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Biomedical subjects

A Ishida-Yamamoto

Publications and source records attributed to A Ishida-Yamamoto.

At least 19 recordsLinked to original sources

Lessons from disorders of epidermal differentiation-associated keratins.

A number of diseases have been associated with mutations in genes encoding keratin intermediate filaments. Several of these disorders have skin manifestations, in which histological changes highlight the role of various different keratins in epidermal differentiation. For example, mutations in either K1 or K10 (the major keratin pair expressed in differentiated keratinocytes) usually lead to clumped keratin filaments and cytolysis. Furthermore, the precise nature of the mutation has direct implications for disease phenotype. Specifically, mutations in the H1 and alpha-helical rod domains of K1/K10 result in bullous congenital ichthyosiform erythroderma, underscoring the critical role for this keratin filament domain in maintaining cellular integrity. However, a lysine to isoleucine substitution in the V1 domain of K1 underlies a form of palmoplantar keratoderma, which has different cell biological implications. Keratins are cross-linked into the cornified cell envelopes through this particular lysine residue and the consequences of the mutation lead to changes in keratin-desmosome association and cornified cell morphology, suggesting a role for this keratin subdomain in cornified cell envelope formation. Recently, to extend genotype-phenotype correlation, a frameshift mutation in the V2 region of the K1 tail domain was identified in ichthyosis hystrix (Curth-Macklin type), in which keratin filaments show a characteristic shell-like structure and fail to form proper bundles. In this case, the association of desmosomes with loricrin was also altered, implicating this keratin domain in organizing the intracellular distribution of loricrin during cornification. Collectively, these mutations in K1/K10 provide a fascinating insight into both normal and abnormal processes of epidermal differentiation.

Animals↗

Expression of human cystatin A by keratinocytes is positively regulated via the Ras/MEKK1/MKK7/JNK signal transduction pathway but negatively regulated via the Ras/Raf-1/MEK1/ERK pathway.

Cystatin A, a cysteine proteinase inhibitor, is a cornified cell envelope constituent expressed in the upper epidermis. We previously reported that a potent protein kinase C activator, 12-O-tetradecanoylphorbol-13-acetate, increases human cystatin A expression by the activation of AP-1 proteins. Here, we delineate the signaling cascade responsible for this regulation. Co-transfection of the cystatin A promoter into normal human keratinocytes together with a dominant active form of ras increased the promoter activity by 3-fold. In contrast, a dominant negative form of ras suppressed basal cystatin A promoter activity. Further analyses disclosed that transfection of dominant negative forms of raf-1, MEK1, ERK1, ERK2, or wild-type MEKK1 all increased cystatin A promoter activity in normal human keratinocytes, whereas wild-type raf-1, ERK1, ERK2, or dominant negative forms of MEKK1, MKK7, or JNK1 suppressed the promoter activity. The increased or decreased promoter activity reflected the expression of cystatin A on mRNA and protein levels. These effects were not observed when a cystatin A promoter with a T2 (-272 to -278) deletion was used. In contrast, transfection of dominant negative forms of MKK3, MKK4, or p38 did not affect cystatin A promoter activity. Immunohistochemical analyses revealed that phosphorylated active extracellular signal-regulated kinases and c-Jun N-terminal kinase were expressed in the nuclei of basal cells and cells in the suprabasal-granular cell layer, respectively. These results indicate that the expression of cystatin A is regulated via mitogen-activated protein kinase pathways positively by Ras/MEKK1/MKK7/JNK and negatively by Ras/Raf/MEK1/ERK.

Adenoviridae↗

Differential phosphorylation of mitogen-activated protein kinase families by epidermal growth factor and ultraviolet B irradiation in SV40-transformed human keratinocytes.

