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Clinical variability in a Noonan syndrome family with a new PTPN11 gene mutation.

Noonan syndrome (NS) is an autosomal dominant disorder comprising short stature, facial dysmorphism, short and/or webbed neck, heart defects, and cryptorchidism in males. The gene responsible for the disorder (PTPN11) was recently identified, and explains 30-50% of the cases clinically diagnosed as NS. Cardiofaciocutaneous (CFC) syndrome, a similar but distinct entity, is characterized by relative macrocephaly, characteristic facial appearance, ectodermal abnormalities (sparse and friable hair, sparse eyebrows, hyperkeratotic skin), congenital heart defects, and growth and mental retardation. We describe on a young woman who presents clinical features of NS (short stature, triangular facies, with downslanting palpebral fissures and apparent hypertelorism, webbed neck, pulmonary stenosis, bleeding diathesis, prominent corneal nerves), but with a more prominent ectodermal involvement (sparse and very coarse hair, sparse eyebrows and eyelashes) and developmental delay/mental retardation, which are characteristic of CFC patients. Sequencing of the PTPN11 gene showed a T411M substitution, not previously described in patients with NS. The same mutation was found in her mother and older sister, not initially considered to be affected by NS, but with very subtle clinical findings compatible with this diagnosis. Molecular dynamic studies indicate that this new mutation, similar to other previously described mutations, favors a more active protein conformation. However, the main disruptive effect is not directly in the catalytic domain, suggesting that the location of this mutation could make the protein more susceptible to gene-gene or gene-environment interactions. Atypical cases of NS should be screened for mutations in the PTPN11 gene and in the case of a positive result, first-degree relatives should also be tested for the specific mutation.

Abnormalities, Multiple↗

Threshold-specific requirements for Bmp4 in mandibular development.

Mandibular development is regulated by an interplay between a specified branchial arch ectoderm and a plastic mesenchyme. Moreover, signaling from the pharyngeal endoderm has been shown to be important for mandibular morphogenesis. To gain insight into the mechanisms regulating mandibular pattern, it is important to investigate the function of the epithelial-derived signals. Bmp4 is expressed in both distal, mandibular arch ectoderm and pharyngeal endoderm. Here, we show that deletion of Bmp4 in the mandibular ectoderm and to a lesser extent in the pharyngeal endoderm, resulted in severe defects in mandibular development. Furthermore, our data uncovered different Bmp4 thresholds for expression of the Bmp-dependent Msx1 and Msx2 genes in mandibular mesenchyme. We also found that ectodermal Fgf8 expression was both activated and repressed by Bmp4 in a dosage-dependent fashion indicating a novel Bmp4 function in threshold-specific regulation of Fgf8 transcription. Lastly, we provide evidence that Prx homeobox genes repress expression of an Msx2 transgene, previously shown to be Bmp4-responsive, revealing a mechanism for differential regulation of Msx1 and Msx2 by Bmp signaling.

Animals↗

Congenital Alopecia and nail dystrophy associated with severe functional T-cell immunodeficiency in two sibs.

We report on two sisters affected by congenital alopecia, nail dystrophy, and a severe T-cell immunodeficiency, presumably inherited as an autosomal-recessive disorder. The T-cell defect was characterized by severe functional impairment, as shown by the lack of proliferative response and upregulation of activation markers following mitogen stimulation. The functional abnormality occurred in spite of the presence of phenotypically mature of the defect. This is the first observation reported on an ectodermal disorder, characterized by alopecia and nail dystrophy, observed at birth, in association with a primary immunodeficiency. The hypothesis that these two events may be casually related is discussed.

Alopecia↗

Aplasia cutis congenita reminiscent of the lines of Blaschko.

A male newborn showing congenital symmetrical abdominal skin defects and an alopecia on the scalp following a spiral pattern is described. The pattern of distribution of both skin anomalies was reminiscent of the lines of Blaschko, indicating that somatic mosaicism is the most probable cause for the defects.

Abdomen↗

Clinical, genetic, and histologic features of the trichoonychodental (TOD) syndrome.

A syndrome of scanty, fine, curled hair, thin dysplastic nails, taurodontic molars, hypoplastic-hypomature enamel, dysplasia of dentin, and hypohidrosis segregating as an autosomal dominant trait is described in a Japanese family. The patients received repeated doses of tetracycline during odontogenesis which fortuitously assisted in interpreting the pathogenesis of the dentin defect. The condition was previously described as familial congenital ectodermal dysplasia by Westerholm and as odontogenesis imperfecta by Siirilä and Heikinheimo. It is suggested that the name trichoonychodental (TOD) syndrome is a better descriptive term for the condition.

