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Biomedical subjects

I Anton-Lamprecht

Publications and source records attributed to I Anton-Lamprecht.

At least 19 recordsLinked to original sources

A human keratin 14 "knockout": the absence of K14 leads to severe epidermolysis bullosa simplex and a function for an intermediate filament protein.

Since their discovery, the function of intermediate filaments (IFs) has remained obscure. In skin, epidermal cells have extensive cytoskeletal architectures of IFs, composed of type I and type II keratin heterodimers. Clues to possible functions of these proteins have come from recent studies showing that several autosomal-dominant, blistering skin disorders are caused by defects in genes that encode epidermal keratins. These diseases all exhibit cell degeneration and keratin network perturbations in cells that express the particular mutant keratin gene. However, it is not clear from these studies whether cytolysis arises from the presence of large insoluble keratin aggregates that compromise cellular physiology or from the absence of an extensive keratin filament network, which jeopardizes mechanical integrity. We report here the analysis of an extremely rare case of severe recessive epidermolysis bullosa simplex (EBS), where the patient lacks a discernible keratin filament network in basal epidermal cells. Genetic analyses revealed a homozygous point mutation that yielded a premature termination codon in the major basal type I keratin gene and caused complete ablation of K14. The consanguineous parents were normal, each harboring one copy of the null K14 mutation. Analysis of cultured keratinocytes enabled us to document that the loss of K14 is not compensated for by the up-regulation of any other type I keratin. When taken together with the in vivo studies showing the presence of cell fragility generated from the lack of an extensive basal keratin network, these findings provide the first clear demonstration of loss of function associated with the absence of an IF protein in vivo.

Amino Acid Sequence

[Hyalinosis cutis et mucosae and Ehlers-Danlos syndrome. A rare combination of syndromes].

We report on a 7-year-old boy suffering from two rare genetic diseases, namely hyalinosis cutis et mucosae and Ehlers-Danlos syndrome. The diagnosis was finally established after 7 years, by means of light and electron microscopy and immunohistology. Therefore, this report deals with the typical clinical and morphological features of both genetic disorders.

Basement Membrane

Junctional epidermolysis bullosa inversa (locus EBR2A) assigned to 1q31 by linkage and association to LAMC1.

Junctional epidermolysis bullosa inversa is an autosomal recessive blistering skin disease with an ultrastructural hemidesmosome defect similar to that of the Herlitz disease, yet with a non-lethal and different course of the disease. Its delineation is based on five geographically associated Norwegian families where all parents are likely to carry a mutant EBR2A allele identical in descent. Three informative families show a lod score of +1.65 at zero recombination to a trinucleotide repeat marker in intron 20 of the laminin gamma 1 (LAMC1, previously LAMB2) locus on 1q31. The four patients of these families are all homozygous for the 146 bp LAMC1 allele present only on 5% of random Norwegian chromosomes. The daughter of a deceased patient in a fourth family carries the same 146 bp allele. This extreme association confirms that the disease locus, EBR2A, is at or closely linked to LAMC1. Localized and generalized Mitis types as well as the majority of tested families with the Herlitz type of junctional epidermolysis bullosa appeared not to be similarly linked or associated to LAMC1. The MspI and AluI RFLPs of LAMC1 showed absolute allelic association. Each of the two RFLP haplotypes showed association to either 'long' or 'short' intron 20 STR alleles.

Alleles

Ultrastructural identification of basic abnormalities as clues to genetic disorders of the epidermis.

The present article discusses specific, directly gene-dependent ultrastructural markers of dominantly inherited epidermal disorders that serve as clues to their underlying molecular genetic abnormalities. These are epidermolysis bullosa simplex Koebner and Weber-Cockayne with rupture or non-assembly of basal cell keratins and point mutations in keratins 5 and 14. Clumping of basal cell keratins is pathognomonic of EB Dowling-Meara and caused by mutations in hot spots of the rod domain of K5 and K 14. Clumps and aggregates of basal keratins occur side by side in the same cell and thus do not indicate specific different types of mutations. Similar clumping of suprabasal keratins in bullous CIE Brocq and in palmoplantar keratoderma Voerner have been assigned to identical types of mutations in the same critical position of the rod domain in K 1, K 10, and K 9, respectively. Highly unusual tubular keratins are pathognomonic of another dominant palmoplantar keratoderma type the genetic basis of which still awaits elucidation. Shell formation of (low molecular weight?) keratins in ichthyosis hystrix Curth-Macklin is not linked to the keratin gene clusters on chromosomes 12 and 17 and might be related to regulatory genes of keratin expression. Suprabasal shells in congenital reticular ichthyosiform erythroderma do not consist of keratins but resemble glycoprotein networks. Finally, the keratohyalin abnormality in ichthyosis vulgaris was the clue for the identification of a filaggrin deficiency, at the same time giving evidence to the heterogeneity of keratohyalin proteins.