SV-40 transformed human keratinocytes (SVHK cells) were stimulated with epidermal growth factor (EGF) and ultraviolet B (UVB) irradiation. Following the stimulation, cell growth, apoptosis, and the activities of mitogen-activated protein (MAP) kinase families were analyzed. EGF (100 ng/ml) increased SVHK cell number compared with control cells cultured in serum-free DMEM medium. The EGF-stimulated cells did not show DNA fragmentation. In contrast, UVB irradiation (40 mJ/cm(2)) markedly decreased viable cell number that was accompanied with DNA fragmentation. EGF stimulated extracellular signal-regulated kinase (ERK) and stress-activated protein kinase/c-Jun N-terminal kinase (JNK). Following the EGF stimulation, phosphorylated ERK and JNK were detected by phospho-p42/44 MAP kinase antibody and phospho-SAPK/JNK antibody, respectively. On the other hand, UVB irradiation stimulated the phosphorylation of p38 and JNK but not of ERK. The stimulation of ERK and JNK induced by EGF was observed earlier than the stimulation of p38 and JNK induced by UVB. PD98059, a specific MAP kinase kinase (MAPKK) 1 (also referred to as MEK1) inhibitor, inhibited EGF-dependent cell proliferation, that was associated with the inhibition of ERK and JNK phosphorylation. In contrast, UVB-induced overall cell death was not significantly affected by PD98059, that inhibited phosphorylation of JNK but not of p38. PD98059, however, significantly augmented UVB-induced cell death earlier time points (30 min--2 h). These results indicate that ERK and JNK are activated following EGF stimulation that might be associated with cell proliferation. On the other hand, UVB-induced apoptosis seems to be mostly associated with the activation of p38. JNK stimulation might provide an anti-apoptotic tonus during the UVB-induced, p38-associated SVHK cell death.

Cell Death↗

RCAS1 antigen is highly expressed in extramammary Paget's disease and in advanced stage squamous cell carcinoma of the skin.

Receptor-binding cancer antigen expressed on SiSo cells (RCAS1), which is a type II membrane protein expressed on cervical carcinoma cells, induces apoptosis in RCAS1 receptor expressing cells. RCAS1 is thus presumed to protect tumor cells from immune surveillance by infiltrating RCAS1 receptor-positive immunocytes (Sonoda et al. Int J Oncol 1995; 6: 1899-1904; Nakashima et al. Nature Med 1999; 5: 938-942). We performed immunohistochemical analysis of RCAS1 expression in various skin tumors. RCAS1 was not detected in normal human epidermis. One of 21 seborrheic keratosis (4.8%), one of 12 actinic keratosis (8.3%), two of 16 keratoacanthomas (12.5%), and two of 14 basal cell carcinomas (14.2%) expressed RCAS1. RCAS1 was not detected in Bowen's disease (0/17). RCAS1 was positive in 45 of 61 (73.8%) squamous cell carcinomas. Interestingly, the expression of RCAS1 was mostly correlated with clinical stages of squamous cell carcinoma. It was found that 46.1% of stage I, 61.1% of stage II, 85.7% of stage III, and 83.3% of stage IV squamous cell carcinomas were RCAS1-positive. In addition, RCAS1 was found to be highly expressed in extramammary Paget's disease. Fifty nine of 63 extramammary Paget's disease samples (93.7%) were positive for RCAS1. Fifty eight (92%) showed co-expression of RCAS1 and carcinoembryonic antigen (CEA). While two of 24 cases of melanoma (8.3%) expressed RCAS1 antigen, none of 20 cases of nevus pigmentosus showed positive staining. These results indicate that RCAS1 is a highly sensitive marker for extramammary Paget's disease. RCAS1 is also expressed in various skin tumors including squamous cell carcinoma, where positive correlation with clinical staging was documented.

Antigens, Neoplasm↗

Novel mutations of ATP2A2 gene in Japanese patients of Darier's disease.