Chromosome Aberrations↗

Focal dermal hypoplasia: oral and dental findings.

Focal Dermal Hypoplasia/Goltz Gorlin syndrome is a rare syndrome characterized by widespread dysplasia affecting tissues of mesodermal and ectodermal origin with cutaneous, osseous, ocular, oral and dental defects. Enamel hypoplasia is the most commonly reported dental manifestation and has recently been described as a possible manifestation of Lyonisation. This article reviews the reported dental findings and reports a new case with typical findings of focal dermal hypoplasia, which has been under review on our department for 10 years. It discusses the differential diagnosis as well as newer concepts of aetiology and pathogenesis in relation to dental anomalies. Enamel hypoplasia may make plaque control difficult, resulting in generalized gingivitis. Hand anomalies may limit dexterity and exacerbate this. From the dental standpoint we emphasize the implementation of timely preventive and/or therapeutic strategies. Since there are periods of exacerbation during the course of this syndrome, regular surveillance from an early age with the frequency of visits increasing during and after adolescence is indicated. The role of the dentist in improving aesthetics and function can have tremendous psychological impact to enhance self-esteem of such patients.

Adolescent↗

Hypomelanosis of Ito.

Hypomelanosis of Ito appears to be a disorder of hypopigmentation. Findings from histochemical and electronmicroscopic studies indicate that pigment cells from the hypopigmented areas have short dendrites and synthesize less than normal amounts of melanin. The syndrome may have two forms; a cutaneous and neurocutaneous variety. In the more severe neurocutaneous variety, the phenotypic pigmentary abnormalities probably reflect a biochemical defect in all tissues derived from the neuro-ectodermal anlage.

Adult↗

AP-2alpha transcription factor is required for early morphogenesis of the lens vesicle.

AP-2 transcription factors are a family of retinoic acid-responsive genes, which are involved in complex morphogenetic processes. In the current study, we determine the requirement for AP-2alpha in early morphogenesis of the eye by examining the nature of the ocular defects in AP-2alpha null and chimeric mice. AP-2alpha null embryos exhibited ocular phenotypes ranging from a complete lack of eyes (anophthalmia) to defects in the developing lens involving a persistent adhesion of the lens to the overlying surface ectoderm. Two genes involved in lens development and differentiation, Pax6 and MIP26 were also misexpressed. AP-2alpha mutants also exhibited defects in the optic cup consisting of transdifferentiation of the dorsal retinal pigmented epithelium into neural retina and the absence of a defined ganglion cell layer. Newly generated chimeric embryos consisting of a population of AP-2alpha-/- and AP-2alpha+/+ cells exhibit ocular defects similar to those seen in the knockout embryos. Immunolocalization of AP-2 proteins (alpha, beta, and gamma) to the normal developing eye revealed both unique and overlapping expression patterns, with AP-2alpha expressed in a number of the ocular tissues that exhibited defects in the mutants, including the developing lens where AP-2alpha is uniquely expressed. Together these findings demonstrate a requirement for AP-2alpha in early morphogenesis of the eye.

Animals↗

Ocular manifestations in a father and son with EEC syndrome.

BACKGROUND: The ectrodactyly-ectodermal dysplasia-clefting (EEC) syndrome is a rare disease which follows an autosomal-dominant pattern of inheritance. Due to the ectodermal dysplasia there is atresia of the lacrimal duct system and aplasia of the meibomian glands with a defective tear film. Therefore, vascularized corneal scars often form during early adult life. PATIENTS: Father aged 41 years, and son aged 23 months. Both patients: stenosis/atresia of lacrimal duct systems (the father had twice undergone dacryocystorhinostomy externally) with epiphora, lip-palate clefting, syndactylies of fingers and toes, lobster deformities of hands. Additional ophthalmological findings in the father: bilaterally extracted juvenile cataracts with implantation of intraocular lenses, bilateral extensive vascularized corneal scars. Additional dermatological findings in the father: malignant melanoma of the calf, now in complete remission following several operations on the melanoma and several cycles of chemotherapy for the metastases. DISCUSSION AND THERAPEUTIC CONCLUSIONS: Father and son show the full clinical picture of the EEC syndrome with clefting, lobster-like deformities of the hands and ectodermal dysplasia with tear duct atresia and aplasia of the meibomian glands with defective tear film. During childhood, the main handicapping features are the clefting and the hand deformities with their respective multiple operative revisions. During early adulthood, however, the ocular problems become the predominantly handicapping aspects of the EEC syndrome; due to the ectodermal dysplasia, vascularized corneal scarring develops. Tearing and secondary inflammation due to lacrimal duct atresia has to be treated by early dacryocystorhinostomy. As secondary infections promote the development of corneal scars, one should not postpone the operation too long. Infections have to be treated promptly by local antibiotics. Because of the aplasia of the meibomian glands, artificial tear substitution should be given on a regular basis to support the defective tear film. Thus, the development of vascularized corneal scars can perhaps be delayed. Once corneal scarring has developed, perforating keratoplasty has a poor prognosis due to the ectodermal dysplasia, the absence of the meibomian glands and the defective tear film. Three factors lead to the formation of vascularized corneal scars: recurrent infections of lid margins and conjunctiva due to obstructed tear ducts; defective tear film with insufficient lipid phase due to the aplasia of the meibomian glands; and primary corneal epithelial defects in the course of the generalized ectodermal dysplasia.

