RANTES mediates kidney ischemia reperfusion injury through a possible role of HIF-1α and LncRNA PRINS

Tung‐Min Yu(China Medical University), Kalaiselvi Palanisamy(China Medical University), Kuo‐Ting Sun(China Medical University), Yuan‐Ji Day(Chang Gung University), Kuo‐Hsiung Shu(Taichung Veterans General Hospital), I‐Kuan Wang(China Medical University), Woei‐Cherng Shyu(China Medical University), Ping Chen(Guangxi Medical University), Yuh‐Lien Chen(National Taiwan University), Chi‐Yuan Li(China Medical University)
Scientific Reports
January 4, 2016
Cited by 86Open Access
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Abstract

RANTES (Regulated on activation, normal T-cell expressed and secreted), recruits circulating leukocytes and augments inflammatory responses in many clinical conditions. Inflammatory responses in ischemia-reperfusion injury (IRI) significantly affect the unfavorable outcomes of acute kidney injury (AKI), and that infiltrating immune cells are important mediators of AKI. However, the significance of RANTES in AKI and whether hypoxia-induced LncRNAs are involved in the regulatory process of AKI are not known. Here we show that, in the kidney IRI mice model, significant RANTES expression was observed in renal tubular cells of wild type mice. RANTES deficient (RANTES(-/-)) mice showed better renal function by reducing the acute tubular necrosis, serum creatinine levels, infiltration of inflammatory cells and cytokine expressions compared to wild type. In vitro, we found that RANTES expression was regulated by NF-κB. Further, renal tubular cells showed deregulated LncRNA expression under hypoxia. Among HIF-1α dependent LncRNAs, PRINS (Psoriasis susceptibility-related RNA Gene Induced by Stress) was significantly up regulated in hypoxic conditions and had specific interaction with RANTES as confirmed through reporter assay. These observations show first evidence for RANTES produced by renal tubular cells act as a key chemokine in AKI and HIF-1α regulated LncRNA-PRINS might be involved in RANTES production.


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