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J J Guilhou

Publications and source records attributed to J J Guilhou.

At least 19 recordsLinked to original sources

Characterization and subcellular localization of calcium-dependent phospholipid binding proteins (annexins) in normal human skin and reconstituted epidermis.

Annexins represent a widespread family of Ca(++)-dependent phospholipid binding proteins. Although their precise functions are still unknown, they probably play an important role in cell regulation because they are major substrates for various growth factor receptor kinases. We characterized annexins in human skin using three different antisera raised against annexin II, annexin V, and a synthetic peptide that resembles the consensus sequence of all annexins. In normal human skin, using SDS-PAGE, two-dimensional gel electrophoresis and immunoblot analysis, we identified two major 34-kDa proteins and one 36-kDa protein, with respective isoelectric points of 6.5, 5.2, and 7.2-7.9. According to these criteria they were identified as annexins, I, V, and II, respectively. Minor 45-51 kDa and 68-kDa proteins with 6.1-6.7 and 6.8-7.1 isoelectric points were also present, and likely corresponded to annexins VII and VI, respectively. We investigated the ability of these proteins to bind phospholipids in the presence of calcium using liposomes formed from a mixture of phosphatidylserine and phosphatidylcholine. The cellular distribution of annexins in normal human skin was determined by immunofluorescence with antiannexin II and anti-annexin V antibodies. Labeling with both antibodies was observed predominantly at the cell membrane with some cytoplasmic staining also being apparent. Specificity was confirmed by the absence of staining using pre-immune sera or after the absorption of the antibodies with their corresponding antigens. These proteins were also characterized in vitro in a reconstituted human skin model. All were present in this system except annexin VI and VII, which were lost after phospholipid purification. Further experiments should now be carried out using this system to clarify the role and regulation of these proteins within the epidermis.

Annexin A5

[Carcinoma of the tongue in xeroderma pigmentosum].

Xeroderma pigmentosum (XP) is a rare genodermatosis characterized by a defect in the repair of DNA damage induced by ultraviolet rays. The cutaneous tumours are frequent and occur at an early age, but neoplasias of the mucosae are seldom observed. Among the mucosae, the lipids and the conjunctiva clearly predominate. Tumours of the buccal cavity are much less frequent, and this is why we report a case of epidermoid carcinoma of the tip of the tongue in a Moroccan boy. Only 25 cases of intrabuccal tumour have been reported in patients with XP, and 22 were epidermoid carcinomas of the tip of the tongue. These carcinomas may be preceded by precancerous lesions such as leucoplasia. The early occurrence and elective location at the tip of the tongue clearly differentiate lingual carcinomas associated with XP from their homologues in adults. The aggressiveness of these lesions is difficult to determine due to a usually short follow-up and to the lack of details in reports. Treatment is surgical and non-specific. Concerning epidemiology, the predominance of African and Near-Eastern patients among those suffering from lingual carcinoma is striking. Moreover, when the complementation group is known it is always group C; our patients presented with characteristics of this group. Some authors believe that the lingual tumours are due to ultraviolet light (overexposure in case of natural pigmentation, with exposure of the tip of the tongue) and to certain toxic substances in food.(ABSTRACT TRUNCATED AT 250 WORDS)

Basal Cell Carcinoma

[Role of oncogenes and anti-oncogenes in dermatology].

Cell growth is controlled by two types of genes, i.e., activating genes (oncogenes) and negative regulator genes (antioncogenes). Studies have shown that malignant transformation of a cell can result from either increased oncogene activity or decreased antioncogene activity. Current knowledge of genes relevant to dermatology is discussed.

Animals

[Psoriasis: physiopathology and therapeutic targets].

Psoriatic lesions are characterized by hyperproliferation of keratinocytes associated with differentiation disorders. Hyperproliferation might be due to extrakeratinocytic signals delivered by dermal fibroblasts, protease-secreting granulocytes, lymphocytes involved in local immune reaction or growth factors produced at a distance. An alternative theory puts the blame on intrinsic abnormalities of keratinocytes which would affect the transduction phenomena or the genome. The abnormal expression of certain genes coding for growth factors is in favour of that theory. Vertically transmitted retroviral agents may also be suspected. The points of impact of the major therapies (antimitotic drugs, cyclosporin, retinoids, phototherapy) are numerous, but their common end-result is to block the mitotic activity.

Cell Division

C-fos and c-jun proto-oncogene expression is decreased in psoriasis: an in situ quantitative analysis.