Adult↗

The expression and regulation of chick EphA7 suggests roles in limb patterning and innervation.

Eph receptors and their ligands, the ephrins, have been implicated in early patterning and axon guidance in vertebrate embryos. Members of these families play pivotal roles in the formation of topographic maps in the central nervous system, the formation of brain commissures, and in the guidance of neural crest cells and motor axons through the anterior half of the somites. Here, we report a highly dynamic expression pattern of the chick EphA7 gene in the developing limb. Expression is detected in discrete domains of the dorsal mesenchyme from 3 days of incubation. The expressing cells are adjacent to the routes where axons grow to innervate the limb at several key points: the region of plexus formation, the bifurcation between dorsal and ventral fascicles, and the pathway followed by axons innervating the dorsal muscle mass. These results suggested a role for EphA7 in cell-cell contact-mediated signalling in dorsal limb patterning and/or axon guidance. We carried out experimental manipulations in the chick embryo wing bud to alter the dorsoventral patterning of the limb. The analyses of EphA7 expression and innervation in the operated wings indicate that a signal emanating from the dorsal ectoderm regulates EphA7 in such a way that, in its absence, the wing bud lacks EphA7 expression and shows innervation defects at the regions where the gene was downregulated. EphA7 downregulation in the dorsal mesenchyme after dorsal ectoderm removal is more rapid than that of Lmx-1, the gene known to mediate dorsalisation in response to the ectodermal signal. These results add a new gene to the dorsalisation signalling pathway in the limb. Moreover, they implicate the Eph receptor family in the patterning and innervation of the developing limb, extending its role in axon pathfinding to the distal periphery.

Animals↗

The effects of N-cadherin misexpression on morphogenesis in Xenopus embryos.

N-cadherin is a calcium-dependent, cell adhesion molecule that has been proposed to play a role in morphogenesis in vertebrate embryos. Throughout early neural development, N-cadherin is expressed during the morphogenetic changes that occur when ectoderm, in response to neural induction, forms a neural plate and tube. To study the role of N-cadherin in these processes, cDNA clones encoding Xenopus laevis N-cadherin were isolated and used to study the expression of N-cadherin in frog embryos. These studies showed that N-cadherin RNA is not expressed at detectable levels in early cleavage embryos or in isolated ectoderm in the absence of neural induction. However, N-cadherin RNA rapidly appeared in ectoderm exposed to a heterologous neural inducer, indicating that N-cadherin expression, as an early response to induction, precedes the morphogenetic events associated with early neural development. The role of N-cadherin in these morphogenetic events was studied by ectopically expressing N-cadherin in the ectoderm of embryos prior to induction. The ectopic expression of this protein in ectoderm led to the formation of cell boundaries and to severe morphological defects. These results are consistent with the hypothesis that the morphogenetic changes associated with early neural development are controlled, in part, by the induced expression of N-cadherin in the neural plate.

Amino Acid Sequence↗

Six3 activation of Pax6 expression is essential for mammalian lens induction and specification.

