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Phytochelatin database: a resource for phytochelatin complexes of nutritional and environmental metals

机译:植物螯合蛋白数据库:营养和环境金属植物螯合蛋白复合物的资源

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摘要

Phytochelatins (PyCs) are a diverse set of plant compounds that chelate metals, protect against metal toxicity and function in metal homeostasis. PyCs are present in plants consumed as food by humans and could, in principle, impact absorption and utilization of essential and toxic metals such as selenium and cadmium, respectively. PyCs vary in terminal amino acid composition and chain length, exist in multiple oxidation states and reversibly bind multiple metals; consequently, PyCs include a large set of possible structures. Although individual PyC-metal complexes have been studied, no resource exists to characterize the diversity of PyCs and PyC-metal complexes. We used the scientific literature to develop a database of elemental formulas for polymer forms varying in chain length from 2 to 11 glutamyl-cysteine repeats. Using elemental formulas, we calculated monoisotopic masses using the most abundant isotopes of each element and calculated masses for complexes with 13 metals of nutritional and toxicological significance. The resulting phytochelatin database (PyCDB) contains 46 260 unique elemental formulas for PyC and PyC-metal complexes. The database is available online for download as well as for direct mass queries for mass spectrometry using an accurate mass annotation tool for user-selected PyC types, metals and adducts of interest. We performed studies of a commonly consumed food—onion—to validate the database and test utility of the tool. Onion samples were analyzed using ultra-high resolution mass spectrometry-based metabolomics. Mass spectral features were annotated using the PyCDB web tool and the R package, xMSannotator; annotated features were further validated by collision-induced dissociation mass spectrometry. The results establish use and a workflow for PyCDB as a resource for characterization of PyCs and PyC-metal complexes.
机译:植物螯合素(PyCs)是多种植物化合物,它们螯合金属,防止金属毒性并在金属稳态中起作用。 PyC存在于人类食用的植物中,原则上可能会影响必需金属和有毒金属(例如硒和镉)的吸收和利用。 PyC的末端氨基酸组成和链长各不相同,以多种氧化态存在并可逆地结合多种金属。因此,PyC包含大量可能的结构。尽管已经研究了各种PyC-金属配合物,但没有资源可以表征PyCs和PyC-金属配合物的多样性。我们使用科学文献为链长从2至11个谷氨酰-半胱氨酸重复序列变化的聚合物形式开发了分子式的分子式数据库。使用元素公式,我们使用每种元素的最丰富的同位素计算了单同位素质量,并计算了具有13种具有营养和毒理学意义的金属的配合物的质量。所得的植物螯合素数据库(PyCDB)包含46 260个PyC和PyC-金属配合物的独特元素式。该数据库可以在线下载,也可以使用精确的质量注释工具对用户选择的PyC类型,感兴趣的金属和加合物进行质谱的直接质量查询。我们对常用食品洋葱进行了研究,以验证该工具的数据库和测试实用性。使用基于超高分辨率质谱的代谢组学分析洋葱样品。使用PyCDB Web工具和R包xMSannotator注释质谱特征。带注释的特征通过碰撞诱导解离质谱进一步验证。结果确立了PyCDB的用途和工作流程,将其作为表征PyC和PyC金属络合物的资源。

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