In order to get a better understanding of the role played by polyamines in calcium-induced epidermal cell differentiation, the time course of their metabolism was investigated. Results demonstrate that differentiating epidermal cells are characterized by time-dependent changes in polyamine concentrations. An early polyamine catabolic phase, characterized by increased total putrescine concentration and drastic reduction of both spermidine and spermine levels, is followed by active spermidine biosynthesis. The differences in putrescine and, in particular, spermidine metabolism are reflected in a time-dependent modulation of protein-bound polyamine derivatives. In fact, upon addition of calcium to the culture medium, hypusine N epsilon-(4-amino-2-hydroxybutyllysine) is rapidly reduced to undetectable levels. The very low hypusine level is paralleled by an increase in gamma-glutamyl putrescine derivatives and followed by a large increase in gamma-glutamyl spermidine derivatives; in addition, there is a remarkable concomitant biosynthesis of transglutaminase-catalyzed mono and bis gamma-glutamyl spermidine derivatives and epsilon(gamma-glutamyl)lysine cross-links. The effect of TPA and RA on hypusine formation is also reported.

Piacentini, M., Grazia Farrace, M., Imparato, M., Piredda, L., Autuori, F. (1990). Polyamine-dependent post-translational modification of proteins in differentiating mouse epidermal cells. JOURNAL OF INVESTIGATIVE DERMATOLOGY, 94(5), 694-699 [10.1111/1523-1747.ep12876271].

Polyamine-dependent post-translational modification of proteins in differentiating mouse epidermal cells

Piacentini M.
;
Piredda L.
Investigation
;
1990-01-01

Abstract

In order to get a better understanding of the role played by polyamines in calcium-induced epidermal cell differentiation, the time course of their metabolism was investigated. Results demonstrate that differentiating epidermal cells are characterized by time-dependent changes in polyamine concentrations. An early polyamine catabolic phase, characterized by increased total putrescine concentration and drastic reduction of both spermidine and spermine levels, is followed by active spermidine biosynthesis. The differences in putrescine and, in particular, spermidine metabolism are reflected in a time-dependent modulation of protein-bound polyamine derivatives. In fact, upon addition of calcium to the culture medium, hypusine N epsilon-(4-amino-2-hydroxybutyllysine) is rapidly reduced to undetectable levels. The very low hypusine level is paralleled by an increase in gamma-glutamyl putrescine derivatives and followed by a large increase in gamma-glutamyl spermidine derivatives; in addition, there is a remarkable concomitant biosynthesis of transglutaminase-catalyzed mono and bis gamma-glutamyl spermidine derivatives and epsilon(gamma-glutamyl)lysine cross-links. The effect of TPA and RA on hypusine formation is also reported.
1990
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore BIO/06 - ANATOMIA COMPARATA E CITOLOGIA
English
Con Impact Factor ISI
Animals
Cell Differentiation
Epidermal Cells
Keratinocytes
Lysine
Mice
Mice, Inbred BALB C
Polyamines
Protein Processing, Post-Translational
Spermidine
Piacentini, M., Grazia Farrace, M., Imparato, M., Piredda, L., Autuori, F. (1990). Polyamine-dependent post-translational modification of proteins in differentiating mouse epidermal cells. JOURNAL OF INVESTIGATIVE DERMATOLOGY, 94(5), 694-699 [10.1111/1523-1747.ep12876271].
Piacentini, M; Grazia Farrace, M; Imparato, M; Piredda, L; Autuori, F
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/264842
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