Department of Biochemistry and Molecular Biology, University of Córdoba and Córdoba Maimónides Institute for Biomedical Research (IMIBIC), 14071 Córdoba, Spain.
Oxid Med Cell Longev. 2013;2013:932472. doi: 10.1155/2013/932472. Epub 2013 Jul 16.
Uroporphyrinogen decarboxylase (Hem12p) and transketolase (Tkl1p) are key mediators of two critical processes within the cell, heme biosynthesis, and the nonoxidative part of the pentose phosphate pathway (PPP). The redox properties of both Hem12p and Tkl1p from Saccharomyces cerevisiae were investigated using proteomic techniques (SRM and label-free quantification) and biochemical assays in cell extracts and in vitro with recombinant proteins. The in vivo analysis revealed an increase in oxidized Cys-peptides in the absence of Grx2p, and also after treatment with H2O2 in the case of Tkl1p, without corresponding changes in total protein, demonstrating a true redox response. Out of three detectable Cys residues in Hem12p, only the conserved residue Cys52 could be modified by glutathione and efficiently deglutathionylated by Grx2p, suggesting a possible redox control mechanism for heme biosynthesis. On the other hand, Tkl1p activity was sensitive to thiol redox modification and although Cys622 could be glutathionylated to a limited extent, it was not a natural substrate of Grx2p. The human orthologues of both enzymes have been involved in certain cancers and possess Cys residues equivalent to those identified as redox sensitive in yeast. The possible implication for redox regulation in the context of tumour progression is put forward.
尿卟啉原脱羧酶(Hem12p)和转酮醇酶(Tkl1p)是细胞内两个关键过程的关键介质,血红素生物合成和戊糖磷酸途径(PPP)的非氧化部分。使用蛋白质组学技术(SRM 和无标记定量)和细胞提取物中的生化测定以及重组蛋白体外实验,研究了酿酒酵母的 Hem12p 和 Tkl1p 的氧化还原性质。体内分析表明,在没有 Grx2p 的情况下,以及在 Tkl1p 用 H2O2 处理的情况下,氧化 Cys-肽增加,但总蛋白没有相应变化,证明存在真正的氧化还原反应。在 Hem12p 中可检测到的三个半胱氨酸残基中,只有保守的半胱氨酸残基 Cys52 可以被谷胱甘肽修饰,并被 Grx2p 有效去谷胱甘肽化,这表明血红素生物合成可能存在氧化还原控制机制。另一方面,Tkl1p 的活性对硫醇氧化还原修饰敏感,尽管 Cys622 可以在一定程度上被谷胱甘肽化,但它不是 Grx2p 的天然底物。两种酶的人类同源物都与某些癌症有关,并且具有与在酵母中鉴定为氧化还原敏感的残基等效的半胱氨酸残基。提出了在肿瘤进展背景下氧化还原调节的可能意义。