Moskot Marta, Gabig-Cimińska Magdalena, Jakóbkiewicz-Banecka Joanna, Węsierska Magdalena, Bocheńska Katarzyna, Węgrzyn Grzegorz
Laboratory of Molecular Biology (affiliated with the University of Gdańsk), Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Wita Stwosza 59, 80-308 Gdańsk, Poland.
Department of Molecular Biology, University of Gdańsk, Wita Stwosza 59, 80-308 Gdańsk, Poland.
Gene. 2016 Jul 1;585(1):100-103. doi: 10.1016/j.gene.2016.03.029. Epub 2016 Mar 23.
Mucopolysaccharidoses (MPSs) are inherited metabolic diseases caused by mutations resulting in deficiency of one of enzymes involved in degradation of glycosaminoglycans (GAGs). These compounds accumulate in cells causing their dysfunctions. Genistein is a molecule previously found to both modify GAG metabolism and modulate cell cycle. Therefore, we investigated whether the cell cycle is affected in MPS cells and if genistein can influence this process. Fibroblasts derived from patients suffering from MPS types I, II, IIIA and IIIB, as well as normal human fibroblasts (the HDFa cell line) were investigated. MTT assay was used for determination of cell proliferation, and the cell cycle was analyzed by using the MUSE® Cell Analyzer. While effects of genistein on cell proliferation were similar in both normal and MPS fibroblasts, fractions of cells in the G0/G1 phase were higher, and number of cells entering the S and G2/M phases was considerably lower in MPS II fibroblasts relative to control cells. Somewhat similar tendency, though significantly less pronounced, could be noted in MPS I, but only at longer times of incubation. However, this was not observed in MPS IIIA and MPS IIIB fibroblasts. Genistein (5, 7-dihydroxy-3-(4-hydroxyphenyl)-4H-1-benzopyran-4-one) was found to be able to partially correct the disturbances in the MPS II cell cycle, and to some extent in MPS I, at higher concentrations of this compound. The tendency to increase the fractions of cells entering the S and G2/M phases was also observed in MPS IIIA and IIIB fibroblasts treated with genistein. In conclusion, this is the first report indicating that the cell cycle can be impaired in MPS cells. The finding that genistein can improve the MPS II (and to some extent also MPS I) cell cycle provides an input to our knowledge on the molecular mechanisms of action of this compound.
黏多糖贮积症(MPSs)是由突变引起的遗传性代谢疾病,这些突变导致参与糖胺聚糖(GAGs)降解的一种酶缺乏。这些化合物在细胞中积累,导致细胞功能障碍。染料木黄酮是一种先前发现既能改变GAG代谢又能调节细胞周期的分子。因此,我们研究了MPS细胞的细胞周期是否受到影响,以及染料木黄酮是否能影响这一过程。我们研究了来自I型、II型、IIIA型和IIIB型MPS患者的成纤维细胞,以及正常人成纤维细胞(HDFa细胞系)。采用MTT法测定细胞增殖,并使用MUSE®细胞分析仪分析细胞周期。虽然染料木黄酮对正常和成纤维细胞的细胞增殖影响相似,但相对于对照细胞,II型MPS成纤维细胞中处于G0/G1期的细胞比例更高,进入S期和G2/M期的细胞数量显著更低。在I型MPS中也观察到了类似的趋势,尽管不太明显,且仅在较长孵育时间时出现。然而,在IIIA型和IIIB型MPS成纤维细胞中未观察到这种情况。发现染料木黄酮(5,7 - 二羟基 - 3 -(4 - 羟基苯基)- 4H - 1 - 苯并吡喃 - 4 - 酮)能够部分纠正II型MPS细胞周期的紊乱,在该化合物浓度较高时,在一定程度上也能纠正I型MPS的细胞周期紊乱。在用染料木黄酮处理的IIIA型和IIIB型MPS成纤维细胞中也观察到了进入S期和G2/M期的细胞比例增加的趋势。总之,这是第一份表明MPS细胞的细胞周期可能受损的报告。染料木黄酮可以改善II型MPS(在一定程度上也能改善I型MPS)细胞周期这一发现,为我们了解该化合物的分子作用机制提供了新的信息。