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Biomedical subjects

J M Milunsky

Publications and source records attributed to J M Milunsky.

At least 19 recordsLinked to original sources

Cerebro-oculo-facial-lymphatic syndrome.

We describe a boy whose prime features are severe-to-profound mental retardation, intractable complex seizures, lissencephaly, facial dysmorphism, and lymphatic abnormalities. To our knowledge, this is the fourth reported case of this syndrome. We propose the syndromic appellation of cerebro-oculo-facial-lymphatic syndrome, suggest cardinal diagnostic features, and discuss several possible overlapping syndromic diagnoses.

Abnormalities, Multiple↗

XL PCR for the detection of large trinucleotide expansions in juvenile Huntington's disease.

Juvenile Huntington's disease (HD) becomes clinically manifest before 20 years of age. The diagnosis of HD is based on family history, characteristic clinical findings, and the detection of an expansion of a CAG polyglutamine tract in the Huntingtin gene. Juvenile HD is characterized by paternal anticipation and large CAG expansions that may be missed using routine molecular analysis. We have developed an easy, rapid, and reliable modified PCR method using XL (Extra Long) PCR that allowed us to diagnose one of the youngest children reported with juvenile HD. Without this innovation we would not have been able to demonstrate the large CAG expansion. This assay could become part of a standard protocol for HD testing in molecular diagnostic laboratories.

Age of Onset↗

An unstable dicentric Robertsonian translocation in a markedly discordant twin.

Karyotypes from independent amniocenteses reflected a rare, unstable, functionally dicentric Robertsonian translocation chromosome in most cells in male Twin B who grew more slowly than the chromosomally normal female sib (Twin A). Twin B's balanced de novo Robertsonian translocation dic(13;14)(p11.1;p11.1), present in 81% of cells, underwent recurrent centromeric fission in 6 out of 30 independent colonies that explains a balanced 46,XY,-13,+fis(13)(p11.1),-14,+fis(14)(p11.1) karyotype. Aneuploidy for chromosomes 13q or 14q was present in 5% of cells. Instability of the Robertsonian translocation was evident because nine of the 30 colonies (30%) grown from single amniocytes had metaphase cells with more than one chromosome complement. Although uniparental disomy was excluded and a targeted ultrasound was normal, the couple was advised of the uncertain but real risk of abnormalities in Twin B and the risk to Twin A of terminating Twin B. The pregnancy proceeded and at 31 weeks gestation Twin A was in the 33rd percentile for size and Twin B in the 1st percentile. At 32 weeks, chromosome analysis revealed a balanced 45,XY,dic(13;14)(p11.1;p11.1) karyotype in all of Twin B's newborn cord blood cells with no evidence of fission or aneuploidy. Selection against unbalanced mitotic products of the unstable, functionally dicentric chromosome in early fetal development is proposed to result in Twin B's highly discordant small birth size.

Female↗

Novel mutations and the emergence of a common mutation in the SDHD gene causing familial paraganglioma.

Familial paragangliomas (PGL) are slow-growing, highly vascular, generally benign neoplasms, usually of the head and neck, that arise from neural crest cells. This rare autosomal dominant disorder is highly penetrant and influenced by genomic imprinting through paternal transmission. Timely detection of these tumors may afford the affected individual the opportunity to avoid the potential serious morbidity associated with surgical removal and the mortality that may accompany local and distant metastases. Linkage to two distinct chromosomal loci, 11q13.1 and 11q23, has been previously reported. Recently, germline mutations in SDHD, a mitochondrial complex II gene on chromosome 11q23, have been demonstrated. We evaluated members of seven families with PGL, five previously studied and shown to have linkage to chromosome 11q23. The entire coding region of the SDHD gene was sequenced and yielded four novel mutations and one mutation shared in three of our unrelated families. Novel mutations found included a truncating mutation in exon 2, as well as a missense mutation, a deletion, and an insertion in exon 4. Three of our families had a common mutation in exon 3 (P81L) that has been reported and thought to be a founder mutation. A restriction enzyme assay was developed for initial screening of this mutation. Molecular analysis is now available and recommended for presymptomatic diagnosis in those at-risk individuals and for confirmatory diagnosis in those having PGL.

