Pochini Lorena
Laboratory of Biochemistry, Molecular Biotechnology and Molecular Biology, Department DiBEST (Biologia, Ecologia, Scienze Della Terra), University of Calabria, Rende, Italy.
Institute of Biomembranes, Bioenergetics and Molecular Biotechnologies (IBIOM), National Research Council (CNR), Bari, Italy.
Front Mol Biosci. 2024 Jul 25;11:1452184. doi: 10.3389/fmolb.2024.1452184. eCollection 2024.
Polyamines interact with different molecular targets to regulate a vast range of cellular processes. A network of enzymes and transport systems is crucial for the maintenance of polyamine homeostasis. Indeed, polyamines after synthesis must be distributed to the various tissues and some intracellular organelles. Differently from the well characterized enzymes devoted to polyamine synthesis, the transport systems are not unequivocally identified or characterized. Besides some ATPases which have been identified as polyamine transporters, much less is known about solute carriers (SLC) involved in the transport of these compounds. Only two SLCs have been unequivocally identified as polyamine transporters: SLC18B1 (VPAT) and SLC22A4 (OCTN1). Transport studies have been performed with cells transfected with the cDNAs encoding the two and other SLCs or, in the case of OCTN1, also by assay using proteoliposomes harboring the recombinant human protein. According to the role proposed for OCTN1, polyamines have been associated with prolonged and quality of life. This review provides an update on the most recent findings concerning the polyamine transporters or the prediction of the putative ones.
多胺与不同的分子靶点相互作用,以调节广泛的细胞过程。酶和转运系统网络对于维持多胺稳态至关重要。实际上,多胺合成后必须分布到各种组织和一些细胞内细胞器中。与已充分表征的多胺合成酶不同,转运系统尚未得到明确鉴定或表征。除了一些已被鉴定为多胺转运体的ATP酶外,关于参与这些化合物转运的溶质载体(SLC)的了解要少得多。只有两种SLC被明确鉴定为多胺转运体:SLC18B1(VPAT)和SLC22A4(OCTN1)。已经对转染了编码这两种SLC以及其他SLC的cDNA的细胞进行了转运研究,或者对于OCTN1,也通过使用含有重组人蛋白的蛋白脂质体进行测定。根据对OCTN1提出的作用,多胺与寿命延长和生活质量有关。本综述提供了有关多胺转运体的最新发现或推定转运体预测的最新信息。