The homeobox gene Six3 regulates forebrain development. Here we show that Six3 is also crucial for lens formation. Conditional deletion of mouse Six3 in the presumptive lens ectoderm (PLE) disrupted lens formation. In the most severe cases, lens induction and specification were defective, and the lens placode and lens were absent. In Six3-mutant embryos, Pax6 was downregulated, and Sox2 was absent in the lens preplacodal ectoderm. Using ChIP, electrophoretic mobility shift assay, and luciferase reporter assays, we determined that Six3 activates Pax6 and Sox2 expression. Misexpression of mouse Six3 into chick embryos promoted the ectopic expansion of the ectodermal Pax6 expression domain. Our results position Six3 at the top of the regulatory pathway leading to lens formation. We conclude that Six3 directly activates Pax6 and probably also Sox2 in the PLE and regulates cell autonomously the earliest stages of mammalian lens induction.

Animals↗

Congenital abnormalities associated with limb deficiency defects: a population study based on cases from the Hungarian Congenital Malformation Registry (1975-1984).

Limb deficiency defects (LD) occurring among 1,575,904 births in Hungary during 1975-1984 were reviewed. The overall birth prevalence of LD was 1 in 1,816. This paper discusses the nature and distribution of the limb and other defects in the 275 (32%) children who had structural malformations in other systems. Two main forms of classification were used: morphologic and causal. Additional malformations were most commonly seen in infants with amelia, rudimentary limb (RL), radial/tibial (RT), intercalary or central axis (CA) LD and rarely in those with terminal transverse (TT) or ulnar/fibular (UF) defects. Upper limbs (81%) were involved significantly more often than lower limbs (42%) and there were more right-sided defects (83% vs. 71%) due to an excess of right arm involvement especially with radial ray and split hand anomalies. Single limb involvement was relatively common with amelia (88%), UF (82%), RT (50%), and TT (50%) defects. With other LD, multimelic involvement was more characteristic. This was usually symmetric with intercalary and RL defects but asymmetric with CA anomalies and digital deficiencies (DD). From a causal perspective, 17% of cases had genetic disorders, 52% had recognized associations, anomalies, sequences, environmental causes or patterns of unknown origin, and 31% had unknown patterns of malformations. The commonest entities were amnion disruption sequence (16% of cases) and VACTERL association (8%). Both of these disorders showed unusual temporal distribution. As anticipated, patterns of malformations differed with the type of LD. Amelia and digital amputations were often seen with body wall defects, atypical anencephaly or encephalocele, and cleft lip reflecting amnion disruption. Rudimentary limb was seen with anencephaly, omphalocele, renal agenesis, aberrant genitalia, and imperforate anus, reflecting defects of blastogenesis including the cloacal exstrophy and caudal regression sequences and Schisis association. Radial/tibial defects were associated with different patterns depending on whether the limb defects were unilateral or bilateral. Unilateral defects occurred with anomalies suggesting VACTERL association or the facio-auriculo-vertebral anomaly, while bilateral defects occurred more often in genetic or potentially genetic disorders including VACTERL with hydrocephalus. Central axis defects showed three main patterns of association: one reflecting the ectrodactyly-ectodermal dysplasia-clefting syndrome; one with tongue anomalies representing a variant of oro-mandibular-limb (Hanhart) anomaly, and the last with hydronephrosis indicating a group of "acro-renal" syndromes. Strong associations with other anomalies were not seen in the groups with TT, UF, or intercalary defects.

Abnormalities, Multiple↗

Heterozygous germline mutations in the p53 homolog p63 are the cause of EEC syndrome.

EEC syndrome is an autosomal dominant disorder characterized by ectrodactyly, ectodermal dysplasia, and facial clefts. We have mapped the genetic defect in several EEC syndrome families to a region of chromosome 3q27 previously implicated in the EEC-like disorder, limb mammary syndrome (LMS). Analysis of the p63 gene, a homolog of p53 located in the critical LMS/EEC interval, revealed heterozygous mutations in nine unrelated EEC families. Eight mutations result in amino acid substitutions that are predicted to abolish the DNA binding capacity of p63. The ninth is a frameshift mutation that affects the p63alpha, but not p63beta and p63gamma isotypes. Transactivation studies with these mutant p63 isotypes provide a molecular explanation for the dominant character of p63 mutations in EEC syndrome.

Abnormalities, Multiple↗

[Congenital hand malformation--local disturbance in the limb bud and longitudinal deficiency: an experimental study on the pathogenesis].

