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Biomedical subjects

John M Opitz

Publications and source records attributed to John M Opitz.

At least 19 recordsLinked to original sources

Nuchal cystic hygroma in five fetuses from 1819 to 1826 in the Meckel-anatomical collections at the University of Halle, Germany.

The Anatomical collection of the Department of Anatomy and Cell Biology, Medical School of the University of Halle, Germany, comprises more than 8,000 specimens. Around 600 of them show congenital anomalies. The collection of abnormal human and animal fetuses began as the private collection of Johann Friedrich Meckel the Elder (1724-1774), his son Philipp Friedrich Theodor Meckel (1755-1803) and his grandson Johann Friedrich Meckel the Younger (1781-1833). Meckel the Younger founded the systematic science of developmental pathology. Radiographical techniques, computer tomographic (CT) methods, magnetic resonance imaging (MRI), and comparative genomic hybridization (CGH) were used to diagnose abnormal human fetuses in the Meckel-anatomical collections. Cystic hygroma colli was found in five of the human fetuses originally described by JF Meckel the Younger in 1826 and one of his students in 1819 [Hencke, 1819]. CGH analyses were used to test whether the observed cystic hygroma colli could be caused by chromosomal aneuploidies. CGH-ratio profiles of all chromosomes were apparently normal. PCR-based sex determination tests on ancient DNA were used to determine the fetal gonosomal constitution. It is likely that the Meckel specimens are among the oldest fetuses in which Ullrich-Turner "phenotype" has been diagnosed.

DNA↗

Meckel on developmental pathology.

Before Schleiden and Schwann, Darwin and Mendel there passed briefly a towering giant, Johann Friedrich Meckel the Younger (1781-1833), now glimpsed only fleetingly and obscurely through the mist of time and former controversies, who can nowadays easily and clearly be identified as the father of a "pre-modern" developmental biology. At his beginning this prodigiously gifted physician-scholar had, as one would say nowadays, an unfair advantage, his cradle having been rocked, as it were, by the preparators in his father's and grandfather's huge collection of normal and abnormal anatomical "specimens" in the home in which he was born and raised including his father's own skeleton (with two anatomical anomalies!). Initially reluctant to follow in the steps of his illustrious anatomist/physician grandfather and father, he nevertheless early demonstrated extraordinary gifts in anatomy and zootomy. Napoleon's conquest of his homeland notwithstanding, Meckel spent at least 2 extremely fruitful years in Paris, under the tutelage of Cuvier, but also in close contact with Geoffroy St. Hilaire (Etienne), Lamarck, and von Humboldt. He not only translated Cuvier's Leçons d'anatomie comparée into German but also greatly enriched this pivotal treatise with observations of embryonic and malformed fetuses and animals only of passing interest to his mentor. In his numerous publications, Meckel was the first to relate abnormal to normal development, define anomalies of incomplete differentiation (vestigia), but, most importantly, to relate those malformations known in humans to those that are normal adult developmental states in "lower" animals (atavisms). Thus, Meckel's three-fold parallelism of the scala naturae, normal ontogeny, and the malformations in humans and animals makes him a recapitulationist par excellence, however, without ever venturing into a fully articulated and explicit theory of descent. Today Meckel is remembered solely as the discoverer of the syndrome and cartilage named after him, and as having interpreted, correctly, the developmental nature of the "Meckel" diverticulum. It is virtually unknown that Meckel also first enuntiated the concept and distinction between primary and secondary malformations/anomalies, introduced the notion of heredity into the causal analysis of congenital anomalies, was the father of syndromology (the Meckel syndrome), had a clear understanding of pleiotropy and heterogeneity, and can unequivocally be regarded as the father of developmental pathology. In hindsight, and inspite of much professional success, Meckel emerges as a tragic figure in the history of biology, his life cut short at 52 without an ability to incorporate cell theory and the embryological insights of his younger contemporaries into his intellectual edifice which might have made it possible for him to finally and clearly see "analogy" (now homology), of which he was the greatest expert in his era, as incontrovertible evidence for descent. In that case, Darwin and Haeckel might have even had the courtesy of a tip-of-the-hat in Meckel's direction.