Epidermis

[Erythrokeratolysis hiemalis. Erythematosquamous genetic dermatosis with seasonal manifestation].

Erythrokeratolysis hiemalis, keratolytic winter erythema or Oudtshoorn skin has been reported from the South African district of Oudtshoorn as a dominantly inherited dermatosis beginning in early childhood, in some cases with circinar scaling erythemas. Seasonal manifestation in winter-time and a characteristic multi-form histology distinguish this dermatosis from other childhood scaling erythemas. We present clinical, histological and preliminary immunohistological data of a 4-year-old girl with the attributes of erythrokeratolysis hiemalis. No ancestors from the endemic region were traced. The lack of further cases in the family is interpreted as indicative of a spontaneous dominant new mutation.

Child, Preschool

A mutational hot spot in keratin 10 (KRT 10) in patients with epidermolytic hyperkeratosis.

Epidermolytic hyperkeratosis (EHK), (bullous congenital ichthyosiform erythroderma), is an autosomal dominant human skin disorder. Recently, we and others have described mutations in keratins 1 and 10 (K1 and K10) in patients with this disease. Structure-function models predict that these mutations would impair normal filament assembly and function. We have extended our earlier studies to include 8 more incidences of EHK. In half of these families, we were unable to locate a mutation within the rod domains of either K1 or K10. However, polymorphic restriction site and sequence analysis of the other families revealed a mutational hot spot within the 1A alpha-helical segment of K10. These involve Arginine to Histidine, Arginine to Cysteine and Arginine to Leucine substitutions at residue 10 of the rod domain. Interestingly, mutations in the corresponding Arginine residue in keratin K14 have been identified in patients with epidermolysis bullosa simplex. The large number of mutations found at this position in both keratins K10 and K14 suggests that other epithelia cell disorders will be discovered that are caused by the corresponding mutation in related type I keratin genes.

Amino Acid Sequence

False-negative prenatal diagnosis of restrictive dermopathy.

Restrictive dermopathy is a rare autosomal recessive lethal skin dysplasia. It has been assumed that the characteristic morphologic abnormalities should allow a reliable prenatal diagnosis on fetal skin biopsies at about 20 weeks pregnancy. We report on a false-negative prenatal diagnosis.

Abnormalities, Multiple

Congenital ichthyosis with hypogonadism and growth retardation--a new syndrome with peculiar ultrastructural features.

A male patient presented with a congenital ichthyosis clinically characterized by generalized erythroderma, fine scaling on the trunk and palmoplantar hyperkeratoses with severely affected nails. The acanthotic epidermis was characterized by hyperproliferation with a large quantity of mitoses and extremely suppressed keratinization without a normal granular layer. The horny layer was parakeratotic and contained remnants of cell debris and lipid droplets. Ultrastructurally the prickle cell layer was characterized by binuclear cells, oedematization of the keratinocytes and isolated dyskeratotic cells. Some suprabasal cells showed unusual morphological features, containing nuclei with cytoplasmic pseudoinclusions, sometimes leading to a complete disintegration of the nuclear structure, and bowl- and lens-shaped accumulations of a filamentous material. Instead of normal tonofibrils, the aggregated material consisted of fine interlacing filaments. The latter are compared with the filamentous shells in ichthyosis hystrix Curth-Macklin and congenital reticular ichthyosiform erythroderma. The clinical symptomatology--congenital ichthyosis, growth retardation, secondary hypogonadism, hepatomegaly--and the ultrastructural characteristics of the keratinization disorder indicate that the present case cannot be considered as a subtype of the recessively inherited ichthyosis congenita group, but suggest a new syndrome as a separate nosologic entity.

Adult

[Ozena and allergic rhinitis in ichthyosis vulgaris].

The clinical course of an ozaena in a patient with an autosomal dominant ichthyosis vulgaris was complicated by the skin disease related atopic disposition with allergic rhinitis. Electron microscopic studies of the pathologically keratinized mucosa of the nasopharynx revealed a similar defect of the mucosal keratohyalin caused by the absence of the protein filaggrin.

Chromosome Aberrations

Anchoring fibrils, collagen VII, and neutral metalloproteases in recessive dystrophic epidermolysis bullosa inversa.