Darier's disease (DD) is a rare, dominantly inherited skin disorder with abnormal keratinization and acantholysis. Recently, mutations of ATP2A2 encoding the sarco/endoplasmic reticulum Ca(2+)-ATPase type 2 isoform (SERCA2) have been reported in Caucasian DD families. In the present study, we examined the ATP2A2 gene mutations of three sporadic (AS1,AS3,AS4) and one familial (AS2) Japanese DD patients. Sequence analysis revealed that the patients had novel mutations, one nonsense mutation (AS1 (C613X)) and three single base changes leading to amino acid substitutions (AS2 (L321F), AS3 (I274V), and AS4 (M719I)). These results demonstrate that distinct ATP2A2 gene mutations are present in Japanese DD patients.

Aged↗

Nuclear localization of beta-catenin in the hair matrix cells and differentiated keratinocytes.

Beta-catenin is a structural component of adherens junctions and also a downstream effector of Wnt signaling pathway. Beta-catenin has been detected in the adherens junctions in almost all normal tissues including the epidermis. Only in some malignant tumor cells was it found in the cytoplasm and nuclei. Recently pilomatricoma was found to be caused by mutations of amino-terminal segment of beta-catenin, normally involved in phosphorylation-dependent ubiquitin-mediated degradation of the protein. Since nuclear beta-catenin has not been detected in pilomatricoma or any other benign follicular tumors, we investigated localization of beta-catenin in the normal hair follicle, follicular tumor cells, normal and psoriatic epidermis by using immunohistochemical method with a high temperature antigen unmasking technique. The nuclear localization of beta-catenin was detected not only in the matrix cells of follicular tumors including pilomatricoma but also in the normal hair matrix cells and the differentiated keratinocytes of the upper layers of the epidermis. Cell membrane staining of beta-catenin and E-cadherin was decreased in these differentiated keratinocytes. This coincided with the emergence of nuclear beta-catenin. The present immunohistochemical method has revealed hitherto unproven nuclear localization of beta-catenin in hair matrix cells. Our results also provided evidence suggesting that beta-catenin plays an important role in keratinocyte differentiation.

Cell Differentiation↗

Corneodesmosin expression in psoriasis vulgaris differs from normal skin and other inflammatory skin disorders.

SUMMARY: Corneodesmosin (Cdsn) is a late differentiation epidermal glycoprotein putatively involved in keratinocyte adhesion. The Cdsn gene lies within the susceptibility region on chromosome 6p21.3 (PSORS1) for psoriasis, a common chronic disfiguring skin disease. A particular allelic variant of Cdsn has a strong association with psoriasis. Therefore, genetically and biologically, Cdsn is a possible candidate gene for psoriasis susceptibility. To investigate a potential role for Cdsn in psoriasis pathogenesis, protein expression studies were performed by quantitative immunohistochemistry on normal skin, psoriatic skin (lesional and nonlesional), and other skin disorders using monoclonal antibodies (G36-19 and F28-27). In normal and nonlesional skin, Cdsn was expressed in stratum corneum and one or two layers of superficial stratum granulosum. In lesional psoriasis, there was a significant increase in Cdsn expression, which was observed in multiple layers of stratum spinosum and in stratum corneum. The expression pattern varied from granular, cytoplasmic immunoreactivity to cell surface labeling with weakly immunoreactive cytoplasm. In chronic atopic dermatitis, lichen planus, mycosis fungoides, and pityriasis rubra pilaris, Cdsn immunoreactivity was confined to stratum corneum and upper stratum granulosum with no stratum spinosum immunoreactivity. Immunoelectron microscopy of normal and lesional psoriatic skin demonstrated Cdsn release concomitant with involucrin incorporation into cell envelopes and completed before mature envelope formation. Extracellular release of Cdsn occurred at a lower level of the epidermis in psoriasis than normal skin. These protein expression studies provide evidence of altered Cdsn expression in psoriasis consistent with a role of Cdsn in disease pathogenesis. Further functional and genetic studies of Cdsn are justified to determine its role as a potential psoriasis-susceptibility factor.

Chromosomes, Human, Pair 6↗

Ultraviolet B irradiation induces apoptosis of keratinocytes by direct activation of Fas antigen.

