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Role of Anti-aging Klotho Gene on Adaptation to Oxidative Stress

Role of Anti-aging Klotho Gene on Adaptation to Oxidative Stress
抗衰老 Klotho 基因在适应氧化应激中的作用
批准号:
8425087
负责人:
Priya Ravikumar
金额:
$3.23万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-02-28 至 2013-08-31

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中文摘要
翻译
描述(由申请人提供):Klotho首先被鉴定为抗衰老基因,但Klotho蛋白具有多种作用,包括抗氧化。缺氧诱导活性氧(ROS)的线粒体泄漏,这可以作为肺泡生长和重塑以及细胞寿命的生理信号。相反,高氧产生过量的ROS,诱导类似肺气肿的肺泡变性。因此,缺氧和高氧都对肺施加氧化应激。有趣的是,Klotho缺乏症导致过早衰老综合征,寿命短,生长迟缓,动脉粥样硬化,器官退化和肺气肿。Klotho缺失(KL-/-)纯合子小鼠在年轻时死亡,伴有广泛的异常。杂合子小鼠(KL)发生肺气肿,但其他方面正常。目前尚不清楚产生过量Klotho蛋白(Tg-KL)的转基因小鼠是否受到氧化损伤的保护。我们假设肺的生长和衰老代表了由一组共享基因调节的氧化应激适应谱的不同末端,Klotho处于这些途径的中心阶段。目的是探讨Klotho对出生后暴露于不同O2张力的动物肺生长和功能的作用。我将确定氧化应激对Klotho基因缺陷或过表达小鼠肺结构和功能的影响,并检验Klotho缺陷损害缺氧诱导的肺生长并加速高氧诱导的肺损伤,而Klotho过表达增强缺氧诱导的肺生长并减轻高氧诱导的肺损伤的假设。转基因小鼠和匹配的对照将暴露于13,21或40%的O2 3周,然后测量肺功能,超微结构和氧化损伤的生物标志物。最后,我将测试Klotho对肺上皮细胞体外氧化损伤反应能力的直接影响。这些研究扩大了我的训练范围和科学探索。Kuro-o和莫伊博士一直在研究Klotho对多器官衰老和疾病相互作用的代谢影响。他们对肺产生了兴趣,因为它是KL小鼠中唯一表现出基线异常的器官。我将在莫伊博士的实验室里负责Klotho工作组的肺部部分。我将把我作为一名生物工程师在博士阶段所学到的知识应用到这个新模型中。我将在一个新的环境,更强调细胞和分子生物学除了生理学。这些结果将促进我们对连接肺部生长和衰老的基本机制的理解,为Klotho生产的操纵是否增强肺部生长或防止退化提供新的见解,并为探索Klotho蛋白的潜在用途奠定基础,可能通过吸入递送,以增加肺部生长或减轻慢性肺部疾病治疗中的破坏。由于Klotho缺陷也存在于人类和Klotho疗法正在深入研究,这个主题具有广泛的生物和临床相关性,将是一个理想的平台,开始我的职业生涯作为一个生物医学研究人员。
英文摘要
DESCRIPTION (provided by applicant): Klotho was first identified as an anti-aging gene but Klotho protein has multiple effects including anti-oxidation. Hypoxia induces mitochondrial leak of reactive O2 species (ROS), which can serve as physiologic signals for alveolar growth and remodeling and cell longevity. Conversely, hyperoxia produces excess ROS that induce alveolar degeneration resembling emphysema. Hence, both hypoxia and hyperoxia impose oxidative stress on the lung. Interestingly Klotho deficiency causes a premature aging syndrome with short lifespan, growth retardation, atherosclerosis, organ degeneration and pulmonary emphysema. Mice homozygous for Klotho deletion (KL-/-) die at a young age with widespread abnormalities. Heterozygous mice (KL) develop pulmonary emphysema but are otherwise normal. It is not known if transgenic mice producing excess Klotho protein (Tg-KL) are protected from oxidative damage. We postulate that growth and aging of the lung represent different ends in the spectrum of adaptation to oxidative stress regulated by a shared set of genes, and that Klotho is at the center stage of these pathways. The Aim is to explore the role of Klotho on lung growth and function in animals exposed to different O2 tensions during postnatal life. I will determine the effects of oxidative stress on lung structure and function in mice bearing deficiency or overexpression of the Klotho gene, and test the hypothesis that Klotho deficiency impairs hypoxia-induced lung growth and accelerates hyperoxia- induced lung damage while Klotho overexpression augments hypoxia-induced lung growth and mitigates hyperoxia-induced lung damage. Genetically modified mice and matched controls will be exposed to 13, 21 or 40% O2 for 3 wk, followed by measurement of lung function, ultrastructure, and biomarkers of oxidative damage. Finally, I will test the direct effects of Klotho on the ability of lung epithelial cells to react to oxidative insult in vitro. These studies expand the scope of my training as well as the scientific quest. Drs. Kuro-o and Moe have been investigating the metabolic effects of Klotho on the interaction of aging and disease in multiple organs. They became interested in the lung since it is the only organ in the KL mice that exhibits baseline abnormalities. I will take on the pulmonary part of this Klotho working group in Dr. Moe's laboratory. I will apply what I have learned in my doctorate training as a bioengineer to this new model. I will be in a new environment with greater emphasis on cell and molecular biology in addition to physiology. The results will advance our understanding of fundamental mechanisms that link lung growth and aging, offer new insight into whether manipulation of Klotho production enhances lung growth or protects against degeneration, and lay the foundation for exploring potential uses of Klotho protein, perhaps by inhalational delivery, to augment lung growth or mitigate destruction in the treatment of chronic lung disease. Since Klotho deficiency also exists in humans and Klotho therapy is being intensely studied, this topic has broad biologic and clinical relevance and will be an ideal platform to launch my career as a biomedical researcher.
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Role of Anti-aging Klotho Gene on Adaptation to Oxidative Stress
  • 批准号:
    8267257
  • 项目类别:
  • 资助金额:
    $5.39万
  • 财政年份:
    2011
  • 负责人:
    Priya Ravikumar
  • 依托单位:
Role of Anti-aging Klotho Gene on Adaptation to Oxidative Stress
  • 批准号:
    7914602
  • 项目类别:
  • 资助金额:
    $5.05万
  • 财政年份:
    2011
  • 负责人:
    Priya Ravikumar
  • 依托单位:
海外基金