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Characterization of Dahl salt-sensitive rats with genetic disruption of the A2B adenosine receptor gene: implications for A2B adenosine receptor signaling during hypertension

机译:具有A2B腺苷受体基因的遗传破坏的达尔盐敏感性大鼠的表征:对高血压期间A2B腺苷受体信号的影响

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摘要

The A2B adenosine receptor (AR) has emerged as a unique member of the AR family with contrasting roles during acute and chronic disease states. We utilized zinc-finger nuclease technology to create A2BAR gene (Adora2b)-disrupted rats on the Dahl salt-sensitive (SS) genetic background. This strategy yielded a rat strain (SS-Adora2b mutant rats) with a 162-base pair in-frame deletion of Adora2b that included the start codon. Disruption of A2BAR function in SS-Adora2b mutant rats was confirmed by loss of agonist (BAY 60-6583 or NECA)-induced cAMP accumulation and loss of interleukin-6 release from isolated fibroblasts. In addition, BAY 60-6583 produced a dose-dependent increase in glucose mobilization that was absent in SS-Adora2b mutants. Upon initial characterization, SS-Adora2b mutant rats were found to exhibit increased body weight, a transient delay in glucose clearance, and reduced proinflammatory cytokine production following challenge with lipopolysaccharide (LPS). In addition, blood pressure was elevated to a greater extent (∼15–20 mmHg) in SS-Adora2b mutants as they aged from 7 to 21 weeks. In contrast, hypertension augmented by Ang II infusion was attenuated in SS-Adora2b mutant rats. Despite differences in blood pressure, indices of renal and cardiac injury were similar in SS-Adora2b mutants during Ang II-augmented hypertension. We have successfully created and validated a new animal model that will be valuable for investigating the biology of the A2BAR. Our data indicate varying roles for A2BAR signaling in regulating blood pressure in SS rats, playing both anti- and prohypertensive roles depending on the pathogenic mechanisms that contribute to blood pressure elevation.
机译:A2B腺苷受体(AR)已成为AR家族的独特成员,在急性和慢性疾病状态中的作用截然不同。我们利用锌指核酸酶技术在Dahl盐敏感(SS)遗传背景上创建了A2BAR基因(Adora2b)破坏的大鼠。该策略产生了大鼠品系(SS-Adora2b突变体大鼠),其带有162个碱基对的Adora2b框内缺失,其中包括起始密码子。通过激动剂(BAY 60-6583或NECA)诱导的cAMP积累的损失以及白细胞从分离的成纤维细胞中释放的白细胞介素6的释放,证实了SS-Adora2b突变大鼠中A2BAR功能的破坏。另外,BAY 60-6583产生了葡萄糖动员的剂量依赖性增加,这在SS-Adora2b突变体中是不存在的。最初表征后,发现SS-Adora2b突变大鼠在脂多糖(LPS)攻击后表现出体重增加,葡萄糖清除短暂延迟和促炎性细胞因子产生减少。此外,随着SS-Adora2b突变体从7周到21周的老化,血压升高幅度更大(〜15-20 mmHg)。相反,在SS-Adora2b突变大鼠中,Ang II输注引起的高血压减弱。尽管血压存在差异,但在Ang II增强型高血压期间,SS-Adora2b突变体的肾脏和心脏损伤指数相似。我们已经成功创建并验证了一种新的动物模型,该模型对于研究A2BAR的生物学价值非常宝贵。我们的数据表明,A2BAR信号传导在调节SS大鼠血压中的作用不同,同时发挥抗高血压作用和高血压作用,具体取决于导致血压升高的致病机制。

著录项

  • 来源
    《Purinergic Signalling》 |2015年第4期|519-531|共13页
  • 作者单位

    Department of Pharmacology and Toxicology Medical College of Wisconsin">(1);

    Cardiovascular Center Medical College of Wisconsin">(2);

    Department of Pharmacology and Toxicology Medical College of Wisconsin">(1);

    Department of Pharmacology and Toxicology Medical College of Wisconsin">(1);

    Cardiovascular Center Medical College of Wisconsin">(2);

    Division of Developmental Immunology La Jolla Institute for Allergy and Immunology">(3);

    Division of Developmental Immunology La Jolla Institute for Allergy and Immunology">(3);

    Department of Physiology and Human Molecular Genetics Center Medical College of Wisconsin">(4);

    Cardiovascular Center Medical College of Wisconsin">(2);

    Department of Physiology and Human Molecular Genetics Center Medical College of Wisconsin">(4);

    Department of Pharmacology and Toxicology Medical College of Wisconsin">(1);

    Department of Pharmacology and Toxicology Medical College of Wisconsin">(1);

    Cardiovascular Center Medical College of Wisconsin">(2);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adenosine; Adenosine receptor; Gene targeting; Hypertension; Angiotensin; Metabolic disease;

    机译:腺苷;腺苷受体;基因靶向;高血压;血管紧张素;代谢性疾病;
  • 入库时间 2022-08-18 02:25:36

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