Ultraviolet B (UVB) irradiation induces apoptosis of keratinocytes, where p53 has been suggested to play an important role. Recently we have shown that UVB irradiation induces apoptosis of SV40-transformed human keratinocytes (SVHK cells). Because p53 function is impaired in SVHK cells by large T antigen, a UVB-induced p53-independent apoptotic pathway was suggested. We investigated the UVB-induced apoptotic pathway using various keratinocytes. Cultured mouse keratinocytes of homozygous p53 deficient mice (p53(-/-)) were markedly resistant to UVB-induced apoptosis compared with keratinocytes from wild or heterozygous p53 deficient mice (p53(-/+)). Twenty per cent of keratinocytes derived from p53 (-/-) mice, however, induced apoptosis following UVB irradiation. Analysis using caspase inhibitors disclosed activation of caspase 8 and 3 in UVB-irradiated SVHK cells. Keratinocytes derived from MRL/lpr mice, which have mutated Fas antigen, showed diminished UVB-induced apoptosis suggesting that Fas antigen is significantly involved in UVB-induced apoptosis. Immunohistochemical analysis revealed that UVB irradiation induces aggregation of Fas antigen showing a dense dot-like staining, which was also observed in SVHK cells treated with agonistic anti-Fas antibody, CH11. Pretreatment of antagonistic anti-Fas antibody, ZB4, inhibited CH11-induced but not UVB-induced multimerization of Fas antigen. Furthemore, UVB irradiation did not affect the basal expression of Fas ligand mRNA, protein and soluble Fas ligand. These results indicate that UVB irradiation induces multimerization of Fas antigen that results in apoptosis without the Fas ligand.

Animals↗

Loricrin keratoderma: a cause of congenital ichthyosiform erythroderma and collodion baby.

A group of hereditary palmoplantar keratodermas due to heterozygous mutation in the loricrin gene has recently been identified. Of five reported pedigrees, four presented as mutilating keratoderma with ichthyosis (variant Vohwinkel syndrome), and one as progressive symmetric erythrokeratoderma. We report a new Japanese pedigree of loricrin keratoderma. A 14-year-old male and his 11-year-old female sibling had both been born as collodion babies and were initially diagnosed as having non-bullous congenital ichthyosiform erythroderma, but later developed palmoplantar keratoderma with pseudoainhum. Their father was similarly affected. Direct sequencing of genomic DNA revealed a G residue insertion at codon 230-231 of the loricrin gene. Antibody studies confirmed the presence of mutant loricrin in the retained nuclei. We conclude that loricrin gene mutation may present as congenital ichthyosiform erythroderma, and should be included in the differential diagnosis of collodion baby.

Adolescent↗

Evidence for novel functions of the keratin tail emerging from a mutation causing ichthyosis hystrix.

Unraveling the molecular basis of inherited disorders of epithelial fragility has led to understanding of the complex structure and function of keratin intermediate filaments. Keratins are organized as a central alpha-helical rod domain flanked by nonhelical, variable end domains. Pathogenic mutations in 19 different keratin genes have been identified in sequences corresponding to conserved regions at the beginning and end of the rod. These areas have been recognized as zones of overlap between aligned keratin proteins and are thought to be crucial for proper assembly of keratin intermediate filaments. Consequently, all keratin disorders of skin, hair, nail, and mucous membranes caused by mutations in rod domain sequences are characterized by perinuclear clumping of fragmented keratin intermediate filaments, thus compromising mechanical strength and cell integrity. We report here the first mutation in a keratin gene (KRT1) that affects the variable tail domain (V2) and results in a profoundly different abnormality of the cytoskeletal architecture leading to a severe form of epidermal hyperkeratosis known as ichthyosis hystrix Curth-Macklin. Structural analyses disclosed a failure in keratin intermediate filament bundling, retraction of the cytoskeleton from the nucleus, and failed translocation of loricrin to the desmosomal plaques. These data provide the first in vivo evidence for the crucial role of a keratin tail domain in supramolecular keratin intermediate filament organization and barrier formation.

