Lentini A, Mattioli P, Provenzano B, Abbruzzese A, Caraglia M, Beninati S
Department of Biology, University of Rome Tor Vergata, Via della Ricerca Scientifica, 00133 Rome, Italy.
Biochem Soc Trans. 2007 Apr;35(Pt 2):396-400. doi: 10.1042/BST0350396.
Protein-bound gamma-glutamylpolyamines have highlighted a new pathway in polyamine metabolism. Human foreskin keratinocytes offer a suitable model for this study. Indeed, they develop polymerized envelopes, as they differentiate, rich in epsilon-(gamma-glutamyl)lysine and N(1),N(8)-bis(gamma-glutamyl)spermidine cross-links. We have found that the selective oxidation of N(1)-(gamma-glutamyl)spermidine and N-(gamma-glutamyl)spermine by FAD-dependent polyamine oxidase (PAO) may be one of the cellular mechanisms regulating the preferential formation of a sterically defined bis(gamma-glutamyl)spermidine cross-link. The significance of this finding is unknown, but it suggests that the target of this PAO-modulation is to achieve the biochemical prerequisite for production of a normal epidermal stratum corneum.
蛋白质结合的γ-谷氨酰多胺揭示了多胺代谢中的一条新途径。人包皮角质形成细胞为该研究提供了一个合适的模型。事实上,它们在分化时会形成富含ε-(γ-谷氨酰)赖氨酸和N(1),N(8)-双(γ-谷氨酰)亚精胺交联的聚合包膜。我们发现,FAD依赖性多胺氧化酶(PAO)对N(1)-(γ-谷氨酰)亚精胺和N-(γ-谷氨酰)精胺的选择性氧化可能是调节空间定义的双(γ-谷氨酰)亚精胺交联优先形成的细胞机制之一。这一发现的意义尚不清楚,但它表明这种PAO调节的目标是实现产生正常表皮角质层的生化先决条件。