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A mutation in NFkB interacting protein 1 results in cardiomyopathy and abnormal skin development in wa3 mice.

We have identified waved 3 (wa3), a novel recessive mutation that causes abnormalities of the heart and skin. The cardiac defect results in a severe and rapidly progressive dilated cardiomyopathy. We identified the gene mutated in these mice, which we call NFkB interacting protein1 (Nkip1), using positional cloning. Nkip1 is expressed in skin, heart and vascular endothelium and shares homology with a small family of proteins that play a role in the regulation of transcription factors. A C-terminal fragment of this protein was previously identified as the RelA associated inhibitor (RAI). We show that the full-length protein is larger than previously described, and we confirm that it interacts with NFkB in vivo. Expression analysis of genes known to be regulated by NFkB revealed that Intercellular adhesion molecule 1 (Icam1) expression is consistently elevated in mutant mice. This result suggests that wa3 mutant mice represent a potentially important model for the analysis of the role of inflammatory processes in heart disease.

Animals↗

Molecular basis for the rhino Yurlovo (hr(rhY)) phenotype: severe skin abnormalities and female reproductive defects associated with an insertion in the hairless gene.

In 1989, mice bearing mutations at the hr (hairless) locus were first proposed as a model for the human hair growth disorder papular atrichia, since in both these mice and in corresponding patients, a complete hair loss develops due to disintegration of the normal follicle structure into dermal cysts and so-called utriculi. Recently, the human hairless gene was characterized, and pathogenetic mutations were found to be associated with a recessively inherited form atrichia with papular lesions; however, the functions of hr gene remain unclear. Allelic mutations in the murine hairless gene represent a potentially powerful tool to elucidate the role of the hairless gene protein product in hair follicle physiology. In 1980, several naked animals were discovered in a breeding colony of B10.R109/Y mice maintained in the Laboratory of Experimental Biological Models (L.E.B.M., Yurlovo, Moscow District, Russia). By cross breeding with hairless HRS/J hr/hr mice, this mutation was shown to be allelic with hairless. Here, we describe the molecular basis of the hr(rhY) mutation in mice, which consists of a 13 bp insertion in exon 16 of the hr gene. Histological evaluation of Yurlovo mouse skin revealed some differences as compared to the hairless and rhino mutations, with the formation of dermal megacysts being the most specific peculiarity of the Yurlovo mutation. These results, together with previous studies of hr(rhY)/hr(rhY) mutant mice, suggest that the rhino Yurlovo (hr(rhY)) mutation represents a third and potentially more severe variation of the hairless phenotype.

Animals↗

[Genetic interpretation of linear skin abnormalities].

For the linear distribution of congenital skin lesions, modern genetics offers several explanations. Localized linear nevi may be due to somatic mutations. Generalized linear nevi may be the result of early somatic mutations or of gametic half chromatid mutations. The generalized linear patterns of incontinentia pigmenti, focal dermal hypoplasia and sex-linked chondrodysplasia punctata may be explained by functional X-chromosome mosaicism. The same mechanism may account for a peculiar striation of bones observed in focal dermal hypoplasia. Exceptional cases of incontinentia pigmenti and focal dermal hypoplasia in males may be due in part to the gonosome constitution XXY, and in part to gametic half chromatid mutations.

Bone and Bones↗

Abnormal skin fibroblast cytogenetics in four dysmorphic patients with normal lymphocyte chromosomes.

Four patients with features suggestive of chromosome disorders but with normal lymphocyte karyotypes were found to have chromosome aberrations in skin fibroblast karyotypes. Although mosaicism for chromosome abnormalities in lymphocyte cultures is common, apparent restriction of mosaicism to one tissue is unusual. We suggest that after examination of lymphocyte karyotypes, certain patients warrant cytogenetic evaluation of a second tissue, usually cultured skin fibroblasts.

Adolescent↗

Craniofacial abnormalities, agenesis of the corpus callosum, polysyndactyly and abnormal skin and gut development--the Curry Jones syndrome.

Five children are described with a striking, asymmetric facial appearance, craniosynostosis, preaxial polysyndactyly, agenesis of the corpus callosum and unusual skin with streaky areas of atrophy. The gut and mucous membranes are involved in two patients. This paper includes two patients described by Gorlin (1990) under the designation of the Curry Jones syndrome.

Abnormalities, Multiple↗

Limb and skin abnormalities in mice lacking IKKalpha.

The gene encoding inhibitor of kappa B (IkappaB) kinase alpha (IKKalpha; also called IKK1) was disrupted by gene targeting. IKKalpha-deficient mice died perinatally. In IKKalpha-deficient fetuses, limb outgrowth was severely impaired despite unaffected skeletal development. The epidermal cells in IKKalpha-deficient fetuses were highly proliferative with dysregulated epidermal differentiation. In the basal layer, degradation of IkappaB and nuclear localization of nuclear factor kappa B (NF-kappaB) were not observed. Thus, IKKalpha is essential for NF-kappaB activation in the limb and skin during embryogenesis. In contrast, there was no impairment of NF-kappaB activation induced by either interleukin-1 or tumor necrosis factor-alpha in IKKalpha-deficient embryonic fibroblasts and thymocytes, indicating that IKKalpha is not essential for cytokine-induced activation of NF-kappaB.