Experimental congenital malformation produced in fetal chickens to investigate any correlation between a local disturbance in the limb buds and longitudinal deficiency, and to elucidate the pathogenesis of radial and ulnar ray deficiencies. Fertilized White Leghorn eggs were incubated at 38.0 degrees C and windowed. The right wing bud of the embryos was locally cauterized using a bipolar microcoagulator under a microscope. Cauterization was carried out from 2.5 days to 5.5 days of development, at 12-hour intervals. Each wing bud was divided into 6 areas: axial (distal and proximal), preaxial (distal and proximal) and postaxial (distal and proximal). After cauterization the eggs were sealed with micropore tape and further incubated until the 21st-23rd day. The chick wings were then removed and investigated macroscopically and roentgenographically. The wing buds had been examined microscopically after cauterization on the 3rd day until ray deficiencies were produced on the 5th day. Radial ray deficiencies were produced by cauterization in the distal preaxial area, and ulnar ray deficiencies by cauterization in the distal postaxial area. These results indicated a peculiarity of the longitudinal axis. However, the critical periods of the radial and the ulnar ray deficiencies were the same; from immediately after the formation of the wing bud to before the formation of the digital plate. The patterns of the combined defects in the digits and of other associated deformities were quite similar to those found in human malformations. Microscopically necrosis in the mesoderm and in the overlying ectoderm of the pre and postaxial areas of the tip of a wing bud caused defects in the cartilaginous primordium in the same ray.

Animals↗

Salivary gland function in persons with ectodermal dysplasias.

Ectodermal dysplasias (EDs) constitute a group of conditions comprising developmental defects in two or more of the following tissues: hair, teeth, nails, and sweat glands. The aim of the present study was to contribute to a better understanding of salivary gland involvement in EDs. An ED group (n = 39, median age 12 yr; 24 males, 15 females) and a healthy age- and sex-matched control group were studied. Citric acid stimulated submandibular and parotid salivary flow rates and salivary concentrations, and output of total protein, acidic proline-rich proteins and histatins were analysed. The associations between quantitative and qualitative salivary parameters were also studied. In the ED group, 13 persons (33%) demonstrated a significantly reduced secretion of submandibular and/or parotid saliva, in addition to a low unstimulated and/or chewing-stimulated whole salivary flow. In the ED group as a whole, a reduced median secretory rate of submandibular saliva was found, whereas the median concentrations of some protein parameters were increased. However, the overall output of proteins was normal or reduced. Submandibular glands seemed to be more affected than parotid glands in EDs. In conclusion, salivary secretory tests are recommended in persons with known or suspected EDs.

Adolescent↗

Limb body wall complex: I. Pathogenesis.

Twenty-five fetuses with limb body wall complex (LBW complex) were evaluated. The diagnosis was based on two out of three of the following: exencephaly/encephalocele with facial clefts; thoraco- and/or abdominoschisis; and limb defect. Ninety-five percent (24/25) of the fetuses had associated internal structural defects. In 72% (18/25) the internal defects have been recognized as being secondary to vascular disruption. Concordance was not found between the side and location of the body wall defect versus the limb, internal, and cranial defects. In 85% there was evidence for persistence of the extraembryonic coelom by examination of the placenta. In this same group (85%) there was persistence of the ectodermal-amnion margin, with the amnion being continuous with the skin of the body wall defect. In 40% (10/25) there were tags and amniotic adhesions at other sites. There was no difference in the types or incidence of internal defects between those with and those without amniotic bands. The abnormalities in this collection and experimental animal models support vascular disruption during 4-6 weeks' gestation as an etiology for LBW complex. There is disruption and loss of existing tissues, persistence of embryonic structures, and secondary malformations. Persistence of the extraembryonic coelom may lead to the typical amniotic tags, ring constrictions, and adhesions seen in some specimens.

Abdominal Muscles↗

Pathogenesis of ethanol-induced limb reduction defects in mice.

Acute administration of dosages of 2.5, 2.8, or 2.9 g/kg of ethanol to pregnant C57BL/6J mice on gestational day 9 1/4 resulted in major malformations of the forelimb including postaxial ectrodactyly, preaxial syndactyly, and reduction defects involving intermediate digits. The incidence and severity of these defects was positively correlated with dosage. Sidedness of the defects was also dose-dependent. In affected embryos, excessive amounts of cell death were notable within 5-9 hr of treatment initiation in selected cell populations. Cell death was primarily distributed in two regions of the developing limb bud--a ventrodistal ectodermal cell population (apical ectodermal ridge) and a proximal mesenchymal cell population. The patterns of cell death observed appear to be pathogenically related to the limb defects noted at later stages. In particular, it would appear that the deficiencies in the apical ectodermal ridge resulting from ethanol-induced cell death can account for virtually all the subsequent limb defects.

Abnormalities, Drug-Induced↗