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[Netherton syndrome].

Netherton syndrome is a rare disease inherited as an autosomal recessive trait due to mutations in the SPINK5 gene. It is characterized by the triad of ichthyosiform dermatosis, alterations of the hair shaft and immunological disorders. We present the case of a 12-year-old girl with the triad of ichthyosis linearis circumflexa, trichorrhexis invaginata and atopic dermatitis, characteristic of Netherton syndrome.

Carrier Proteins↗

Lethal, neonatal ichthyosis with increased proteolytic processing of filaggrin in a mouse model of Netherton syndrome.

Netherton syndrome is an autosomal recessive multisystemic disorder characterized by congenital ichthyosiform erythroderma, hair shaft defects and atopy, caused by mutations within the human SPINK5 gene. To investigate the development of this disease, we have cloned mouse spink5 and created mice with a mutated premature stop codon at amino acid R820X, to produce an allele that closely mimics a point mutation (E827X) in human SPINK5. Newborn spink5(R820X/R820X) mice develop a lethal, severe ichthyosis with a loss of skin barrier function and dehydration, resulting in death within a few hours of birth, similar to that observed in patients with severe Netherton syndrome. Epidermal barrier function is compromised because of the stratum corneum becoming spontaneously detached in the newborn mice, and this is probably compounded by the reduced mechanical strength detected in the cornified envelopes. Biochemical analysis of skin from newborn wild-type and spink5(R820X/R820X) mice revealed a substantial increase in the proteolytic processing of profilaggrin into its constituent filaggrin monomers. Filaggrin functions to organize keratin filaments into highly ordered macrofibrils that crisscross the cornified cells of the stratum corneum imparting structural integrity, and defects in filaggrin processing occur in a number of forms of congenital ichthyosis. These data suggest that in the absence of the serine protease inhibitor spink5, there is an abnormal increase in the processing of profilaggrin, resulting in an overabundance of filaggrin monomers, and that this may play a direct role in the observed deficit in the adhesion of the stratum corneum and the severely compromised epidermal barrier function.

Amino Acid Sequence↗

A compound heterozygous mutation of the SPINK5 gene in a Taiwanese boy with Netherton syndrome.

Netherton syndrome (NS) is a severe, autosomal, recessive ichthyosis. It is characterized by congenital ichthyosiform erythroderma (CIE), trichorrhexis invaginata (TI) - a distinctive hair-shaft anomaly, and atopic diathesis. Recently, pathogenic mutations were identified in serine protease inhibitor Kazal-type 5 (SPINK5), the gene that encodes lympho-epithelial Kazal-type-related inhibitor (LEKTI), a recently identified type of serine protease inhibitor involved in the regulation of skin barrier formation and immunity. Here we report the mutation analysis of a 7-year-old Taiwanese boy with NS manifesting CIE with pathognomic ichthyosis linearis circumflexa and TI. Direct DNA sequencing of SPINK5 demonstrated a compound heterozygous mutation in the proband, 2260A>T (K754X) in exon 24 and 2468delA in exon 26. The former is a novel mutation and was detected in the mother. The latter mutation was detected in the father and has been previously reported in several European families. Both mutations are expected to result in premature termination codons. Mutation analysis could provide a reliable prenatal diagnosis of this lethal ichthyosis.

Carrier Proteins↗

LEKTI demonstrable by immunohistochemistry of the skin: a potential diagnostic skin test for Netherton syndrome.