Chromosomes, Human, Pair 11↗

Rett syndrome from quintuple and triple deletions within the MECP2 deletion hotspot region.

Rett syndrome results from mutations in the X-linked methyl-CpG-binding protein 2 (MECP2) gene, which are nearly always lethal in males and lead to regression and reduced life expectancy in females. Herein we report one propositus with five tandem deletions and a second propositus with three tandem deletions within MECP2 exon 4 that encode truncated protein products resulting in classic Rett syndrome. These deletion breakpoints and single deletions in 3 other patients were all found within a 185-bp region along with 64 of 69 other reported deletion breakpoints in the MECP2 gene. Illegitimate recombination resulting in deletion at a substantial proportion of the shared MECP2 sites is enhanced by repeated guanosine (G) DNA sequences in the antisense direction, consistent with reports at other gene loci that polypurine (multiple guanosine or adenosine (A)) basepairs enhance sequence deletion. Multiple deletions at the same poly G recombination sites confirm the existence of deletion hotspots in this gene region with numerous repeated antisense sites that are enriched 26- to 161-fold. Deletion by illegitimate recombination within a single allele can occur during mitotic or meiotic cell cycles. Although prone to disease-causing deletion, this region is unique in humans and highly conserved among mammals for the last 75 000 000 years to maintain the MECP2 gene's critical function.

Child↗

Mutation analysis in Rett syndrome.

Rett syndrome is an X-linked dominant neurodevelopmental disorder caused by mutations in the MECP2 gene. Mutations have been demonstrated in more than 80% of females with typical features of Rett syndrome. We identified mutations in the MECP2 gene and documented the clinical manifestations in 65 Rett syndrome patients to characterize the genotype-phenotype spectrum. Bidirectional sequencing of the entire MECP2 coding region was performed. We diagnosed 65 patients with MECP2 mutations. Of these, 15 mutations had been reported previously and 13 are novel. Two patients have multiple deletions within the MECP2 gene. Eight common mutations were found in 43 of 65 patients (66.15%). The majority of patients with identified mutations have the classic Rett phenotype, and several had atypical phenotypes. MECP2 analysis identified mutations in almost all cases of typical Rett syndrome, as well as in some with atypical phenotypes. Eleven (20.4%) of the 54 patients with defined mutations and in whom phenotypic data were obtained did not develop acquired microcephaly. Hence, microcephaly at birth or absence of acquired microcephaly does not obviate the need for MECP2 analysis. We have initiated cascade testing starting with PCR analysis for common mutations followed by sequencing, when necessary. Analysis of common mutations before sequencing the entire gene is anticipated to be the most efficacious strategy to identify Rett syndrome gene mutations.

Amino Acid Substitution↗

Highly polymorphic short tandem repeat analyses clarify complex molecular test results.

Judicious application of highly polymorphic short tandem repeat (STR) analyses and modification of assay conditions readily distinguished nonparentage from true parentage, with occasional failure to transmit one parentally derived allele. These categories were resolved with a reliability of >99.9%, the standard applied to most DNA evidence presented in a U.S. court of law. While completing a single prenatal diagnosis submitted at 19 weeks gestation, the authors found that one polymorphic grandpaternal allele did not amplify, a duplicate control propositus' DNA sample had been switched by an outside laboratory, and recombination occurred in maternal meiosis within the mutant gene region. In two parentage cases with one available parent, a Y-linked STR or an autosomal STR was modified when transmitted to the offspring. In contrast, some apparently inconsistent results between parental DNA and offspring were resolved by purifying or diluting the original extracted DNA samples. Thus, the source of each complex molecular test result was characterized unambiguously by testing a sufficient number of highly polymorphic STR loci and by purifying or diluting troublesome DNA samples to diminish polymerase chain reaction amplification artifact.

Adult↗

Tandem duplication/deletion in a maternally derived chromosome 9 supernumerary derivative resulting in 9p trisomy and partial 9q tetrasomy.

