Department of Bioinspired Science, Division of Life and Pharmaceutical Sciences, College of Pharmacy, Center for Cell Signaling and Drug Discovery Research, Ewha Womans University, Seoul, Korea.
PLoS One. 2009 Nov 23;4(11):e7949. doi: 10.1371/journal.pone.0007949.
Nucleoside diphosphate kinase (NDPK, Nm23), a housekeeping enzyme, is known to be a multifunctional protein, acting as a metastasis suppressor, transactivation activity on c-myc, and regulating endocytosis. The cellular mechanisms regulating Nm23 functions are poorly understood. In this study, we identified the modifications and interacting proteins of Nm23-H1 in response to oxidative stress. We found that Cys109 in Nm23-H1 is oxidized to various oxidation states including intra- and inter-disulfide crosslinks, glutathionylation, and sulfonic acid formation in response to H(2)O(2) treatment both in vivo and in vitro. The cross-linking sites and modifications of oxidized Nm23-H1 were identified by peptide sequencing using UPLC-ESI-q-TOF tandem MS. Glutathionylation and oxidation of Cys109 inhibited the NDPK enzymatic activity of Nm23-H1. We also found that thioredoxin reductase 1 (TrxR1) is an interacting protein of Nm23-H1, and it binds specifically to oxidized Nm23-H1. Oxidized Nm23 is a substrate of NADPH-TrxR1-thioredoxin shuttle system, and the disulfide crosslinking is reversibly reduced and the enzymatic activity is recovered by this system. Oxidation of Cys109 in Nm23-H1 inhibited its metastatic suppressor activity as well as the enzymatic activities. The mutant, Nm23-H1 C109A, retained both the enzymatic and metastasis suppressor activities under oxidative stress. This suggests that key enzymatic and metastasis suppressor functions of Nm23-H1 are regulated by oxido-reduction of its Cys109.
核苷二磷酸激酶(NDPK,Nm23)是一种看家酶,已知是一种多功能蛋白,作为转移抑制因子、c-myc 的转激活活性和调节内吞作用。调节 Nm23 功能的细胞机制了解甚少。在这项研究中,我们鉴定了氧化应激反应中 Nm23-H1 的修饰和相互作用蛋白。我们发现,Cys109 在 Nm23-H1 中被氧化为各种氧化状态,包括体内和体外 H2O2 处理后形成的同型和异型二硫键交联、谷胱甘肽化和磺酸形成。使用 UPLC-ESI-q-TOF 串联 MS 通过肽测序鉴定了交联位点和氧化 Nm23-H1 的修饰。Cys109 的谷胱甘肽化和氧化抑制了 Nm23-H1 的 NDPK 酶活性。我们还发现,硫氧还蛋白还原酶 1(TrxR1)是 Nm23-H1 的相互作用蛋白,它特异性结合氧化 Nm23-H1。氧化的 Nm23 是 NADPH-TrxR1-硫氧还蛋白穿梭系统的底物,二硫键交联通过该系统被可逆还原,酶活性得到恢复。Nm23-H1 的 Cys109 氧化抑制其转移抑制因子活性和酶活性。突变体 Nm23-H1 C109A 在氧化应激下保留了酶和转移抑制因子活性。这表明 Nm23-H1 的关键酶和转移抑制因子功能受其 Cys109 的氧化还原调节。