GPRASP1 deletion in mice abrogates adverse side effects associated with chronic stimulation of Beta2-adrenoceptor

IF 6.9 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Alaa Abu-Helo , François Daubeuf , Thibaud Tranchant , Christine Lehalle , Khadija Elhabazi , Gabrielle Zeder-Lutz , Valérie Kugler , Claire Lugnier , Nelly Frossard , Sandra Lecat , Frédéric Simonin
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Abstract

GPCR associated sorting protein 1 (GPRASP1) interacts with numerous GPCRs including the Beta2-adrenoceptor (B2AR) and has been proposed to be involved in adaptations associated with chronic stimulation of those receptors. In clinic, long acting B2AR agonists (LABAs) such as formoterol are used in the treatment of asthma as potent bronchodilators but with adverse side effects including the development of tolerance and airway hyperresponsiveness upon chronic administration. Here, we investigated the role of GPRASP1 on B2AR activity and on B2AR agonists-associated side effects in vitro and in vivo. To this purpose, we set-up a model of chronic formoterol administration in mouse leading to B2AR down-regulation as well as to the development of airway hyperreactivity and bronchodilator tolerance and studied the phenotype of GPRASP1 knockout animals. We show in cells that GPRASP1 expression has no impact on agonist-induced B2AR down-regulation but strongly modulate B2AR-associated signalling. Moreover, wild-type mice chronically treated with formoterol developed airway hyperresponsiveness to methacholine and bronchodilator tolerance to formoterol that were absent in GPRASP1 KO mice while B2AR down-regulation was similar in both genotypes. These adverse side effects were correlated with an increase in the number of cells and in collagen levels in the lungs of wild-type but not of GPRASP1 KO mice. Collectively, our data show that GPRASP1 is critically involved in adaptations to chronic activation of B2AR that leads to lung tissue remodelling, development of bronchial hyperresponsiveness and bronchodilator tolerance to B2AR agonist formoterol and could therefore represent an interesting target to limit side effects associated with LABAs.
GPRASP1在小鼠中的缺失消除了与β -肾上腺素受体慢性刺激相关的不良副作用
GPCR相关分选蛋白1 (GPRASP1)与包括β 2肾上腺素受体(B2AR)在内的许多GPCR相互作用,并被认为参与与这些受体的慢性刺激相关的适应性。在临床上,长效B2AR激动剂(LABAs),如福莫特罗,作为有效的支气管扩张剂用于治疗哮喘,但有不良副作用,包括慢性给药后产生耐受性和气道高反应性。在这里,我们研究了GPRASP1在体外和体内对B2AR活性和B2AR激动剂相关副作用的作用。为此,我们建立了小鼠慢性福莫特罗给药导致B2AR下调、气道高反应性和支气管扩张剂耐受的模型,并研究了GPRASP1敲除动物的表型。我们在细胞中发现,GPRASP1表达对激动剂诱导的B2AR下调没有影响,但强烈调节B2AR相关的信号传导。此外,长期服用福莫特罗的野生型小鼠对甲胆碱的气道高反应性和福莫特罗对支气管扩张剂的耐受性在GPRASP1 KO小鼠中是不存在的,而B2AR的下调在两种基因型中是相似的。这些不良副作用与野生型小鼠肺部细胞数量和胶原蛋白水平的增加有关,而与GPRASP1 KO小鼠无关。总的来说,我们的数据表明,GPRASP1在B2AR慢性激活的适应中至关重要,导致肺组织重塑、支气管高反应性的发展和对B2AR激动剂formoterol的支气管扩张剂耐受性,因此可能代表一个有趣的靶点,以限制与LABAs相关的副作用。
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来源期刊
CiteScore
11.90
自引率
2.70%
发文量
1621
审稿时长
48 days
期刊介绍: Biomedicine & Pharmacotherapy stands as a multidisciplinary journal, presenting a spectrum of original research reports, reviews, and communications in the realms of clinical and basic medicine, as well as pharmacology. The journal spans various fields, including Cancer, Nutriceutics, Neurodegenerative, Cardiac, and Infectious Diseases.
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