerary chromosome 15. Less frequently they occur as interstitial duplications [dup(15)]. We describe the clinical and molecular characteristics of three patients with de novo dup(15). The patients, two males and one female (ages 3-21 years), had nonspecific findings that included autistic behavior, hypotonia, and variable degrees of mental retardation. The extent, orientation, and parental origin of the duplications were assessed by fluorescent in situ hybridization, microsatellite analyses, and methylation status at D15S63. Two patients had large direct duplications of 15q11q13 [dir dup(15)(q11q13)] that extended through the entire Angelman syndrome/Prader-Willi syndrome (AS/PWS) chromosomal region. Their proximal and distal breaks, at D15S541 or D15S9 and between D15S12 and D15S24, respectively, were comparable to those found in the common AS/PWS deletions. This suggests that duplications and deletions may be the reciprocal product of an unequal recombination event. These two duplications were maternally derived, but the origin of the chromatids involved in the unequal crossing over in meiosis differs. In one patient, the duplication originated from two different maternal chromosomes, while in the other patient it arose from the same maternal chromosome. The third patient had a much smaller duplication that involved only D15S11 and parental origin could not be determined. There was no obvious correlation between phenotype and extent of the duplication in these patients.
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PMID:Interstitial duplications of chromosome region 15q11q13: clinical and molecular characterization. 974 64


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