Amino Acid Sequence↗

Syringocystadenocarcinoma papilliferum: case report and immunohistochemical comparison with its benign counterpart.

Syringocystadenocarcinoma papilliferum (SCACP) is the malignant counterpart of syringocystadenoma papilliferum (SCAP), although only a few cases have been reported in the literature and its clinical and histologic characteristics are not well known. We report a case of SCACP that started as an enlarging nodule over 10 years in the perianal area of a 61-year-old man. Macroscopically, the lesion was a black exophytic tumor, 6 cm in diameter, with a granular surface. Histologically, it was an in situ adenocarcinoma, showing cytologic atypia and pagetoid spread in the surrounding epithelia, although the clinicopathologic features were distinct from extramammary Paget's disease. The tumor lacked the typical double-layered pattern of SCAP but had some similar histopathologic features to SCAP. Decapitation secretion was apparent and there was positive immunoreactivity to epithelial membrane antigen and human milk fat globules subclass 2. SCACP is a rare cutaneous tumor but nevertheless represents a specific dermatopathologic entity.

Adenocarcinoma↗

Pigmented Paget's disease of the male breast: report of a case.

An 83-year-old man with pigmented Paget's disease of the breast is reported. He had a blackish swollen right nipple with bloody discharge that lasted for 8 months. Histopathology of the lesion disclosed intraepidermal and dermal atypical cells forming small clusters and underlying intraductal carcinoma. Melanocytes were dispersed in the epidermis. Dermal melanophages were also detected. The atypical cells were positive for carcinoembryonic antigen, human-milk fat globule protein and a recently described new antigen, RCAS-1, but negative for S-100 or HMB-45. We diagnosed this case as Paget's disease of the male breast. Paget's disease of the breast is usually nonpigmented and occurs almost exclusively in women. Pigmented Paget's disease of the male breast is extremely rare, and only a few cases have been reported. Albeit rare, pigmented Paget's disease has to be included in the differential diagnosis of pigmented lesions of the nipple.

Aged↗

In vitro and in vivo transfer of bcl-2 gene into keratinocytes suppresses UVB-induced apoptosis.

Bcl-2 is a member of the large Bcl-2 family and protects cells from apoptosis. Ultraviolet B (UVB) irradiation induces apoptosis of keratinocytes that is known as "sunburn cells." Previously we reported that UVB irradiation induces apoptosis accompanied by sequential activation of caspase 8, 3 and 1 in keratinocytes, and that the process is inhibited by various caspase inhibitors. Using bcl-2-expressing adenovirus vector we investigated the effect of Bcl-2 on UVB-induced apoptosis. Adenovirus vector efficiently introduced bcl-2 gene in cultured normal mouse keratinocytes (NMK cells); almost all NMK cells (1 x 10(6)) were transfected at 1 x 10(8) plaque-forming unit (PFU)/mL. Bcl-2-transfected NMK cells were significantly resistant to UVB-induced apoptosis with the suppressive effect dependent on the Bcl-2 expression level. Following UVB irradiation caspase 8, 3 and 9 activities were stimulated in NMK cells, whereas in bcl-2-transfected cells only caspase 8, but not caspase 3 or 9, activity was stimulated. In order to investigate the effect of Bcl-2 in vivo topical application of Ad-bcl-2 on tape-stripped mouse skin was performed. Following the application Bcl-2 was efficiently overexpressed in almost all viable keratinocytes. The expression was transient with the maximal expression of Bcl-2 on the first day following the application of 1 x 10(9) PFU in 200 microL. The introduced Bcl-2 remained at least for 6 days. UVB irradiation (1250 J/m2) induced apoptosis within 12 h and the maximal effect was observed at 24 h in control mouse skin. Both bcl-2-transfected and topical caspase 3 inhibitor-treated mice skin were resistant to UVB-induced apoptosis. The suppressive effect of Bcl-2 was more potent than that of caspase 3 inhibitor application. Topical application of empty adenovirus vector alone had no effect on Bcl-2 expression or UVB-induced apoptosis. These results indicate that adenovirus vector is an efficient gene delivery system into keratinocytes and that Bcl-2 is a potent inhibitor of UVB-induced apoptosis both in vitro and in vivo.