BACKGROUND: Netherton syndrome (NS) is a rare autosomal recessive condition characterized by ichthyosiform erythroderma, trichorrhexis invaginata and atopic manifestations. Confirming the diagnosis may be difficult in the early stages. Mutations in the SPINK5 gene which encodes for the serine protease inhibitor LEKTI are associated with NS. These mutations create premature termination codons which result in absent or abnormal expression of LEKTI in patients with NS. OBJECTIVES: To investigate the expression of LEKTI in the skin of patients with NS in comparison with normal controls and patients with other skin conditions, namely atopic dermatitis, psoriasis and nonbullous ichthyosiform erythroderma. METHODS: Immunohistochemistry was performed on skin sections from four patients with NS, four normal controls, four with atopic dermatitis, two with psoriasis and two with nonbullous ichthyosiform erythroderma, using a primary rabbit polyclonal antibody against LEKTI. RESULTS: LEKTI was localized to the stratum granulosum in normal skin. All four skin sections from patients with NS showed absent or very reduced staining for LEKTI. Staining in the other disorders showed positive LEKTI expression in varying patterns. CONCLUSIONS: NS can be difficult to diagnose especially in the early stage, which can lead to inappropriate treatments particularly if it is misdiagnosed as atopic dermatitis. Immunohistochemistry of skin with an antibody against LEKTI is a potentially useful diagnostic test for NS.

Adolescent↗

Netherton syndrome associated with idiopathic congenital hemihypertrophy.

Netherton syndrome is a rare genodermatosis comprised of anichthyosiform dermatitis, hair shaft defects, and atopic features. Other problems associated with Netherton syndrome are delayed growth and development, immune abnormalities, recurrent infections, and intermittent aminoaciduria. We describe an 18-month-old girl with Netherton syndrome who had idiopathic congenital hemihypertrophy on her right side with contralateral benign nephromegaly in addition to the characteristic clinical signs of the syndrome. To our knowledge, this is the first case of Netherton syndrome associated with idiopathic congenital hemihypertrophy to be reported.

Abnormalities, Multiple↗

Selective antibody deficiency to bacterial polysaccharide antigens in patients with Netherton syndrome.

Three patients with Netherton syndrome, recurrent sinopulmonary infections, and humoral immune deficiency are described. Although quantitative serum immunoglobulin levels were generally normal, two patients had selective antibody deficiency to bacterial polysaccharide antigens, one associated with IgA-IgG-2 deficiency. A third patient had an antibody deficiency to protein antigens. This is the first report, to our knowledge, that describes antibody deficiency in patients with Netherton syndrome. This finding demonstrates the importance of evaluating functional antibody responses to both protein and bacterial polysaccharide antigens and not relying on IgG subclass determination.

Antigens, Bacterial↗

Acute pancreatitis in a young girl with the Netherton syndrome.

Acute pancreatitis is uncommon in children younger than 15 years. We present the first report on the association of acute pancreatitis with the Netherton syndrome. The Netherton syndrome is an inherited skin disease characterized by ichthyosiform erythroderma, a pathognomonic hair shaft defect ("bamboo hair"), and atopic features. A 14-year-old girl with symptoms and signs of severe acute pancreatitis was admitted to our department. A diagnostic workup could not reveal any common known cause of pancreatitis, and the cause of pancreatitis would most likely be considered idiopathic. However, based on recent reports regarding various pathophysiological mechanisms for both acute pancreatitis and the Netherton syndrome (eg, shearing the 5q locus for the respective gene-associated defects in SPINK1 and SPINK5), we speculate if a possible association may exist. Investigations on pancreatitis and the Netherton syndrome may disclose factors closely involved in the pathomechanisms of both. This notion may be of clinical importance as it adds to the number of potential life-threatening events to patients with the Netherton syndrome.

Abdomen, Acute↗

Netherton syndrome: a case report and review of the literature.

Netherton syndrome is a rare disorder inherited in an autosomal recessive pattern consisting of ichthyosiform dermatosis, hair shaft abnormalities (trichorrhexis invaginata), and an atopic diathesis. Patients with Netherton syndrome have been found to have a mutation on chromosome 5q32 in a gene named SPINK5 (serine protease inhibitor, Kazal type-5), which encodes an inhibitor of serine proteases called LEKTI. We report a female patient with previously undiagnosed Netherton syndrome who presented to participate in a clinical research trial investigating the benefit of topical tacrolimus 0.03% ointment [Protopic (Fujisawa Pharmaceutical Co. Ltd., Japan)] for the treatment of atopic dermatitis. This patient was confirmed to have a gene mutation in SPINK5. Current literature suggests a relative contraindication for use of topical tacrolimus in patients with Netherton syndrome owing to concern for increased systemic absorption of the drug. Our patient was not able to tolerate topical tacrolimus owing to local irritation, and did not derive any benefit from therapy. Though rare, when evaluating patients with a possible diagnosis of atopic dermatitis, an index of suspicion for Netherton Syndrome must be maintained. History and overall clinical findings, especially in regards to examination of the hair, will aid in diagnosis.