Animals↗

Growth retardation and skin abnormalities of the Recql4-deficient mouse.

Mutations in the Recql4 gene are very likely responsible for a subset of Rothmund-Thomson syndrome (RTS) cases, but until now there has been no animal model to confirm this. Knockout mice in which the Recql4 gene is disrupted at exons 5-8 exhibit embryonic lethality at embryonic day 3.5-6.5. We generated a helicase activity-inhibited mouse by deleting exon 13 of Recql4, which is one of the coding exons of the consensus RecQ-helicase domain. This domain is the primary site of mutations that have been identified in RTS patients. The exon 13-deleted Recql4-deficient mice are viable, but exhibit severe growth retardation and abnormalities in several tissues, and embryonic fibroblasts show a defect in cell proliferation. Abnormalities in the Recql4-deficient mice are similar to those in RTS patients, suggesting that defects in the Recql4 gene may indeed be responsible for RTS. We speculate that the loss of Recql4 helicase activity results in the prematurely aged appearance observed in some RecQ helicase diseases.

Adenosine Triphosphatases↗

Skin abnormalities in mice transgenic for plasminogen activator inhibitor 1: implications for the regulation of desquamation and follicular neogenesis by plasminogen activator enzymes.

Plasminogen activator enzymes have been implicated in the regulation of growth, migration, and differentiation which occur continually in normal epidermis and cyclically in the hair follicle. To elucidate further the importance of plasminogen activation in epidermal physiology, studies were conducted using mice transgenic for human plasminogen activator inhibitor 1 (PAI-1). The epidermis of the newborn (4-7 days) transgenic mice was flaky and showed delayed hair growth compared to that of their control littermates. Histologic analyses revealed a greatly thickened stratum corneum in the transgenics. By 2 weeks after birth, no differences in epidermal morphology were apparent between transgenic and control littermates. Using in situ hybridization, immunocytochemistry, and in situ reverse zymography techniques, epidermal PAI-1 expression was correlated temporally with the aberrant epidermal morphology. These data implicate plasminogen activator activity in the regulation of epidermal shedding and follicular neogenesis.

Animals↗

Ichthyosis-characteristic appearance-mental retardation syndrome with distinct histological skin abnormalities.

In this report, we describe a 2.5-year-old severely mentally retarded boy with peculiar appearance and generalized ichthyosis, born to consanguineous Turkish parents. The histological finding in the skin biopsy of unusually large oval keratohyalin granules in the granular cells is unique, and hitherto has not been reported in other ichthyosis-mental retardation syndromes.

Abnormalities, Multiple↗

Congenital skin abnormalities.

It must be remembered that viral infections and maternal nutritional deficiencies can and do cause congenital skin diseases and must be included in a complete differential diagnosis list. These disorders are covered adequately in most current texts on infectious and nutritional diseases and therefore are not described here. When an hereditary, congenital skin disease is suspected, biopsy specimens should be submitted for diagnosis. Many breed associations have control programs for these types of diseases and only with veterinary and producer cooperation will these programs be successful.

Animals↗

Abnormal skin irritancy in atopic dermatitis and in atopy without dermatitis.

BACKGROUND AND DESIGN: Past observations have shown increased irritancy in patients with "conditioned hyperirritability" due to active dermatitis, including atopic dermatitis (AD). In less active atopic conditions, irritancy levels are less certain. We have utilized 48-hour Finn Chamber testing with graded dilutions of sodium lauryl sulfate to detect irritancy thresholds in well-defined groups of patients with AD, inactive AD, and allergic respiratory disease with no dermatitis and in normal nonatopic subjects. RESULTS: Significantly greater frequency of response to sodium lauryl sulfate in both AD groups and also in patients with allergic rhinitis with no dermatitis was seen. Effective concentrations of sodium lauryl sulfate causing irritation in 50% or more of subjects (ED50) ranged from 0.0625% to 0.31% in all atopic groups, percentages that were significantly lower than the normal ED50 of 0.60%. Response intensity was also significantly greater in each atopic group. CONCLUSIONS: Our results showed significantly greater irritant responses in atopic subjects with no skin disease or in subjects with inactive AD and confirmed past findings that showed greatly increased irritancy in patients with active AD. We hypothesize that abnormal intrinsic hyperreactivity in inflammatory cells, rather than in skin cells, in atopic individuals predisposes to a lowered threshold of irritant responsiveness.

Adolescent↗

Abnormal skin collagen in scleroderma.

A significant decrease in the content of hydroxyproline and hydroxylysine was found in the skin of patients with generalized scleroderma (acrosclerosis), the lowering of Hyp being more marked than that of Hyl. The production of an abnormal collagen or a change from one collagen type to another is suggested to take place.

Collagen↗