4.5 Article

Transcriptional responses of four slc30a/znt family members and their roles in Zn homeostatic modulation in yellow catfish Pelteobagrus fulvidraco

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ELSEVIER
DOI: 10.1016/j.bbagrm.2021.194723

关键词

Zn; Zn transport; Zn homeostasis; Transcriptional regulation; Vertebrates

资金

  1. National Natural Science Foundation of China [31872585, 32030111]
  2. National Key Research and Development Program of China [2018YFD0900400]

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This study characterized the regulatory functions of four znt members in vertebrates, identifying functional MTF-1 binding sites and metal responsive elements on the promoters of these genes. Zinc incubation increased activities of znt promoters through MRE sites and the STAT3 binding site, leading to up-regulation of ZnT1, ZnT2, and ZnT8 expression. Overall, this study provided novel insights into the regulatory mechanism of zinc homeostasis in vertebrates.
The study characterized their regulatory functions of four znt members (znt1, znt2, znt6 and znt8) in Zn homeostasis in vertebrates. We found that the -1281/-1296 bp locus on the znt1 promoter, the -1/-16 bp locus on the znt2 promoter, the -825/-839 bp locus on the znt6 promoter, the -165/-180 bp locus and the -274/ -292 bp STAT3 locus on the znt8 promoter were functional MTF-1 binding sites and had metal responsive element (MRE). Zn incubation increased activities of four znt promoters, which was mediated by MRE sites on znt1, znt2, znt6 and znt8 promoters and by STAT3 binding site on znt8 promoter. Moreover, Zn activated the transcription of these znts genes through MTF-1-MRE-dependent pathway. Zn incubation up-regulated the mRNA and total protein expression of ZnT1, ZnT2 and ZnT8 at both 24 h and 48 h. Overall, for the first time, this study offered novel insights for regulatory mechanism of Zn homeostasis in vertebrates.

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