A 19-week stillborn female fetus with bilateral cleft palate, horseshoe kidney, bicornuate uterus, low-set ears, and intrauterine growth retardation (IUGR) was found to have a supernumerary derivative chromosome 9 (der(9)) with an apparent tandem duplication in the long arm. PCR analysis at five polymorphic loci confirmed the duplication and showed an adjacent deletion, while whole chromosome FISH demonstrated only chromosome 9 to be involved. Further FISH studies of der(9) found the 9qh region to be duplicated, telomeric sequences to be intact, and subtelomeric sequences to be absent. Thus, the fetus was determined to be trisomic for 9pter-->9q12 and 9q34.3-->9qter, tetrasomic for 9q12--> 9q33, and disomic for 9q33-->9q34.3. These results are consistent with a tandem duplication of 9q12-->9q33 and adjacent distal deletion as designated by the karyotype, 47,XX,+der(9)dup(9) (q12q33)del(9) (q33q34.3).ish der(9)(WCP9+,D9Z1x2,STP9q-, AHT+) de novo. In addition to characterizing der(9), the combined PCR and cytogenetic studies refined the Genome Database Map of three loci (D9S907, D9S155, and D9S302) approximately to the distal 9q33 region. Without the attempt to refine breakpoints by PCR analysis, the deletion in distal 9q would not have been detected. Tandem direct duplication/deletion chromosomes have been reported in fewer cases than inverted duplication/deletions. We propose mechanisms of origin, consistent with those for recurrent inter stitial microdeletion and microduplication syndromes, shown to arise by recombination at homologous, flanking DNA sequences.

Aneuploidy↗

Confirmation of the mapping of the Camurati-Englemann locus to 19q13. 2 and refinement to a 3.2-cM region.

Camurati-Englemann syndrome (DPD1) is an autosomal dominant condition associated with progressive cortical sclerosis of the diaphyses of all the long bones. Clinical features include abnormal gait, muscle weakness and wasting, and generalized fatigue. The DPD1 gene was recently mapped to a 15.1-cM region on chromosome 19q13.2. We have narrowed the region containing the DPD1 gene to a 3.2-cM region flanked by short tandem repeat markers, D19S881 and D19S718. TGFB1, a candidate gene mapped within this region, was excluded.

Camurati-Engelmann Syndrome↗

Connexin-26 gene analysis in hearing-impaired newborns.

The efficacy and utility of the Connexin-26 (Cx-26) gene (also called GJB2) analysis from DNA isolated from Guthrie newborn screening cards is demonstrated. This analysis precisely defined a major cause of prelingual nonsyndromic deafness in those children requiring amplification in our study. Guthrie cards were obtained from 49 deaf children requiring amplification identified over the last 5 years by the Rhode Island Newborn Screening Program. Children with syndromes or other recognizable causes of hearing loss were excluded. DNA was extracted from the Guthrie cards and analyzed sequentially for the Cx-26 35delG mutation and then for the 167delT mutation followed by gene sequencing on remaining heterozygotes. Three of 42 children were 35delG homozygotes; 2/42 children were 35delG/167delT compound heterozygotes. One child was identified as being a 35delG heterozygote with no other mutation found by sequencing. Nine Guthrie cards yielded no amplification or uninterpretable results. Cx-26 mutations were identified as causing 11.9% of the deafness in the children studied. In conclusion, Cx-26 analysis is an important test that identifies a major cause of prelingual nonsyndromic deafness. Molecular analysis of hearing-impaired newborns will be important for genetic counseling in these families. Failures with Guthrie cards may make use of other collection methods preferable.

Connexin 26↗

Fertility in men with cystic fibrosis: an update on current surgical practices and outcomes.

BACKGROUND: Men with cystic fibrosis (CF) have bilateral absence of the vas deferens causing an obstructive azoospermia that is not amenable to surgical correction. Advances in the field of reproductive medicine allow for the procurement of viable sperm and facilitate fertilization and pregnancy in couples where the man has CF. OBJECTIVES: To describe patient anatomy and semen characteristics and to determine the pregnancy rates of couples in whom the male partner has CF and who have undergone microsurgical epididymal sperm aspiration coupled with in vitro technology, specifically intracytoplasmic sperm injection (ICSI). DESIGN: Retrospective analysis. SETTING: Clinical department of urology and two reproductive medicine units. PATIENTS: Thirteen married men with CF who were referred for infertility. INTERVENTIONS: History, physical examination, semen analysis, transrectal and renal ultrasonography, CF mutation analysis, and microsurgical sperm aspiration coupled with ICSI. RESULTS: All 13 men had low-volume azoospermia, absent vasa, and aplasia/hypoplasia of the seminal vesicles. CF mutation analysis was carried out in 11 of 13 men, and 9 of 11 were DeltaF508 homozygous. Eight men underwent microsurgical sperm aspiration, and their partners underwent one or more cycles of ICSI. Five couples (62.5%) achieved a pregnancy, with four couples delivering (three sets of twins and one singleton). CONCLUSIONS: CF in men is accompanied by bilateral vasal aplasia. The resultant obstructive azoospermia can be treated quite successfully with a combination of sperm aspiration and ICSI. It is important for physicians involved in the care of men with CF to convey the message that prospects for fatherhood are excellent with current technology.