Child, Preschool↗

The spectrum of pathogenic mutations in SPINK5 in 19 families with Netherton syndrome: implications for mutation detection and first case of prenatal diagnosis.

The Comèl-Netherton syndrome is an autosomal recessive multisystemic disorder characterized by localized or generalized congenital ichthyosis, hair shaft abnormalities, immune deficiency, and markedly elevated IgE levels. Life-threatening complications during infancy include temperature and electrolyte imbalance, recurrent infections, and failure to thrive. To study the clinical presentations of the Comèl-Netherton syndrome and its molecular cause, we ascertained 19 unrelated families of various ethnic backgrounds. Results of initial linkage studies mapped the Comèl-Netherton syndrome in 12 multiplex families to a 12 cM interval on 5q32, thus confirming genetic homogeneity of Comèl-Netherton syndrome across families of different origins. The Comèl-Netherton syndrome region harbors the SPINK5 gene, which encodes a multidomain serine protease inhibitor (LEKTI) predominantly expressed in epithelial and lymphoid tissues. Recently, recessive mutations in SPINK5 were identified in several Comèl-Netherton syndrome patients from consanguineous families. We used heteroduplex analysis followed by direct DNA sequencing to screen all 33 exons and flanking intronic sequences of SPINK5 in the affected individuals of our cohort. Mutation analysis revealed 17 distinct mutations, 15 of which were novel, segregating in 14 Comèl-Netherton syndrome families. The nucleotide changes included four non-sense mutations, eight small deletions or insertions leading to frameshift, and five splice site defects, all of which are expected to result in premature terminated or altered translation of SPINK5. Almost half of the mutations clustered between exons 2 and 8, including two recurrent mutations. Genotype-phenotype correlations suggested that homozygous nucleotide changes resulting in early truncation of LEKT1 are associated with a severe phenotype. For the first time, we used molecular data to perform prenatal testing, thus demonstrating the feasibility of molecular diagnosis in the Comèl-Netherton syndrome.

Adolescent↗

Elevated stratum corneum hydrolytic activity in Netherton syndrome suggests an inhibitory regulation of desquamation by SPINK5-derived peptides.

Netherton syndrome is a congenital ichthyosis associated with erythroderma, hair shaft defects, and atopic features. The mutations of the secretory serine protease inhibitor Kazal-type 5 gene have been identified in Netherton syndrome patients; however, the actual physiologic substrates of the serine protease inhibitor Kazal-type 5 proprotein are unknown, and how the genetic defects cause characteristic skin phenotype remains uncertain. Here, we describe the serine protease inhibitor Kazal-type 5 gene mutations, including two novel non-sense mutations, and genotype-phenotype correlation in three Netherton syndrome patients in two unrelated Japanese families. Furthermore, based on the reappraisal of the structure of the serine protease inhibitor Kazal-type 5 proprotein, demonstration of the presence of carboxypeptidase in normal keratinocytes, and the observation of mRNA localization of the serine protease inhibitor Kazal-type 5 transcripts in the uppermost epidermis as well as pilosebaceous units, we propose a hypothetical model of proteolytic processing of the serine protease inhibitor Kazal-type 5 proprotein in the epidermis and inhibitory regulation of corneocyte desquamation by a set of serine protease inhibitor Kazal-type 5-derived peptides. This hypothesis is supported by the marked increase of trypsin-like hydrolytic activity demonstrated in stratum corneum samples from our Netherton syndrome patients. The findings in this study suggest that the defective inhibitory regulation of desquamation due to the serine protease inhibitor Kazal-type 5 gene mutations may cause over-desquamation of corneocytes in Netherton syndrome, leading to severe skin permeability barrier dysfunction.