Adenoviridae↗

Transcriptional factor AP-2gamma increases human cystatin A gene transcription of keratinocytes.

The transcriptional activator protein-2 (AP-2) has been suggested to participate in keratinocyte gene regulation. Cystatin A, a cysteine proteinase inhibitor, is one of the cornified cell envelope constituents and is expressed in the upper epidermis. We report AP-2-dependent transcriptional regulation of cystatin A gene expression of keratinocytes. At least three isoforms of AP-2 (AP-2 alpha, beta, gamma) have been described. Transfection of AP-2alpha, beta and gamma expression vectors into cultured normal human keratinocytes (NHK) resulted in increased cystatin A expression in both mRNA and protein levels. Among the three isoforms AP-2gamma was most potent in inducing cystatin A expression. In contrast, transfection of antisense oriented AP-2gamma expression vector decreased basal AP-2 expression, accompanied by decreased cystatin A mRNA. The fragment, +77 to -478 of 5'-flanking region of human cystatin A gene, was subcloned into chloramphenicol acetyltransferase (CAT) reporter vector (p478CAT). Cotransfection of p478CAT vector with AP-2alpha, beta, and gamma expression vectors resulted in three-, three-, and sixfold increase in the CAT activity, respectively. Transfection of the deleted construct (p478DeltaAP-2CAT, devoid of AP-2-like binding site (-75 to -84)) decreased CAT activity by one-third compared to p478CAT promoter activity. Cotransfection of p478DeltaAP-2CAT with AP-2alpha, beta, and gamma expression vectors had no effect on the decreased promoter activity. Immunohistochemical analysis of human skin showed that AP-2alpha is exclusively expressed in the nuclei of basal cell layer. AP-2gamma is expressed in the nuclei of basal, spinous, and granular cell layers. AP-2beta expression was not observed in the epidermis. Gel mobility shift assay revealed that the AP-2gamma protein specifically binds to oligonucleotides containing AP-2-like binding site of cystatin A gene. These results indicate that AP-2gamma regulates the cystatin A gene expression of epidermal keratinocytes at the transcriptional level.

5' Untranslated Regions↗

Cornified cell envelope formation is distinct from apoptosis in epidermal keratinocytes.

In order to maintain epidermal structural homeostasis, keratinocytes need to modulate their proliferation, differentiation, and cell death. Although terminal differentiation of keratinocytes is characterized by cornified cell envelope (CE) formation and one major mechanism of cell death is apoptosis, the precise relationship between these processes remains obscure. Using normal human cultured keratinocytes (NHK), we compared A23187-induced CE formation and ultraviolet B irradiation (UVB)-induced apoptosis. A23187 stimulated CE formation in 1 mM Ca(2+)-pretreated NHK cells. CE formation was detected by 1 h and the maximal induction was observed at 6 h. Morphological analysis using acridine orange staining revealed that UVB-irradiated NHK cells show distinctive round, homogeneous fragmented nuclear beads, a characteristic feature of apoptotic cells, while A23187-treated cells showed enlarged nuclei with weak chromatin staining, which is not typical of apoptosis. The UVB-irradiated NHK cells did not show CE formation. Caspase activation is a characteristic event during apoptosis. Although UVB irradiation increased caspase 3 activity, no increase in caspase 3 activity was detected during A23187-induced CE formation. Multiple nucleosome-sized fragments of DNA were observed in UVB-treated NHK cells, but not in A23187-treated NHK cells. FACS analyses using anti-annexin V antibody and propidium iodide (PI) showed that UVB irradiation induced both annexin V-positive and PI-negative early apoptotic cells and annexin V-positive and PI-positive late apoptotic cells. On the other hand, A23187-treated NHK cells showed only annexin V-negative and PI-positive non-apoptotic dying cells. Cell death assay revealed a significantly increased apoptotic cells in UVB-irradiated NHK cells, but not in A23187-treated NHK cells. UVB irradiated NHK cells showed increased cytosolic transglutaminase activity, while A23187-treated NHK cells showed increased membrane-associated transglutaminase activity. These results indicate that CE formation is distinct from apoptosis in epidermal keratinocytes.

