Sap Annelies, Absillis Gregory, Parac-Vogt Tatjana N
KU Leuven, Department of Chemistry, Celestijnenlaan 200F, B-3001 Heverlee, Belgium.
Dalton Trans. 2015 Jan 28;44(4):1539-48. doi: 10.1039/c4dt01477d.
We report for the first time on the selective hydrolysis of a polypeptide system by a metal-substituted polyoxometalate (POM). Oxidized insulin chain B, a 30 amino acid polypeptide, was selectively cleaved by the Zr(IV)-substituted Wells-Dawson POM, K15H[Zr(α2-P2W17O61)2]·25H2O, under physiological pH and temperature conditions in aqueous solution. HPLC-ESI-MS, LC-MS/MS, MALDI-TOF and MALDI-TOF MS/MS data indicate hydrolysis at the Phe1-Val2, Gln4-His5, Leu6-Cys(SO3H)7, and Gly8-Ser9 peptide bonds. The rate of oxidized insulin chain B hydrolysis (0.45 h(-1) at pH 7.0 and 60 °C) was calculated by fitting the integration values of its HPLC-UV signal to a first-order exponential decay function. (1)H NMR measurements show significant line broadening and shifting of the polypeptide resonances upon addition of the Zr(IV)-POM, indicating that interaction between the Zr(IV)-POM and the polypeptide takes place in solution. Circular dichroism (CD) measurements clearly prove that the flexible unfolded nature of the polypeptide was retained in the presence of the Zr(IV)-POM. The thermal stability of the Zr(IV)-POM in the presence of the polypeptide chain during the hydrolytic reaction was confirmed by (31)P NMR spectroscopy. Despite the highly negative charge of the Zr(IV)-POM, the mechanism of interaction appears to be dominated by a strong metal-directed binding between the positively charged Zr(IV) center and negatively charged amino acid side chains.
我们首次报道了金属取代的多金属氧酸盐(POM)对多肽系统的选择性水解。氧化胰岛素B链,一种30个氨基酸的多肽,在生理pH值和温度条件下的水溶液中,被Zr(IV)取代的Wells-Dawson型POM,K15H[Zr(α2-P2W17O61)2]·25H2O选择性裂解。HPLC-ESI-MS、LC-MS/MS、MALDI-TOF和MALDI-TOF MS/MS数据表明,水解发生在Phe1-Val2、Gln4-His5、Leu6-Cys(SO3H)7和Gly8-Ser9肽键处。通过将其HPLC-UV信号的积分值拟合为一级指数衰减函数,计算出氧化胰岛素B链的水解速率(在pH 7.0和60°C下为0.45 h(-1))。(1)H NMR测量表明,加入Zr(IV)-POM后多肽共振信号出现明显的谱线展宽和位移,这表明Zr(IV)-POM与多肽在溶液中发生了相互作用。圆二色性(CD)测量清楚地证明,在Zr(IV)-POM存在的情况下,多肽保持了其柔性的未折叠性质。通过(31)P NMR光谱证实了水解反应过程中多肽链存在时Zr(IV)-POM的热稳定性。尽管Zr(IV)-POM带高度负电荷,但相互作用机制似乎主要由带正电荷的Zr(IV)中心与带负电荷的氨基酸侧链之间强烈的金属导向结合所主导。