Prostaglandin E 2 Inhibits Elastogenesis in the Ductus Arteriosus via EP4 Signaling

Author:

Yokoyama Utako1,Minamisawa Susumu1,Shioda Aki1,Ishiwata Ryo1,Jin Mei-Hua1,Masuda Munetaka1,Asou Toshihide1,Sugimoto Yukihiko1,Aoki Hiroki1,Nakamura Tomoyuki1,Ishikawa Yoshihiro1

Affiliation:

1. From the Cardiovascular Research Institute, Yokohama City University, Yokohama, Japan (U.Y., S.M., A.S., R.I., M.-H.J., Y.I.); the Department of Life Science and Medical Bioscience, Waseda University Graduate School of Advanced Science and Engineering, Tokyo, Japan (S.M., R.I.); the Department of Cell Physiology, Jikei University School of Medicine, Tokyo, Japan (S.M.); the Department of Surgery, Yokohama City University, Yokohama, Japan (M.M.); the Department of Cardiovascular Surgery, Kanagawa...

Abstract

Background— Elastic fiber formation begins in mid-gestation and increases dramatically during the last trimester in the great arteries, providing elasticity and thus preventing vascular wall structure collapse. However, the ductus arteriosus (DA), a fetal bypass artery between the aorta and pulmonary artery, exhibits lower levels of elastic fiber formation, which promotes vascular collapse and subsequent closure of the DA after birth. The molecular mechanisms for this inhibited elastogenesis in the DA, which is necessary for the establishment of adult circulation, remain largely unknown. Methods and Results— Stimulation of the prostaglandin E 2 (PGE 2 ) receptor EP4 significantly inhibited elastogenesis and decreased lysyl oxidase (LOX) protein, which catalyzes elastin cross-links in DA smooth muscle cells (SMCs), but not in aortic SMCs. Aortic SMCs expressed much less EP4 than DASMCs. Adenovirus-mediated overexpression of LOX restored the EP4-mediated inhibition of elastogenesis in DASMCs. In EP4-knockout mice, electron microscopic examination showed that the DA acquired an elastic phenotype that was similar to the neighboring aorta. More importantly, human DA and aorta tissues from 7 patients showed a negative correlation between elastic fiber formation and EP4 expression, as well as between EP4 and LOX expression. The PGE 2 -EP4-c-Src-phospholipase C (PLC)γ–signaling pathway most likely promoted the lysosomal degradation of LOX. Conclusions— Our data suggest that PGE 2 signaling inhibits elastogenesis in the DA, but not in the aorta, through degrading LOX protein. Elastogenesis is spatially regulated by PGE 2 -EP4 signaling in the DA.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

Reference49 articles.

1. Vascular Extracellular Matrix and Arterial Mechanics

2. The importance of elastin to aortic development in mice

3. An Anatomical Study of the Closure of the Ductus Arteriosus.;Jager BV;Am J Pathol,1942

4. Changes in distribution of elastin and elastin receptor during intimal cushion formation in the ductus arteriosus

5. Anatomical closure of the ductus arteriosus: a study in 35 specimens.;Ho SY;J Anat,1979

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