Integrated multi-omics uncovers reliable potential biomarkers and adverse effects of zinc deficiency

医学 组学 不利影响 缺锌(植物性疾病) 生理学 人口 代谢组学 生物标志物 蛋白质组学 生物信息学 内科学 生物 微量营养素 病理 生物化学 环境卫生 基因 化学 有机化学
作者
Maoqing Wang,Lina Fan,Wei Wei,Peng Wang,Qingli Yu,Zhiping Long,Yongzhi Sun,Zixiang Li,Tianqi Zi,Dong Feng,Zhaohui Sun,Xinyu Song,Hao Chang,Ying Li,Fan Wang
出处
期刊:Clinical Nutrition [Elsevier BV]
卷期号:40 (5): 2683-2696 被引量:12
标识
DOI:10.1016/j.clnu.2021.03.019
摘要

Summary Background Zinc deficiency is a worldwide public health problem. Currently, there are no established biomarkers available for the accurate diagnosis of zinc-deficiency in individuals. Additionally, a comprehensive view of the adverse effects of zinc deficiency is lacking. Our aim was to identify superior biomarkers of zinc deficiency and uncover the adverse effects of zinc deficiency. Methods We performed multi-omics analysis using serum proteomics-metabolomics and liver proteomics on zinc-deficient rats to identify candidate biomarkers and reveal the associated adverse effects of zinc deficiency. Secondly, the candidate biomarkers were validated in two zinc-deficient populations and an RCT zinc supplementation trial on a zinc-deficient population. Results Our integrated multi-omics approach revealed numerous biomarkers (>2000) and glutathione metabolism as the most important changed pathway in zinc deficiency. Three candidate biomarkers from glutathione metabolism were validated in repeated zinc-deficient rats by quantitative analysis. Only glutathione sulfotransferase omega-1 (GSTO1) (among 3 candidate biomarkers) was validated in the two zinc-deficient populations and zinc-supplemented population. Compared with serum zinc, serum GSTO1 yielded a better response to zinc supplementation and a higher correlation coefficient with zinc intake and the AUC value and has the potential for diagnosing zinc deficiency. By integrated multi-omics, we identified both established and novel adverse effects of zinc deficiency. Conclusions Our integrated multi-omics analysis revealed more complete information about zinc deficiency; GSTO1 was found to be a reliable potential biomarker for diagnosis of zinc deficiency. This trial is registered at http://www.chictr.org.cn/registry.aspx as ChiCTR1900028162.
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