Abnormalities, Multiple↗

An Xq22.3 duplication detected by comparative genomic hybridization microarray (Array-CGH) defines a new locus (FGS5) for FG syndrome.

FG syndrome is an X-linked multiple congenital anomalies (MCA) syndrome. It has been mapped to four distinct loci FGS1-4, through linkage analysis (Xq13, Xp22.3, and Xp11.4-p11.3) and based on the breakpoints of an X chromosome inversion (Xq11:Xq28), but so far no gene has been identified. We describe a boy with FG syndrome who has an inherited duplication at band Xq22.3 detected by comparative genomic hybridization microarray (Array-CGH). These duplication maps outside all four loci described so far for FG syndrome, representing therefore a new locus, which we propose to be called FGS5. MID2, a gene closely related to MID1, which is known to be mutated in Opitz G/BBB syndrome, maps within the duplicated segment of our patient. Since FG and Opitz G/BBB syndromes share many manifestations we considered MID2 a candidate gene for FG syndrome. We also discuss the involvement of other potential genes within the duplicated segment and its relationship with clinical symptoms of our patient, as well as the laboratory abnormalities found in his mother, a carrier of the duplication.

Abnormalities, Multiple↗

XK-aprosencephaly and related entities.

We offer further biological characterization of the XK atelen/aprosencephaly syndrome in two infants, one with prolonged survival, the other presenting prenatally with apparent hydranencephaly and an orbital tumor (OS). Familial occurrence in the former born to presumably nonconsanguineous Lybian parents may represent parental germinal mosaicism or autosomal recessive inheritance. Both had apparently normal chromosomes; however, the Lybian infant had slightly increased induced chromosome breakage suggesting that this rare multiple congenital anomalies syndrome may involve a DNA repair defect. Virtual absence of atelen/aprosencephalic structures may lead to an arthrogryposis-like prenatal movement disorder. The orbital tumor in the Utah infant consisted of dystopic neural tissue compressing a rudimentary globe and was connected by a thin bridge of neural tissue to the small mass of disorganized brain tissue usually found in atelen/aprosencephalic infants and fetuses. No evidence of an encephaloclastic process was found in the autopsied Utah infant.

Abnormalities, Multiple↗

A 72-year-old Danish puzzle resolved--comparative analysis of phenotypes in families with different-sized HOXD13 polyalanine expansions.

A phenotype-genotype correlation was previously described for carriers of different sized of polyalanine expansions in HOXD13. We report on a detailed comparison of 55 members (approximately 220 limbs) from 4 Danish families with duplications of 21 or 27 bp, expanding the polyalanine repeat from 15 to 22 and 24 residues, respectively. Two of these were previously described by Danish pioneers of human genetics, Tage Kemp and Oluf Thomsen. A clinical score was assigned to each limb based on manifestations assumed to represent different degrees of a duplication defect in hand rays 3-4 and foot rays 4-5. The length of metacarpals and phalangeal bones in rays 1, 2, and 5 was measured on hand radiographs and converted to Z-scores. The relative difference between corresponding right and left bones and directional, total, and fluctuating asymmetry was calculated for each individual. All of these parameters were compared between carriers of the +9 alanine expansion, the +7 alanine expansion, and non-mutation carriers with affected parents from the two families. Upper limb scores and the rate of abnormal bones (>2SD) were significantly higher in the first group than in the others. The first metacarpal and the middle phalanx of the little finger were significantly shorter, and the proximal phalanx of the index finger was significantly longer in this group than in the others. An increased level of total and fluctuating asymmetry was observed in long expansion carriers. Thus, our data have added evidence to the phenotype-genotype correlation previously reported, which was further extended to include lesser involvement of bones in ray 1, 2, and 5.

Base Sequence↗

Male-to-male transmission in Laurin-Sandrow syndrome and exclusion of RARB and RARG.

