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L-DOPA sensitizes vasomotor tone by modulating the vascular alpha1-adrenergic receptor
Daiki Masukawa, Motokazu Koga, Anna Sezaki, Yuka Nakao, Yuji Kamikubo, Tatsuo Hashimoto, Yuki Okuyama-Oki, Aderemi Caleb Aladeokin, Fumio Nakamura, Utako Yokoyama, Hiromichi Wakui, Hiroshi Ichinose, Takashi Sakurai, Satoshi Umemura, Koichi Tamura, Yoshihiro Ishikawa, Yoshio Goshima
Daiki Masukawa, Motokazu Koga, Anna Sezaki, Yuka Nakao, Yuji Kamikubo, Tatsuo Hashimoto, Yuki Okuyama-Oki, Aderemi Caleb Aladeokin, Fumio Nakamura, Utako Yokoyama, Hiromichi Wakui, Hiroshi Ichinose, Takashi Sakurai, Satoshi Umemura, Koichi Tamura, Yoshihiro Ishikawa, Yoshio Goshima
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Research Article Cell biology Vascular biology

L-DOPA sensitizes vasomotor tone by modulating the vascular alpha1-adrenergic receptor

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Abstract

Blood pressure is regulated by extrinsic factors including noradrenaline, the sympathetic neurotransmitter that controls cardiovascular functions through adrenergic receptors. However, the fine-tuning system of noradrenaline signaling is relatively unknown. We here show that l-3,4-dihydroxyphenylalanine (L-DOPA), a precursor of catecholamines, sensitizes the vascular adrenergic receptor alpha1 (ADRA1) through activation of L-DOPA receptor GPR143. In WT mice, intravenous infusion of the ADRA1 agonist phenylephrine induced a transient elevation of blood pressure. This response was attenuated in Gpr143 gene–deficient (Gpr143–/y) mice. Specific knockout of Gpr143 in vascular smooth muscle cells (VSMCs) also showed a similar phenotype, indicating that L-DOPA directly modulates ADRA1 signaling in the VSMCs. L-DOPA at nanomolar concentrations alone produced no effect on the VSMCs, but it enhanced phenylephrine-induced vasoconstriction and intracellular Ca2+ responses. Phenylephrine also augmented the phosphorylation of extracellular signal–regulated kinases in cultured VSMCs from WT but not Gpr143–/y mice. In WT mice, blood pressure increased during the transition from light-rest to dark-active phases. This elevation was not observed in Gpr143–/y mice. Taken together, our findings provide evidence for L-DOPA/GPR143 signaling that exerts precursor control of sympathetic neurotransmission through sensitizing vascular ADRA1.

Authors

Daiki Masukawa, Motokazu Koga, Anna Sezaki, Yuka Nakao, Yuji Kamikubo, Tatsuo Hashimoto, Yuki Okuyama-Oki, Aderemi Caleb Aladeokin, Fumio Nakamura, Utako Yokoyama, Hiromichi Wakui, Hiroshi Ichinose, Takashi Sakurai, Satoshi Umemura, Koichi Tamura, Yoshihiro Ishikawa, Yoshio Goshima

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Figure 4

Phenylephrine induces myosin light chain 2 (MLC2) and ERK phosphorylation in the dissected blood vessels and cultured VSMCs of Gpr143–/y mice.

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Phenylephrine induces myosin light chain 2 (MLC2) and ERK phosphorylatio...
Phenylephrine-induced (Phe-induced) myosin light chain 2 (MLC2) and ERK phosphorylation in dissected blood vessels. Protein levels of pMLC2 and MLC2 (A) and pERK and ERK (B and C) were detected after 3-minute treatment with phenylephrine in the dissected vessels from WT and Gpr143–/y, or SM22-cre; Gpr143WT and SM22-cre; Gpr143fl/y mice. Summarized data of pMLC2/MLC2 (A) and pERK/ERK (B and C) (% of WT control) in WT and Gpr143–/y, or SM22-cre; Gpr143WT and SM22-cre; Gpr143fl/y mice (n = 5–6) are shown. *P < 0.05, **P < 0.01, 1-way ANOVA with Tukey’s multiple comparisons test. Phenylephrine-induced ERK phosphorylation in VSMCs. (D) Protein levels of pERK and ERK were determined after 10-minute treatment with phenylephrine in WT and Gpr143–/y mice. (E) Summarized data of pERK/ERK (% of WT control) (F1,42 = 7.803, n = 8). *P < 0.05, compared with 30 μM phenylephrine in WT mice, 2-way ANOVA with Bonferroni’s multiple comparisons test. n.s., not significant.

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