Retinoids as important regulators of terminal differentiation: examining keratin expression in individual epidermal cells at various stages of keratinization.
Open Access
- 30 June 1987
- journal article
- research article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 105 (1) , 427-440
- https://doi.org/10.1083/jcb.105.1.427
Abstract
When human epidermal cells were seeded on floating rafts of collagen and fibroblasts, they stratified at the air-liquid interface. The suprabasal cells synthesized the large type II (K1) and type I (K10/K11) keratins characteristic of terminal differentiation in skin. At earlier times in culture, expression of the large type II keratins appeared to precede the expression of their type I partners. At later times, all suprabasal cells expressed both types, suggesting that the accumulation of a critical level of K1 keratin may be a necessary stimulus for K10 and K11 expression. Expression of the terminal differentiation-specific keratins was completely suppressed by adding retinoic acid to the culture medium, or by submerging the cultures in normal medium. In submerged cultures, removal of vitamin A by delipidization of the serum restored the keratinization process. In contrast, calcium and transforming growth factor-beta did not influence the expression of the large keratins in keratinocytes grown in the presence of retinoids, even though they are known to induce certain morphological features of terminal differentiation. Retinoic acid in the raft medium not only suppressed the expression of the large keratins, but, in addition, induced the synthesis of two new keratins not normally expressed in epidermis in vivo. Immunofluorescence localized one of these keratins, K19, to a few isolated cells of the stratifying culture. In contrast, the other keratin, K13, appeared uniformly in a few outer layers of the culture. Interestingly, K13 expression correlated well with the gradient of retinoid-mediated disruptions of intercellular interactions in the culture. These data suggest that K13 induction may in some way relate to the reduction in either the number or the strength of desmosomal contacts between suprabasal cells of stratified squamous epithelial tissues.This publication has 62 references indexed in Scilit:
- Differentiation-related expression of a major 64K corneal keratin in vivo and in culture suggests limbal location of corneal epithelial stem cells.The Journal of cell biology, 1986
- Type beta transforming growth factor is the primary differentiation-inducing serum factor for normal human bronchial epithelial cells.Proceedings of the National Academy of Sciences, 1986
- Variation and frequency of cytokeratin polypeptide patterns in human squamous non-keratinizing epitheliumExperimental Cell Research, 1986
- Pair formation and promiscuity of cytokeratins: formation in vitro of heterotypic complexes and intermediate-sized filaments by homologous and heterologous recombinations of purified polypeptides.The Journal of cell biology, 1985
- Epidermal morphogenesis and induction of the 67 kD keratin polypeptide by culture of human keratinocytes at the liquid-air interfaceExperimental Cell Research, 1985
- Antibodies to intermediate filament proteins in the immunohistochemical identification of human tumours: an overviewJournal of Molecular Histology, 1983
- The 50- and 58-kdalton keratin classes as molecular markers for stratified squamous epithelia: cell culture studies.The Journal of cell biology, 1983
- Structure and biochemical composition of desmosomes and tonofilaments isolated from calf muzzle epidermis.The Journal of cell biology, 1978
- Keratin filaments of cultured human epidermal cells. Formation of intermolecular disulfide bonds during terminal differentiation.Journal of Biological Chemistry, 1978
- The cornified envelope of terminally differentiated human epidermal keratinocytes consists of cross-linked proteinCell, 1977