Psoriasis is a common, sometimes severe, non-malignant skin disease characterized by hyperproliferation and abnormal differentiation of keratinocytes. Because proto-oncogenes are implicated in both cell proliferation and differentiation, their expression could be modified in skin diseases such as psoriasis. The c-fos and c-jun proto-oncogenes, whose products associate to form a heterodimeric transcription factor, are among the first genes to be expressed when certain cells are stimulated to either proliferate or differentiate. Recent studies in our laboratory have shown that the c-fos proto-oncogene is highly expressed in normal human adult skin. In the present study, we used in situ hybridization with RNA to compare the expression and localization of c-fos and c-jun transcripts in 15 lesional and non-lesional psoriatic skin samples. Two clinical variants of psoriasis were studied: the most severe and chronic form or plaque-type psoriasis (N = 10) and rapidly resolutive guttate-type psoriasis (N = 5). Quantitative analysis was performed using a semi-automatic image analyzer and the "Starwise grain" software program. Our control samples included 10 normal skins and eight specimens from other benign hyperproliferative non-psoriatic skin diseases, consisting of three with inflammation (seborrheic dermatitis and atopic dermatitis), and 5 without inflammation (seborrheic keratoses). Control genes we used for in situ hybridization and RNA integrity were keratin 14, which is expressed in the epidermis and was normally expressed in all tissue analyzed, and ribosomal RNA. Our data showed that c-fos and c-jun were expressed to an equivalent extent, both spatially and quantitatively, in all specimens tested. Expression was significantly decreased in plaque-type but not in guttate-type psoriasis. It was also decreased in the three other benign inflammatory cutaneous hyperproliferative disorders, but not in the five non-inflammatory cases. These results were surprising because hyperproliferation was here associated with a decrease in proto-oncogene expression, thus suggesting that c-fos and c-jun do not play a crucial role in the control of keratinocyte proliferation in vivo. However, their reduced expression in some abnormally differentiated skins indicates that both c-fos and c-jun proto-oncogenes may play a key role in keratinocyte differentiation. Their altered expression correlated with severity of the disease and the presence of an inflammatory infiltrate. These data offer a new insight into the role and regulation of these proto-oncogenes in vivo in humans.

Chronic Disease

High levels of c-fos proto-oncogene expression in normal human adult skin.

The proto-oncogene c-fos is thought to play an important role in the modulation of cell growth and differentiation. In normal tissues that have been studied to date, c-fos expression has been found to be regulated in a tissue-specific manner. Actually, little is known about its expression in normal human adult skin (NHAS). Moreover, the epidermis is a useful tissue to study the role of cellular oncogenes because keratinocytes can be observed simultaneously in their proliferative as well as differentiated state. We studied c-fos expression in NHAS using different molecular approaches which permit us to characterize and localize c-fos products within the epidermis, specifically, at the RNA level by Northern blot and in situ hybridization, and at the protein level by immunofluorescence and Western blotting. Here, we show that both c-fos mRNA and protein are present at high levels in NHAS. These results contrast with the low level of c-fos expression reported for most human adult tissues. Furthermore, c-fos expression is visible throughout the epidermal layers indicating that it is not restricted to proliferating basal cells. The epidermis, therefore, represents the first human adult tissue where c-fos is expressed at high levels in vivo and provides an interesting model to further elucidate the role of this proto-oncogene in normal and pathologic conditions.

Blotting, Northern

Reconstituted skin in culture: a simple method with optimal differentiation.

Human skin is a unique organ, which can be reconstituted in vitro and represents an interesting system for studying cell proliferation and differentiation. A simple technique for producing reconstituted skin with optimal epidermal differentiation is described and characterized. A 4-mm punch biopsy of normal human skin is deposited on the epidermal side of mortified de-epidermized human dermis maintained at the air-liquid interface with a metallic support. The culture medium contains insulin, epidermal growth factor (EGF), cholera toxin, hydrocortisone, penicillin/streptomycin and fungizone. A well-differentiated epidermis develops within 15 days. Morphological and ultrastructural studies show a neoepidermis resembling normal skin. Differentiation markers such as involucrin, filaggrin, and various cytokeratins detected with pancytokeratin antibody are present and confirm this resemblance. The keratin profile is comparable to that observed in other skin culture models. A basement-membrane-like structure is reconstituted with hemidesmosomes and anchoring-filament formation. Bullous pemphigoid (BP) antigen is observed at the dermo-epidermal junction after 21 days of culture. Moreover, both dermal substrates and punch biopsies can be kept frozen for long-term storage, with little or no loss of epidermal growth kinetics and morphology. This skin culture technique is rapid, simple, economical and reproducible. Characterization has here shown high-quality epidermal differentiation. Scientists interested in epidermal in vitro studies should take interest in all these advantages.

Antibodies, Monoclonal