We report on a father and a son with nasal and limb defects characteristic of Laurin-Sandrow syndrome (LSS) excluding for the first time X-linked inheritance in this rare condition. Based on a search for genes expressed late during nose formation and early in limb formation we identified retinoic acid receptor B (RARB) and retinoic acid receptor G (RARG) as possible candidate genes and sequenced bidirectionally including all exons and intron-exon bounders. We identified a single nucleotide substitution in intron 2 of RARB, which is conserved in human, chimp, dog, mouse, rat, and chicken. However, it was located 83 bp from exon 2, suggesting it is a rare polymorphism which does not account for the phenotype. No other mutations were found. This suggests that another yet unknown gene is responsible for the condition.

Abnormalities, Multiple↗

A chicken consultation with ramifications.

In Madison I once worked with two postdoctoral fellows who had spent their youth in New York City and who, when asked what birds they knew both responded "why, pigeons and LBJ's!" (little brown jobbies). Despite their undoubted brilliance, they clearly had an educational deficiency not fixed by buying eggs and poultry at a grocery store. Though of enormous economic and nutritional importance to humans, turkeys and chickens constitute only a minute fraction of the disappearing avian life in our ecology. One could easily teach an entire middle or high school biology course around the reproduction, embryology, evolution, genetics, anatomy, special adaptations, virology, bacteriology, taxonomy, behavior, and extinctions of birds, as paradigmatic of all of life. Where would developmental or evolutionary biology be without the Galapagos finches, chick embryo, or neurobiology without the Zebra Finch? The modifications of the original red jungle fowl of India and South East Asia into hundreds of races through artificial selection and breeding practices provide as beautiful an example of developmental plasticity, well-known to Darwin, as the domestic dog, cat, laboratory mice, and guinea pigs. In what follows I have begun to repay my indebtedness to my mentor Emil Witschi who introduced me to developmental biology, physiology, and genetics and its historical study on the basis of birds (and amphibians); and to Mark Leppert, Professor of Human Genetics at the University of Utah for collaborative support, and bird-watching fieldtrips.

Animals↗

Mild phenotypes in a series of patients with Opitz GBBB syndrome with MID1 mutations.

Opitz syndrome (OS; MIM 145410 and MIM 300000) is a congenital midline malformation syndrome characterized by hypertelorism, hypospadias, cleft lip/palate, laryngotracheoesophageal (LTE) abnormalities, imperforate anus, developmental delay, and cardiac defects. The X-linked form (XLOS) is caused by mutations in the MID1 gene, which encodes a microtubule-associated RBCC protein. In this study, phenotypic manifestations of patients with and without MID1 mutations were compared to determine genotype-phenotype correlations. We detected 10 novel mutations, 5 in familial cases, 2 in sporadic cases, and 3 in families for whom it was not clear if they were familial or sporadic. The genotype and phenotype was compared for these 10 families, clinically diagnosed OS patients found not to have MID1 mutations, and 4 families in whom we have previously reported MID1 mutations. This combined data set includes clinical and mutation data on 70 patients. The XLOS patients with MID1 mutations were less severely affected than patients with MID1 mutations reported in previous studies, particularly in functionally significant neurologic, LTE, anal, and cardiac abnormalities. Minor anomalies were more prevalent in patients with MID1 mutations compared to those without mutations in this study. Female MID1 mutation carriers had milder phenotypes compared to male MID1 mutation carriers, with the most common manifestation being hypertelorism in both sexes. Most of the anomalies found in the patients of the present study do not correlate with the MID1 mutation type, with the possible exception of LTE malformations. This study demonstrates the wide spectrum of severity and manifestations of OS. It also shows that XLOS patients with MID1 mutations may be less severely affected than indicated in prior reports.

Exons↗

Chiari I malformation in patients with FG syndrome.

