Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8498007 | Developmental & Comparative Immunology | 2016 | 20 Pages |
Abstract
Nitric oxide (NO) is an important signaling molecular in the immune system of all vertebrates and invertebrates for pathologic and physiologic process, and it is largely produced by inducible nitric oxide synthase (iNOS). To uncover key mechanisms regulating NOS expression in sea cucumber Apostichopus japonicus, we amplified a fragment of the NOS promoter by genome walking approach and characterized putative transcription factor binding motifs using luciferase assay. Transient transfection of EPC cells using 5â²-deletion constructs linked to luciferase reporter revealed that the region â614/+39 contributed importantly to expression of the AjNOS gene, and the â614 bp of the 5â²-flanking region of the AjNOS gene responded well to LPS. Analysis of the functional promoter region revealed the presence of two potential NF-κB (â375 bp to â366 bp, â76 bp to â67 bp) and three STAT binding sites (â284 bp to â276 bp, â95 bp to 87 bp, â81 bp to â73 bp). When luciferase reporter vector and expression vector co-transfected revealed that NF-κB/Rel, but not STAT5, activate the AjNOS promoter fragment. Furthermore, two truncated reporter vectors co-transfected with vector expressing NF-κB/Rel revealed that the first NF-κB binding site (â375 bp to â366 bp) was essential for the ability of this promoter to induce AjNOS transcription. In addition, blocking the AjRel by SN50 (NF-κB inhibitory peptide) depressed the AjNOS expression and NO production both in vivo and in vitro, respectively, revealing that AjRel might directly modulate AjNOS. All our findings confirmed that NF-κB dependent mechanisms regulating expression of AjNOS and suggested a means of linking NO production to the immune response.
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Authors
Yina Shao, Zhenhui Wang, Zhimeng Lv, Chenghua Li, Weiwei Zhang, Ye Li, Xuemei Duan,