Amino Acid Sequence↗

[Comèl-Netherton syndrome].

The Comèl-Netherton syndrome is a rare autosomal recessive hereditary disease. A 23-year old female presented with the classical triad of ichthyosis linearis circumflexa, trichorrhexis invaginata with bamboo hairs of up to 12 cm length and atopic diathesis. Nevertheless, more than 20 years passed before the final diagnosis was established. In addition, the patient was slightly mentally retarded and suffered from a genital papillomatosis, minimal hypergammaglobulinaemia and a marked bilateral eyelid ectropion, more severe than previously reported. Oral therapy with Acitretin was quite successful.

Acitretin↗

Clinico-immunological heterogeneity in Comèl-Netherton syndrome.

BACKGROUND: Comèl-Netherton syndrome (CN) is characterized by atopic-eczema-like skin abnormalities combined with linear ichthyotic lesions, hair shaft abnormalities and atopy with high IgE levels. OBJECTIVE: Five children with CN are described. In 2 of the 3 CN patients still alive, analysis of cytokines regulating IgE synthesis was performed. METHODS: In peripheral blood mononuclear cells and cultures of purified T cells, mRNA expression and protein production of interleukin 4 (IL-4), IL-13, IL-5 and interferon gamma were analysed. The results were compared with the values in age-matched atopic dermatitis patients and healthy children. RESULTS: The 5 CN patients showed striking differences in disease severity and evolution. Marked differences were found in several cytokines in the 2 analysed CN patients. Low percentages of natural killer cells were observed in both CN patients. CONCLUSION: The regulation of IgE production in patients with CN is varied and complex. The CN patients were heterogeneous in terms of Th2 skewing.

Child↗

Severe hypernatremic dehydration in an infant with Netherton syndrome.

Netherthon syndrome is a rare autosomal recessive disease characterized by ichthyosis, the characteristic hair abnormality trichorrhexis invaginata and atopic manifestations. We report a female child with the severe hypernatremic dehydration form of the Netherton syndrome born as the first child of consanguineous parents. Ichthyosis was present at birth. She was admitted to the intensive care unit at the age of 4 days with important loss of weight and dehydration. Severe hypernatremia and convulsions occurred. Despite intensive care the baby died at the age of 11 days. The diagnosis of Netherton syndrome was confirmed by the finding of the pathognomonic hair shaft anomaly trichorrhexis invaginata (bamboo hair) and premature lamellar body secretion and foci of electron-dense material in the intercellular spaces of stratum corneum as relatively specific markers for Netherton syndrome. Netherton syndrome is characterized by a large variability in phenotypic expression. The major neonatal complication is the hypernatremic dehydration, which can be fatal as in this patient or complicated by neurologic signs (intracranial hemorrhage) and secondary sequellae. Molecular studies revealed a mutation in SPINK 5, encoding a serine protease inhibitor. Prenatal diagnosis was performed in the second pregnancy and showed that the fetus was equally affected.

Carrier Proteins↗

Prenatal diagnosis of a lethal form of Netherton syndrome by SPINK5 mutation analysis.

Netherton syndrome (NS) is a severe autosomal recessive ichthyosis with no specific treatment or prenatal diagnosis available at present. The recent identification of SPINK5, which encodes a serine protease inhibitor, as the defective gene enables DNA based prenatal diagnosis to be carried out. Here we report the first direct molecular prenatal diagnosis of a lethal form due to a recurrent SPINK5 mutation in three consanguineous Turkish families. XmnI restriction enzyme digestion and DNA sequencing demonstrated that each deceased affected child was homozygous for mutation 153delT inherited from each parent. Analysis of fetal DNA from amniotic fluid cells in Family 1 and from a chorionic villus sampling in Family 3 showed that the fetus was heterozygous for 153delT in both cases. The pregnancies were carried to term and the newborns were unaffected. In Family 2, fetal DNA analysis from chorionic villus biopsy showed in a first pregnancy that the fetus was homozygous for 153delT. The pregnancy was terminated at 13 weeks and DNA analysis of fetal keratinocytes confirmed the prenatal prediction. In a second pregnancy in Family 2, fetal DNA analysis showed heterozygosity for 153delT, and the pregnancy was continued. Direct SPINK5 mutation analysis in families at risk for NS represents the first early, rapid and reliable method for prenatal diagnosis of this life threatening form of ichthyosis.