Adult↗

Prenatal diagnosis of spinal muscular atrophy by direct molecular analysis: efficacy and potential pitfalls.

The efficacy of direct prenatal diagnosis for spinal muscular atrophy (SMA) is demonstrated, and the potential pitfalls with this type of analysis are highlighted in the largest prospective single-center prenatal series in the United States. The presence or absence of exons 7 and 8 of the SMN gene was determined from 66 fetuses from 51 families. Direct and cultured chorionic villus samples (CVS) and amniocytes were analyzed. DNA analysis to exclude maternal cell contamination was performed on all CVS. Follow-up was obtained for 48 cases; 13 pregnancies continue. One child predicted to be affected with SMA remains asymptomatic at 13 months. Thirty-three cases were confirmed to be clinically unaffected in agreement with the prenatal molecular results. Three of 24 CVS had maternal cell contamination. In conclusion, direct molecular analysis of either CVS or amniocytes is highly accurate in the prenatal diagnosis of SMA. However, maternal cell contamination of CVS samples can confound these analyses, and the possibility of contamination must be excluded routinely.

Amniocentesis↗

Renal tubular dysgenesis with microcephaly.

Renal tubular dysgenesis, a rare, lethal, autosomal recessive disorder, is characterized by short and poorly differentiated proximal convoluted tubules associated with oligohydramnios, Potter sequence, and neonatal death due to respiratory failure. Abnormalities of the skull may occur in some cases. We report an infant born of a consanguineous union who also had microcephaly, among other features. A history of oligohydramnios with or without skull abnormalities and a lethal outcome without obvious explanation should occasion renal histological study aimed at precise diagnosis and genetic counselling.

Adult↗

Genetic counseling in perinatal medicine.

The obstetrician/perinatologist should be well informed about recent advances in human genetics that directly impact patient care. New indications for molecular analyses, specific limitations in their usage, and the need for interpretation of complex laboratory results emphasize the increasingly necessary clinical genetics consultation. The advent of DNA-based presymptomatic or predictive testing introduces dilemmas for patients and their families, and raises medical, legal, and ethical issues in genetic counseling.

Ethics, Medical↗

Familial supernumerary chromosome and malignancy.

No familial marker chromosome associated with a malignancy has been reported to date. We used fluorescence in situ hybridization (FISH) to characterize a supernumerary marker chromosome 15 ascertained during prenatal diagnosis. This supernumerary chromosome 15 was found to span three generations of a family. Three family members carrying the supernumerary chromosome 15 have also had malignancies, namely, a cystic glioma, leukemia, and thyroid cancer.

Adult↗

Trisomy 15 mosaicism and uniparental disomy (UPD) in a liveborn infant.

We describe a liveborn infant with uniparental disomy (UPD) with trisomy 15 mosaicism. Third trimester amniocentesis yielded a 46,XX/47,XX,+15 karyotype. Symmetrical growth retardation, distinct craniofacies, congenital heart disease, severe hypotonia and minor skeletal anomalies were noted. The infant died at 6 weeks of life. Peripheral lymphocyte chromosomes were "normal" 46,XX in 100 cells. Parental lymphocyte chromosomes were normal. Skin biopsy showed 47,XX,+15 in 80% of fibroblasts and results were equivalent in fibroblasts from autopsy lung tissue. Molecular analysis revealed maternal uniparental heterodisomy for chromosome 15 in the 46,XX cell line. We describe an emerging phenotype of trisomy 15 mosaicism, confirm that more than one tissue should be studied in all cases of suspected mosaicism, and suggest that UPD be considered in all such cases.

Abnormalities, Multiple↗