Structure of the anchoring fibrils, expression of collagen VII, and gelatinolytic activity in skin fibroblasts were assessed in six patients with epidermolysis bullosa dystrophica (EBD) inversa and in control groups consisting of probands with other EBD subtypes and healthy individuals. All six patients with EBD inversa, as well as the patients with generalized non-mutilating and localized EBD, showed positive staining with antibodies to collagen VII, the major anchoring fibril protein. Four patients with severe generalized mutilating EBD exhibited negative staining. Ultrastructurally, normal anchoring fibrils were demonstrable in uninvolved skin of patients with localized, inversa, and generalized non-mutilating subtypes. At the same time, a high degree of variability was observed in the amount and quality of anchoring fibrils in the various stages of lesional skin, including co-existence of normal and partially degraded anchoring fibrils. Of all 12 patients only one localized and two inversa cases showed an increased gelatinolytic activity in vitro. However, the high activity was associated with neither the severity of the disease nor the inversa subtype. In addition, intact collagen VII could be extracted from the dermis of one inversa patient. The present data show no correlation between increased in vitro gelatinolytic activity and abnormalities of the anchoring fibrils or collagen VII in skin of patients with recessive EBD, and therefore suggest molecular heterogeneity of the causative pathogenetic mechanisms.

Adolescent

Restrictive dermopathy in two brothers.

BACKGROUND: Restrictive dermopathy is an autosomal recessive phenotype characterized by universal tautness of skin resulting in fetal akinesia and death during the neonatal period. The clinical signs and symptoms of this uncommon disease are described in two brothers, and evidence is provided that fetal biopsy specimens obtained during the 20th week of gestational age are nondiagnostic. OBSERVATIONS: The first patient was a growth-retarded preterm boy suffering from generalized desquamation, marked joint contractures, and facial hypoplasia. Prominent light microscopic findings were hyperorthokeratosis intermingled with parakeratosis and absence of the elastic fibers in a thinned dermis. Electron microscopic examination of the epidermis revealed a lack of keratin filaments and an abnormal globular shape of the keratohyalin granules. The child died 4 days after birth. A following pregnancy resulted in birth of a preterm boy who died of the same disease within 2 hours. In the 20th week of gestational age, fetal biopsy specimens were obtained, but light and electron microscopy failed to reveal any abnormalities. CONCLUSIONS: Restrictive dermopathy is a genuine skin disease resulting in fetal akinesia that precludes a normal intrauterine development. The clinical features of this disorder are so distinctive that an on-the-spot diagnosis can be established. In view of the data obtained in this case, the feasibility of prenatal diagnosis should be regarded with great caution.

Face

Early preclinical diagnosis of dominant pseudoxanthoma elasticum by specific ultrastructural changes of dermal elastic and collagen tissue in a family at risk.

The preferred description for the Grönblad-Strandberg syndrome, pseudoxanthoma elasticum (PXE), refers only to the cutaneous aspect of the disease, although the skin is the least severely involved organ. The potential catastrophic manifestation of this heterogeneous heritable disorder is described in a dominant pedigree where mother and grandmother died because of major vascular problems. The family requested predictive testing of the three children. Diagnosis of PXE is usually performed by morphological examination of skin lesions, which reveal incrustations formed by inorganic ions (mainly calcium) and various organic (degraded?) materials in the elastin moiety of the elastic fibers. The ubiquitous elastic fibers in other organs and arteries may be similarly involved. Moreover, there is co-involvement of collagen fibrils at the electron microscopical level. The three adolescent siblings did not show any clinical PXE symptoms. However, ultrastructural investigation of overtly normal skin in predilection sites gave a positive diagnosis for this dominant PXE type. Dermal connective tissue showed a specific aberrant pattern: elastin of elastic fibers regularly contained small foci of calcification resembling those in perilesional skin of the mother and other PXE patients; in collagen bundles adjacent to altered elastic fibers, collagen fibrils occurred with thickened diameters and flower-like contours; ground substance material was increased. The possible pathogenetic mechanism and problems posed by predictive testing of adult-onset diseases are discussed.

Adolescent

Keratohyalin granules are heterogeneous in ridged and non-ridged human skin: evidence from anti-filaggrin immunogold labelling of normal skin and skin of autosomal dominant ichthyosis vulgaris patients.

