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分离的和砷取代的金属硫蛋白的金属化学计量学:质子激发X射线发射光谱法和电喷雾电离质谱研究

Metal stoichiometry of isolated and arsenic substituted metallothionein: PIXE and ESI-MS study.

作者信息

Garla Roobee, Mohanty Biraja P, Ganger Renuka, Sudarshan M, Bansal Mohinder P, Garg Mohan L

机构信息

Department of Biophysics, Panjab University, Chandigarh, 160014, India,

出版信息

Biometals. 2013 Dec;26(6):887-96. doi: 10.1007/s10534-013-9665-8. Epub 2013 Aug 6.

Abstract

The stoichiometric analysis of the metal induced Metallothionein (MT) is pertinent for understanding the metal-MT interactions. Despite innumerable publications on MT, the literature addressing these aspects is limited. To bridge this gap, PIXE and ESI-MS analysis of the commercial rabbit liver MT1 (an isoform of MT), zinc induced isolated rat liver MT1, apo and Arsenic substituted rabbit liver MT1 have been carried out. These techniques in combination provide information about number and the signature of all the metal ions bound to MT. By using ESI-MS in the rabbit MT1, ions of Zn n MT1 (n = 0, 1, 4, 5, 6, 7) whereas, in rat MT1, the Zn1MT1 and Zn5MT1 ions are observed. PIXE analysis shows that some copper along with zinc is also present in the rabbit as well as rat MT1 which could not be assessed with ESI-MS. During As metallation reaction with rabbit MT1, with increase in arsenic concentration, the amount of arsenic bound to MT1 also increases, though not proportionally. The presence of both Zn and Cu in MT1 on Zn supplementation can be related to the role of MT in Zn and Cu homeostasis. Further, the presence of partially metallated MT1 suggests that MT1 may donate fractional amount of metal from it's fully metallated form to other proteins where Zn acts as a cofactor.

摘要

对金属诱导的金属硫蛋白(MT)进行化学计量分析,对于理解金属与MT的相互作用至关重要。尽管关于MT的出版物数不胜数,但涉及这些方面的文献却很有限。为了弥补这一差距,我们对商业兔肝MT1(MT的一种亚型)、锌诱导的分离大鼠肝MT1、脱辅基和砷取代的兔肝MT1进行了质子激发X射线发射(PIXE)和电喷雾电离质谱(ESI-MS)分析。这些技术相结合,提供了与MT结合的所有金属离子的数量和特征信息。在兔MT1中使用ESI-MS时,观察到Zn n MT1(n = 0、1、4、5、6、7)离子,而在大鼠MT1中,观察到Zn1MT1和Zn5MT1离子。PIXE分析表明,兔和大鼠MT1中除了锌之外还存在一些铜,这是ESI-MS无法评估的。在兔MT1与砷的金属化反应过程中,随着砷浓度的增加,与MT1结合的砷量也增加,尽管不是成比例增加。补充锌时MT1中同时存在锌和铜,这可能与MT在锌和铜稳态中的作用有关。此外,部分金属化的MT1的存在表明,MT1可能会从其完全金属化形式向其他蛋白质捐赠部分金属量,其中锌作为辅因子。

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