NEDD4L is a promoter for angiogenesis and cell proliferation in human umbilical vein endothelial cells

Author:

Liu Binghong12,Song Fei2,Zhou Xiaoxia2,Wu Chan2,Huang Huizhu2,Wu Weiyin2,Li Gang2ORCID,Wang Yan12

Affiliation:

1. Medical College Guangxi University Nanning Guangxi China

2. Xiamen Cardiovascular Hospital of Xiamen University, School of Medicine Xiamen University Xiamen Fujian China

Abstract

AbstractDysregulated angiogenesis leads to neovascularization, which can promote or exacerbate various diseases. Previous studies have proved that NEDD4L plays an important role in hypertension and atherosclerosis. Hence, we hypothesized that NEDD4L may be a critical regulator of endothelial cell (EC) function. This study aimed to define the role of NEDD4L in regulating EC angiogenesis and elucidate their underlying mechanisms. Loss‐ and gain‐of‐function of NEDD4L detected the angiogenesis and mobility role in human umbilical vein endothelial cells (HUVECs) using Matrigel tube formation assay, cell proliferation and migration. Pharmacological pathway inhibitors and western blot were used to determine the underlying mechanism of NEDD4L‐regulated endothelial functions. Knockdown of NEDD4L suppressed tube formation, cell proliferation and cell migration in HUVECs, whereas NEDD4L overexpression promoted these functions. Moreover, NEDD4L‐regulated angiogenesis and cell progression are associated with the phosphorylation of Akt, Erk1/2 and eNOS and the expression of VEGFR2 and cyclin D1 and D3. Mechanically, further evidence was confirmed by using Akt blocker MK‐2206, Erk1/2 blocker U0126 and eNOS blocker L‐NAME. Overexpression NEDD4L‐promoted angiogenesis, cell migration and cell proliferation were restrained by these inhibitors. In addition, overexpression NEDD4L‐promoted cell cycle‐related proteins cyclin D1 and D3 were also suppressed by Akt blocker MK‐2206, Erk1/2 blocker U0126 and eNOS blocker L‐NAME. Our results demonstrated a novel finding that NEDD4L promotes angiogenesis and cell progression by regulating the Akt/Erk/eNOS pathways.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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