MCH ACTION AS DEFINED THROUGH GENE KNOCKOUT
MCH ACTION AS DEFINED THROUGH GENE KNOCKOUT
批准号:
6349096
负责人:
ELEFTHERIA MARATOS-FLIER
金额:
$20.93万
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-08-01 至 2001-07-31
关键词:
animal breeding bioenergetics cold temperature gene targeting genotype hypothalamic pituitary adrenal axis in situ hybridization laboratory mouse leptin melanins neuropeptides northern blottings nutrient intake activity nutrition related tag obesity oxygen consumption pathologic process phenotype southern blotting
中文摘要
肥胖是一种病因复杂的严重疾病;它是许多疾病的重要危险因素,包括II型糖尿病、冠状动脉疾病和许多肿瘤,包括子宫内膜癌和结肠癌。虽然肥胖症很常见,但人们对肥胖症的原因知之甚少,可用的治疗方法也不是特别有效。许多外周激素和神经肽与导致肥胖的能量平衡受损的发病机制有关。我们发现,下丘脑肽,黑色素浓缩激素是重要的能量平衡的调节。除了一些生理学研究,我们产生了一个小鼠的MCH基因被消融。纯合子MCH-/-小鼠具有瘦型,总体重减少25%,总体脂减少50%,瘦素水平降低。在黑暗周期期间进食减少至少部分地对表型有贡献,然而,进食减少仅为15%。初步数据表明,MCH基因的消融也可能导致耗氧量增加。本研究旨在详细研究瘦肉型的原因,并确定MCH和来自MCH基因的其他两种肽(N-EI和N-GE)的相对贡献。为了确定MCH在介导其他神经肽(NPY、α MSH、GLP-1)的食欲产生或食欲抑制作用中的作用,将评估MCH-/-小鼠中多种食欲调节肽的作用。除了在啮齿动物肥胖的单基因模型中检查MCH在介导肥胖中的重要性之外,MCH-/-小鼠将与瘦素缺陷(ob/ob)小鼠和瘦素抗性A/γ(agglutinase)小鼠杂交。MCH-/-小鼠还将与具有NPY或食欲素(涉及能量平衡的其他神经肽)消融的小鼠杂交,以确定多基因消融对能量平衡的影响。
英文摘要
Obesity is a serious medical condition with complex etiology; it is a significant risk factor for a number of illnesses including type II diabetes, coronary artery disease a number of neoplasms including endometrial and colon cancer. Although very common, the causes of obesity are poorly understood and available treatments are not particularly effective. A number of peripheral hormones and neuropeptides have been implicated in the pathogenesis of the impaired energy balance which results in obesity. We discovered that the hypothalamic peptide, melanin concentrating hormone is important in the regulation of energy balance. In addition to a number of physiologic studies we generated a mouse in which the MCH gene was ablated. Homozygous MCH-/- mice have a lean phenotype, with a 25% reduction in total body weight and 50% reduction in total body fat and reduced levels of leptin. Decreased eating during the dark cycle contributes t least in part to the phenotype, however, the reduction in eating is only 15%. Preliminary data indicates that ablation of the MCH gene may also lead to increased oxygen consumption. This study proposes to examine the causes of the lean phenotype in detail and to ascertain the relative contributions of MCH and the two other peptides derived from the MCH gene, N-EI and N- GE. To determine the role of MCH in mediating the orexigenic or appetite inhibiting actions of other neuropeptides (NPY, alphaMSH, GLP-1) the effect of a number of appetite regulating peptides in MCH-/- mice will be assessed. In addition to examine the importance of MCH in mediating obesity in single gene models of rodent obesity MCH-/- mice will be crossbred to leptin deficient (ob/ob) mice and leptin resistance A/gamma (agouti) mice. MCH-/- mice will also be crossbred to mice with ablations in NPY or orexin, other neuropeptides implicated in energy, balance, to determine the effect of multiple gene ablation on energy balance.
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会议论文
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DEVELOPMENT OF A MOUSE MONITORING SYSTEM
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MCH ACTION AS DEFINED THROUGH GENE KNOCKOUT
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依托单位:
MCH ACTION AS DEFINED THROUGH GENE KNOCKOUT
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GENE TARGETING APPROACHES TO MCH AND ENERGY BALANCE
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