Anti-Bacterial Agents↗

Copper, zinc-superoxide dismutase protects from ultraviolet B-induced apoptosis of SV40-transformed human keratinocytes: the protection is associated with the increased levels of antioxidant enzymes.

It has been reported that cellular oxidative stress induces apoptosis. Ultraviolet radiation that generates reactive oxygen intermediates (ROIs) also induces apoptosis. Superoxide dismutase (SOD) is among the most active scavengers of ROIs, providing defense against the cellular oxidative stress. Mammalian cells express two isozymes of SOD, copper, zinc-SOD (Cu, Zn-SOD) and manganese-SOD (Mn-SOD). Using SV40-transformed human keratinocytes (SVHK cells), we investigated the role of SODs in the ultraviolet B (UVB) irradiation-induced apoptosis. UVB irradiation decreased transiently Cu, Zn- and Mn-SOD activities and their protein levels, with subsequent recovery to the basal levels by 24 h. The UVB-induced decrease in SOD activity was dose-dependent and the maximal effect was obtained at 75 mJ/cm(2). The decrease in Cu, Zn-SOD was more marked than that in Mn-SOD. The cell death assay, annexin-V/propidium iodide flow cytometry, and DNA fragmentation analysis revealed that UVB irradiation induces apoptosis in SVHK cells. The UVB-induced apoptosis was suppressed by the treatment of antioxidants, catalase, glutathione, and alpha-tochopherol. The stable transfection of Cu, Zn-SOD expression vectors into SVHK cells was accompanied by the increased activities of antioxidant enzymes, catalase, and glutathione reductase, as well as glutathione and the cells were shown to be more resistant to UVB-induced apoptosis. In contrast, the transfection of Mn-SOD affected neither activities of antioxidant enzymes nor the UVB-induced apoptosis. The transfection of Cu, Zn-SOD antisense oligomers but not sense oligomers into SVHK or Cu, Zn-SOD cDNA-transfected SVHK (C2) cells significantly decreased the antioxidant enzyme activities and increased the UVB-induced apoptosis. On the other hand, the transfection of Mn-SOD antisense oligomers did not affect the UVB-induced apoptosis. These results suggest that the transfection of Cu, Zn-SOD expression vector, which is accompanied by the increased level of antioxidant enzymes, suppresses the UVB-induced apoptosis of SVHK cells.

Antioxidants↗

A case of erythrokeratoderma variabilis without mutations in connexin 31.

Erythrokeratoderma (EK) variabilis is a heterogeneous group of diseases characterized by migratory erythematous patches and hyperkeratotic plaques. Mutations in connexin 31 have recently been found to underlie several cases of EK variabilis. We describe a Japanese girl with extensive lesions that appeared to be a form of EK variabilis, clinically resembling genodermatose en cocardes (Degos). Our patient had characteristic migratory rosette or target-like erythematous keratotic plaques with peripheral scaling in addition to relatively fixed keratotic plaques. Sequencing of the connexin 31 gene did not detect mutations. Skin biopsy showed parakeratotic hyperkeratosis with hypergranulosis. Immunohistochemically, suprabasal keratins, involucrin and profilaggrin were unequivocally expressed, while loricrin expression was greatly diminished and deiminated K1 was undetectable. Our results confirm aetiological heterogeneity in EK. The histological features suggest disruption of keratinocyte terminal differentiation at a very late stage.

Biopsy↗