IgE induces hypotension in asthma mice by down-regulating vascular NCX1 expression through activating MiR-212-5p

Hongmei, Zhao, Xiaomin, Song, Li, Yan, Meng, Ren, Xingxing, Cui, Yao, Li, Ran, Gao, Wei, Zhang, Marobian, Liu, Bin, Liu, Yi, Hu, Jing, Wang

Biochimica et Biophysica Acta - Molecular Basis of Disease |

Immunoglobulin E (IgE) has been suggested as a risk factor for allergy-induced low blood pressure, which has not been well explained in molecular details. Our current study shows a novel mechanism involving IgE, FcɛR1, miRNA-212-5p (miR-212-5p), and sodium/calcium exchanger protein 1(NCX1) for asthma to induce hypotension. In arterial smooth muscle cells, IgE up-regulated miR212-5p via its receptor FcɛR1, which resulted in down-regulation of NCX1 that is a regulating factor for blood pressure. In mice, asthma induced hypotension by interfering vasoconstrictive function; knockout of FcɛR1 kept the asthmatic mice from developing hypotension; knock-down of miR-212-5p in asthmatic mice resulted in a significant restoration of blood pressure. In human, asthma and IgE were positively correlated with hypotension in cohort study on NIH epidemiological data. This study suggests a novel therapeutic target (miR-212-5p) for treatment of asthma-induced hypotension.