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首页> 外文期刊>American Journal of Physiology >Thermogenic responsiveness to nonspecific beta-adrenergic stimulation is not related to genetic variation in codon 16 of the beta2-adrenergic receptor.
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Thermogenic responsiveness to nonspecific beta-adrenergic stimulation is not related to genetic variation in codon 16 of the beta2-adrenergic receptor.

机译:对非特异性β-肾上腺素刺激的热反应性与β2-肾上腺素受体密码子16的遗传变异无关。

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Stimulation of beta-adrenergic receptors (beta-AR) by the sympathetic nervous system (SNS) modulates energy expenditure (EE), but substantial interindividual variability is observed. We determined whether the thermogenic response to beta-AR stimulation is related to genetic variation in codon 16 of the beta(2)-AR, a biologically important beta-AR polymorphism, and whether differences in SNS activity (i.e., the stimulus for agonist-promoted downregulation) are involved. The increase in EE (DeltaEE, indirect calorimetry, ventilated hood) above resting EE in response to nonspecific beta-AR stimulation [iv isoproterenol: 6, 12, and 24 ng/kg fat-free mass (FFM)/min] was measured in 46 healthy adult humans [Arg16Arg: 9 male, 7 female, 48 +/- 5 yr; Arg16Gly: 11 male, 4 female, 53 +/- 5 yr; Gly16Gly: 3 male, 12 female, 48 +/- 5 yr (means +/- SE)]. Neither FFM-adjusted baseline resting EE (P = 0.83) nor the dose of isoproterenol required to increase EE 10% above resting (P = 0.87) differed among the three groups (Arg16Arg: 5,409 +/- 209 kJ/day, 11.2 +/- 2.1 ng x kg FFM(-1) x min(-1); Arg16Gly: 5,367 +/- 272 kJ/day, 11.1 +/- 2.1 ng x kg FFM(-1) x min(-1); Gly16Gly: 5,305 +/- 159 kJ/day, 10.5 +/- 1.4 ng x kg FFM(-1) x min(-1)). Consistent with this, muscle sympathetic nerve activity and plasma norepinephrine concentrations were not different among the groups. Group differences in sex composition did not influence the results. Our findings indicate that the thermogenic response to nonspecific beta-AR stimulation, an important mechanistic component of overall beta-AR modulation of EE, is not related to this beta(2)-AR polymorphism in healthy humans. This may be explained in part by a lack of association between this gene variant and tonic SNS activity.
机译:交感神经系统(SNS)对β-肾上腺素能受体(β-AR)的刺激可调节能量消耗(EE),但观察到个体之间存在较大差异。我们确定了对β-AR刺激的致热反应是否与β(2)-AR的16号密码子(生物学上重要的β-AR多态性)的遗传变异有关,以及SNS活性是否不同(例如,激动剂-促进下调)。对非特异性β-AR刺激[iv异丙肾上腺素:6、12和24 ng / kg无脂肪质量(FFM)/ min]的反应,EE值高于静息EE值的增加(DeltaEE,间接量热法,通风罩)。 46名健康成人[Arg16Arg:9例男性,7例女性,48 +/- 5岁; Arg16Gly:11例男性,4例女性,53 +/- 5岁; Gly16Gly:3例男性,12例女性,48 +/- 5年(平均+/- SE)]。经FFM调整的基线静息EE(P = 0.83)或使EE比静息高出10%所需的异丙肾上腺素剂量(P = 0.87)在三组之间均无差异(Arg16Arg:5,409 +/- 209 kJ / day,11.2 + / -2.1 ng x kg FFM(-1)x min(-1); Arg16Gly:5,367 +/- 272 kJ /天,11.1 +/- 2.1 ng x kg FFM(-1)x min(-1); Gly16Gly: 5,305 +/- 159 kJ /天,10.5 +/- 1.4 ng x kg FFM(-1)x min(-1))。与此相一致,两组之间的肌肉交感神经活动和血浆去甲肾上腺素浓度没有差异。性别组成上的群体差异不会影响结果。我们的发现表明,对非特异性β-AR刺激(整体EE的整体β-AR调节的重要机制)的生热响应与健康人中的该beta(2)-AR多态性无关。这可能部分是由于该基因变体与补品SNS活性之间缺乏关联而造成的。

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