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SEC-ICP-MS and ESI-MS/MS for analyzing in vitro and in vivo Cd-phytochelatin complexes in a Cd-hyperaccumulator Brassica chinensis

机译:SEC-ICP-MS和ESI-MS / MS用于分析Cd超富集甘蓝型油菜的体内和体外Cd-植物螯合素复合物

摘要

In this study, in vitro synthesized Cd-phytochelatin (PC) complexes and in vivo Cd -PC complexes in Cd-stressed Brassica chinensis, which has been identified as a Cd hyperaccumulator, were characterized using SEC-ICP-MS and ESI-MS/ MS. The PCs (n = 1 -5) obtained from Cd-stressed B. chinensis together with CdCl2 were used to synthesize the in vitro Cd -PC complexes, and the formation of CdGS(1-2), (CdGS)(2), Cd1-2PC2, Cd1-3PC3, Cd1-3PC4 and Cd1-3PC5 was observed. In addition, for the first time, in vivo CdPC3 and CdPC4 complexes, as well as Cd-free PCs (n = 2-5) and desGlu-PC3 were detected in the extracts of Cd-stressed B. chinensis and confirmed by means of their corresponding isotopic peak distribution and MS/ MS spectra. Nitrogen saturated ammonium bicarbonate buffer (pH 7.8), instead of Tris-HCl and phosphate buffer, was used as a suitable mobile phase in order to stabilize the Cd -PC complexes and e. ectively avoid possible oxidation of PC analogues during SEC fractionation. Results obtained in this study give definite evidence elucidating the important roles which PCs play in plant defensive mechanisms to Cd stress. SEC-ICP-MS and ESI-MS/ MS were demonstrated as powerful and promising techniques for screening and identifying the in vivo metallopeptides, with accurate isotopic distribution assignment, in metal toxicological studies.
机译:在这项研究中,使用SEC-ICP-MS和ESI-MS / C表征了Cd胁迫的小白菜中的体外合成Cd-植物螯合(PC)复合物和体内Cd-PC复合物。多发性硬化症。从镉胁迫的中华小球藻中获得的PC(n = 1 -5)与CdCl2一起用于合成体外Cd -PC复合物,并形成CdGS(1-2),(CdGS)(2),观察到Cd1-2PC2,Cd1-3PC3,Cd1-3PC4和Cd1-3PC5。此外,首次在镉胁迫的中华小球藻提取物中检测到了体内的CdPC3和CdPC4复合物,以及无Cd的PC(n = 2-5)和desGlu-PC3,并通过其相应的同位素峰分布和MS / MS谱图。氮气饱和的碳酸氢铵缓冲液(pH 7.8)代替了Tris-HCl和磷酸盐缓冲液,被用作合适的流动相,以稳定Cd -PC络合物和e。避免在SEC分馏过程中避免PC类似物的氧化。这项研究获得的结果提供了明确的证据,阐明了PC在Cd胁迫的植物防御机制中所起的重要作用。在金属毒理学研究中,SEC-ICP-MS和ESI-MS / MS被证明是用于筛选和鉴定体内金属肽并具有精确同位素分布分配的强大而有前途的技术。

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