OBJECT: The FG syndrome (FGS) is a common, heterogeneous group of clinically indistinguishable X-linked disorders comprising congenital hypotonia, macrocephaly, psychomotor delay, abnormalities in sensory integration, agenesis of corpus callosum, an unusual personality with behavior abnormalities, and disturbances of gastrointestinal function. On magnetic resonance (MR) imaging, some patients have evidence of tonsillar ectopia. The authors describe the incidence of Chiari I malformation in patients with FGS and attempt to determine the optimal treatment of these patients. METHODS: The authors performed a retrospective chart and radiological review of 144 pediatric patients with FGS for evidence of tonsillar ectopia on brain MR imaging. Eleven (7.6%) of these 144 patients had tonsillar ectopia, and in eight patients (5.6%), the tonsils were located more than 5 mm below the foramen magnum. Four of these patients underwent posterior fossa decompression, and surgery was performed at a mean age of 3 years. Indications for surgery included significant headaches and behavioral problems in two patients and failure to thrive with severe breathing and feeding difficulties in two infants. All four improved after surgery. The other patients remained asymptomatic from their tonsillar ectopia, showed no clinical or radiological signs of progression, and did not require surgery. CONCLUSIONS: Chiari I malformation is more common in individuals with FGS than in the general population. Some of these patients with FGS require decompression surgery, but the decision to operate can be difficult because of their developmental delay, difficulties with language skills, general fatigue, possibility of upper motor neuron dysfunction, behavioral problems, or failure to thrive, which may mask the symptoms of a Chiari I malformation.

Arnold-Chiari Malformation↗

Two brothers with 22q13 deletion syndrome and features suggestive of the Clark-Baraitser syndrome.

We report on two brothers with moderate-to-severe mental retardation, severe macrocephaly, obesity, characteristic face, big hands and feet, advanced bone age and brain abnormalities, including frontal cortical atrophy. These two boys resembled the two brothers described by , two maternal cousins subsequently reported by and a Brazilian boy described by . Upon further investigation, we detected a cryptic subtelomeric deletion of chromosome region 22q13, not present in either parent and probably due to a maternal germinal mosaicism. Thus, we describe the first familial case of 22q13 deletion and recommend that patients with a phenotype suggestive of the so-called Clark-Baraitser syndrome be tested for submicroscopic 22qter deletion.

Abnormalities, Multiple↗

A case of Kabuki (Niikawa-Kuroki) syndrome associated with manifestations resembling C-trigonocephaly syndrome.

We report a 2-year-old boy with overlapping manifestations of the Kabuki (Niikawa-Kuroki) and Opitz trigonocephaly syndromes. The proband was initially diagnosed with Opitz trigonocephaly syndrome on the basis of metopic craniosynostosis, upslanting palpebral fissures, high arched palate, redundant skin folds at the back of the neck, ventricular septal defect, broad flat thumbs, bilateral single palmar creases, left talipes equinovarus, eventration of right hemidiaphragm, and bilateral inguinal hernia. However, as he grew older, his facial profile changed to that typical of Kabuki syndrome.

Abnormalities, Multiple↗

Perrault syndrome: evidence for progressive nervous system involvement.

Perrault syndrome (PS) comprises gonadal dysgenesis and sensorineural deafness in females, and deafness in affected males. More recent studies have asked whether the neurological signs in some of the patients are a coincidental finding or part of the syndrome. We report on two pairs of sisters with gonadal dysgenesis and deafness, cerebral, and ocular involvement who developed a progressive, severe sensory, and motor neuropathy. This observation constitutes further evidence of peripheral nervous system involvement in PS. Based on the clinical observations of known patients, two forms of PS may be distinguished: one apparently non-progressive form and another (exemplified by our two sets of sisters) with apparently progressive axonal-cerebellar degeneration.

Adult↗

Novel Connexin 43 (GJA1) mutation causes oculo-dento-digital dysplasia with curly hair.

Oculo-dento-digital dysplasia (ODDD) [OMIM 164200] is a rare autosomal dominant pleiotropic disorder comprising ocular, craniofacial, and digital anomalies, caused by mutations in the gap junction alpha-1 gene (GJA1 or Connexin 43 (CX43)) [Paznekas et al., 2003]. In a Danish family affected over five generations, we found a novel mutation, 286G --> A, resulting in Val96Met. We provide an easy method for mutation detection by use of the restriction enzyme Nde1 and discuss possible pathogenetic mechanisms, arguing that loss of function cannot be excluded. This is the second article reporting ODDD mutations.

Abnormalities, Multiple↗