Amniocentesis↗

Netherton syndrome: report of two Taiwanese siblings with staphylococcal scalded skin syndrome and mutation of SPINK5.

Netherton syndrome (NS) is a severe autosomal recessive ichthyosis. It is characterized by congenital ichthyosiform erythroderma, trichorrhexis invaginata, ichthyosis linearis circumflexa, atopic diathesis and frequent bacterial infections. Pathogenic mutations in SPINK5 have recently been identified in NS. SPINK5 encodes lymphoepithelial Kazal-type-related inhibitor (LEKTI), a new type of serine protease inhibitor involved in the regulation of skin barrier formation and immunity. We report two Taiwanese brothers with NS. The patients had typical manifestations of NS with an atopic diathesis and recurrent staphylococcal infections, including staphylococcal scalded skin syndrome (SSSS) since birth. Horny layers were obtained by skin surface biopsy for electron microscopy from lesional skin of both patients and from normal controls. All 33 exons and flanking intron boundaries of SPINK5 were amplified for direct sequencing. The ultrastructure of the stratum corneum (SC) was characterized by premature degradation of corneodesmosomes (CDs) with separation of corneocytes. A homozygous 2260A --> T (K754X) mutation of SPINK5 was found in both patients. Staphylococcal exfoliative toxin A (ETA) is a serine protease capable of cleaving desmoglein 1, an important adhesive molecule of CDs, and can cause separation of the SC, resulting in SSSS. The premature degradation of CDs found in our patients may be attributable to insufficient LEKTI, and possibly also to colonization/infection of ETA-producing Staphylococcus aureus. Mechanisms involved in the pathogenesis of the skin barrier defect in NS are proposed. Further study is needed to prove this hypothesis.

Base Sequence↗

Comèl-Netherton syndrome and peeling skin syndrome type B: overlapping syndromes or one entity?

BACKGROUND: A 42-year-old male patient suffering from the rare Comèl-Netherton syndrome is reported, and the symptoms are discussed together with the results of light and electron microscopic examinations. CASE REPORT: Our case presented peeling skin syndrome type B with spontaneous, lifelong skin shedding with underlying erythema; however, with more careful studies, the hidden features of Comèl-Netherton syndrome were identified. CONCLUSION: This is an example of a condition where there is no clear border between Comèl-Netherton syndrome and peeling skin syndrome type B, lending credence to a close relationship between the two syndromes.

Adult↗

Spink5-deficient mice mimic Netherton syndrome through degradation of desmoglein 1 by epidermal protease hyperactivity.

Mutations in SPINK5, encoding the serine protease inhibitor LEKTI, cause Netherton syndrome, a severe autosomal recessive genodermatosis. Spink5(-/-) mice faithfully replicate key features of Netherton syndrome, including altered desquamation, impaired keratinization, hair malformation and a skin barrier defect. LEKTI deficiency causes abnormal desmosome cleavage in the upper granular layer through degradation of desmoglein 1 due to stratum corneum tryptic enzyme and stratum corneum chymotryptic enzyme-like hyperactivity. This leads to defective stratum corneum adhesion and resultant loss of skin barrier function. Profilaggrin processing is increased and implicates LEKTI in the cornification process. This work identifies LEKTI as a key regulator of epidermal protease activity and degradation of desmoglein 1 as the primary pathogenic event in Netherton syndrome.

Animals↗