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Publication : Nardilysin controls cardiac sympathetic innervation patterning through regulation of p75 neurotrophin receptor.

First Author  Ohno M Year  2020
Journal  FASEB J Volume  34
Issue  9 Pages  11624-11640
PubMed ID  32683751 Mgi Jnum  J:305354
Mgi Id  MGI:6705572 Doi  10.1096/fj.202000604R
Citation  Ohno M, et al. (2020) Nardilysin controls cardiac sympathetic innervation patterning through regulation of p75 neurotrophin receptor. FASEB J 34(9):11624-11640
abstractText  Cardiac sympathetic innervation is critically involved in the regulation of circulatory dynamics. However, the molecular mechanism for the innervation patterning has remained elusive. Here, we demonstrate that nardilysin (NRDC, Nrdc), an enhancer of ectodomain shedding, regulates cardiac sympathetic innervation. Nardilysin-deficient (Nrdc(-/-) ) mice show hypoplastic hearts, hypotension, bradycardia, and abnormal sympathetic innervation patterning. While the innervation of left ventricle (LV) of wild-type mice is denser in the subepicardium than in the subendocardium, Nrdc(-/-) LV lacks such a polarity and is uniformly and more abundantly innervated. At the molecular level, the full-length form of p75 neurotrophin receptor (p75(NTR) , Ngfr) is increased in Nrdc(-/-) LV due to the reduced ectodomain shedding of p75(NTR) . Importantly, the reduction of p75(NTR) rescued the abnormal innervation phenotype of Nrdc(-/-) mice. Moreover, sympathetic neuron-specific, but not cardiomyocyte-specific deletion of Nrdc recapitulated the abnormal innervation patterning of Nrdc(-/-) mice. In conclusion, neuronal nardilysin critically regulates cardiac sympathetic innervation and circulatory dynamics via modulation of p75(NTR) .
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