Recent biochemical and morphological investigations have provided evidence for a heterogeneous composition of keratohyalin in human skin. A major component is filaggrin. In interfollicular epidermis the heterogeneity of keratohyalin is not directly visible, whereas in normal ridged skin bicomponent keratohyalin is revealed by electron microscopy. Skin biopsies of ridged and non-ridged skin of normal individuals and patients with autosomal dominant ichthyosis vulgaris (ADI)--characterized by defective keratohyalin synthesis and lack of filaggrin--were investigated by routine transmission electron microscopy and immunogold postembedding techniques using a commercial monoclonal anti-filaggrin antibody. In normal interfollicular epidermis filaggrin labelling was demonstrated on keratohyalin granules and in the lowermost cornified cells, whereas in ADI patients crumbly keratohyalin granules were present that did not show specific labelling for filaggrin. In normal ridged skin only the major (more electron-dense) component reacted with anti-filaggrin, whereas the attached (less electron-dense) component did not react. Ridged skin of ADI patients contained globular keratohyalin that did not react with anti-filaggrin, thus corresponding to the attached keratohyalin component in normal ridged skin. Our results provide a visible counterpart to the recent biochemical investigations of keratohyalin protein heterogeneity and contribute to the understanding of terminal differentiation in human skin and of the defective keratohyalin synthesis in ADI.

Adult

[Hyalinosis cutis et mucosae (Urbach-Wiethe disease)--ultrastructural and immunological characteristics].

In this report on a young female patient with hyalinosis cutis et mucosae (Urbach-Wiethe disease, lipoid proteinosis), we present the clinical, immunological and ultrastructural features of this inherited disorder and discuss the differential diagnosis against other interstitial connective tissue depositions. Immunologically, the most important result was the increased amount of collagen type IV at the junction zones of epidermis, dermal vessels and appendages. This was in accordance with the ultrastructural deposition of hyalin material, mainly consisting of multiplied basal laminae at the respective junction zones. The pathogenesis (gene defect or defective gene regulation?) and therapy are discussed.

Adult

Prenatal diagnosis of X-linked hypohidrotic ectodermal dysplasia by linkage analysis.

Prenatal diagnosis of X-linked hypohidrotic ectodermal dysplasia was previously performed by the direct histological analysis of fetal skin obtained by late second trimester fetoscopy. The recent gene mapping of the locus for the disorder to the region of Xq11-21.1 now permits the indirect prenatal diagnosis of the disorder by the method of linkage analysis, based on closely linked marker loci, during the first trimester of pregnancy. We report the prenatal diagnosis of a male fetus with a high probability of the disorder by a linkage analysis utilizing restriction fragment length polymorphisms at the DXS159, PGK1, and DXS72 loci, from a DNA sample obtained by a chorionic villus biopsy at 9 weeks gestation. After further counseling, the pregnancy was terminated but the diagnosis could not be confirmed by histological analysis, even though analysis of skin samples by light and electron microscopy showed lack of hair germs, primary dermal ridges, and sweat gland primordia, due to the early developmental stage of the fetus. The use of DNA-based linkage analysis now offers the opportunity for an earlier diagnosis of X-linked hypohidrotic ectodermal dysplasia by a method other than fetal skin sampling. However, families must also fully understand the present limitations of the method prior to undertaking the procedure.

Adult

Applicability of 19-DEJ-1 monoclonal antibody for the prenatal diagnosis or exclusion of junctional epidermolysis bullosa.

Recently a monoclonal antibody (19-DEJ-1) was produced with binding specificity for the mid-lamina lucida of the skin dermo-epidermal junction, in very close association with overlying hemidesmosomes. Since skin cleavage occurs within the lamina lucida in the inherited blistering disorder, junctional epidermolysis bullosa (EB), and is associated with aberrations in the morphology and/or number of hemidesmosomes in such tissue, we have sought to determine whether this monoclonal antibody could be used for prenatal diagnosis. Fetoscopy-directed skin biopsies were obtained from two fetuses at risk for junctional EB and post-mortem samples from two other fetuses with the Herlitz type of junctional EB, the latter after prenatal diagnosis by electron microscopy and termination of each pregnancy. Specimens were examined in part by light and electron microscopy for evidence of skin cleavage or other alterations in morphology, and in part by indirect immunofluorescence for altered basement membrane antigenicity. Three of four fetuses were shown to have intra-lamina lucida blister formation indicative of, and hemidesmosome hypoplasia proving, junctional EB. Each was also shown to lack expression of GB3 and 19-DEJ-1 antigens, consistent with findings noted postnatally in junctional EB; diagnosis was confirmed in each at the time of therapeutic abortion. A fourth fetus had no abnormalities detected; lack of disease involvement was confirmed at the time of delivery, and subsequently over 8 months of careful serial evaluation. We conclude that 19-DEJ-1 monoclonal antibody is an accurate and sensitive immunohistochemical probe for junctional EB, and may be employed in the prenatal diagnostic evaluation of fetuses at risk for this disorder.

Antibodies, Monoclonal