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Untargeted Metabolomics from Biological Sources Using Ultraperformance Liquid Chromatography-High Resolution Mass Spectrometry (UPLC-HRMS)
Published on: May 20, 2013
[CuII(l-Phe)2-H]+ Complex: A Versatile Selector for Wide Enantiomeric Excess Determination and Chiral Recognition in
Xingcheng Gong1,2, Yang Yang1,2, Ke Zhang1,2
1Modern Research Center for Traditional Chinese Medicine, Beijing Research Institute of Chinese Medicine, Beijing University of Chinese Medicine, East Road of North Third Ring, Chaoyang District, Beijing 100029, China.
Abstract:
Enantiomeric measurement of complicated matrices always challenges LC-MS/MS. Efforts were made here to pursue a fit-for-purpose chiral selector (CS) for LC-MS/MS and to clarify the enantioselective mechanisms. After assaying diverse candidates for 22 pairs of enantiomers, differentiation was successful for 15 pairs when employing [CuII(l-Phe)2-H]+ as the CS. With d- vs l-proline (Pro) as representatives, diastereomeric complex ions such as [CuII(d-Pro)(l-Phe)2-H]+ and [CuII(l-Pro)(l-Phe)2-H]+ were formed and their featured fragment ions such as [CuII(d/l-Pro)(l-Phe)-H]+ and [CuII(l-Phe)2-H]+ exhibited different abundance ratios (R). R was linearly correlated with enantiomeric excess (ee %), and Rmax, termed as the R value at optimal collision energy, enabled chiral recognition. Crystallization was successful for both [CuII(d-Pro)(l-Phe)-2H] and [CuII(l-Phe)2-2H] complexes, and X-ray spectroscopy revealed that the distorted square planar configuration by tetrahedrally coordinating Cu2+ to two nitrogen atoms and two oxygen atoms from (Phe)2 or (d-Pro)(l-Phe) led to enantioselectivity. The diastereomeric complex was constructed by an octahedron core consisting of six spatially orthometric coordination bonds around nuclear CuII. ΔG differences for the generations of [CuII(d/l-Pro)(l-Phe)-H]+ and [CuII(l-Phe)2-H]+ contributed to enantioselective MS/MS behaviors. Because of mirror images between [CuII(d-Pro)(l-Phe)2-H]+ and [CuII(l-Pro)(d-Phe)2-H]+, l-Pro solely completed ee % determination. By correlating R to ee %, simultaneous ee % determination for nine pairs of amino acid (AA) enantiomers was reached in cell medium extracts. Through correlating Rmax to ΔG, chiral recognition, even configurational determination, was achieved for AA enantiomers and pyranocoumarin enantiomers in the complicated matrices. Together, [CuII(l-Phe)2-H]+ is an eligible CS to facilitate post-column infusion LC-energy-resolved MS/MS allowing wide ee % determination and chiral recognition in complicated samples.
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