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Right ventricular overloading is attenuated in monocrotaline-induced pulmonary hypertension model rats with a disrupted Gpr143 gene, the gene that encodes the 3,4-l-dihydroxyphenyalanine (l-DOPA) receptor

Authors :
Masayuki Nakano
Motoaki Saito
Tatsuo Hashimoto
Motokazu Koga
Kouichi Tamura
Yoshio Goshima
Yusuke Mizuno
Fumio Nakamura
Hiraku Uchimura
Daiki Masukawa
Suo Zou
Takahiro Shimizu
Ryo Niikura
Tomoyuki Miyazaki
Takahisa Goto
Natsuki Matsushita
Source :
Journal of Pharmacological Sciences, Vol 148, Iss 2, Pp 214-220 (2022)
Publication Year :
2022
Publisher :
Elsevier, 2022.

Abstract

Pulmonary hypertension (PH) is a severe and progressive disease that causes elevated right ventricular systolic pressure, right ventricular hypertrophy and ultimately right heart failure. However, the underlying pathophysiologic mechanisms are poorly understood. We previously showed that 3,4-L-dihydroxylphenyalanine (DOPA) sensitizes vasomotor response to sympathetic tone via coupling between the adrenergic receptor alpha1 (ADRA1) and a G protein-coupled receptor 143 (GPR143), a DOPA receptor. We investigated whether DOPA similarly enhances ADRA1-mediated contraction in pulmonary arteries isolated from rats, and whether GPR143 is involved in the PH pathogenesis. Pretreating the isolated pulmonary arteries with DOPA 1 μM enhanced vasoconstriction in response to phenylephrine, an ADRA1 agonist, but not to U-46619, a thromboxane A2 agonist or endothelin-1. We generated Gpr143 gene-deficient (Gpr143-/y) rats, and confirmed that DOPA did not augment phenylephrine-induced contractile response in Gpr143-/y rat pulmonary arteries. We generated a rat model of monocrotaline (MCT)-induced PH. In the MCT model, the right ventricular systolic pressure was attenuated in the Gpr143-/y rats than in WT rats. Phenylephrine-induced cell migration and proliferation were also suppressed in Gpr143-/y pulmonary artery smooth muscle cells than in WT cells. Our result suggests that GPR143 is involved in the PH pathogenesis in the rat models of PH.

Details

Language :
English
ISSN :
13478613
Volume :
148
Issue :
2
Database :
OpenAIRE
Journal :
Journal of Pharmacological Sciences
Accession number :
edsair.doi.dedup.....887560d8034009a0d7a282ed75fb242e