Generation of Animal Models for Diabetes by Transgenic and Gene Targeting Technology
Generation of Animal Models for Diabetes by Transgenic and Gene Targeting Technology
批准号:
05557050
负责人:
KADOWAKI Takashi
金额:
$11.01万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Developmental Scientific Research (B)
财政年份:
1993
资助国家:
日本
项目状态:
已结题
起止时间:
1993 至 1995
中文摘要
非胰岛素依赖型糖尿病(NIDDM)被认为是一种多基因疾病,胰岛素抵抗和胰岛素分泌缺陷是其主要病因。胰岛素受体底物-1(IRS-1)基因敲除的纯合子小鼠表现出与胰岛素抵抗和代偿性高胰岛素血症相关的正常糖耐量。具有β细胞葡萄糖激酶(GK)基因敲除的杂合子小鼠表现出糖耐量降低,这是由于胰岛素分泌到葡萄糖的减少。为了阐明胰岛素抵抗和胰岛素分泌缺陷在NIDDM发病中的相互作用,我们通过将IRS-1和β细胞GK基因分别与两种单基因敲除的小鼠杂交,产生了一只具有IRS-1和β细胞GK基因的双基因敲除小鼠。双基因敲除小鼠患上了明显的糖尿病。腹膜腔内葡萄糖负荷(1.5 mg/g体重)120min后血糖水平为108(Sy.+-)。[)24(宽型),95()SY+-。[)26(IRS-1基因敲除),159()SY+-。[)68(GK基因敲除)和210()SY+-。[)38(双击倒)mg/dl(平均值()SY+-.[)SD)(双型与野生型,IRS-1或GK;P<;0.01)。与IRS-1基因敲除小鼠一样,双基因敲除小鼠表现出空腹高胰岛素血症和选择性胰岛β细胞增殖(空腹胰岛素水平:0.38(]sy.+)。[)0.30(双击倒),0.35(正反)。[)0.27(IRS-1基因敲除)与0.25(SY+-)。[)0.12(野生型)ng/ml)(胰岛素阳性细胞面积占胰腺面积的比例:1.18()sy.+-。[)0.68%;P<;0.01(双击倒),1.20(正态+-)。[)0.95%;P<;0.05(IRS-1基因敲除)对0.54(SY+-)。[)0.26%(野生型),但胰岛素与葡萄糖的分泌受损(负荷后前30min胰岛素与葡萄糖增量之比:31(双基因敲除)vs.163(野生型)或183(IRS-1基因敲除)ng胰岛素/mg葡萄糖×103)。总而言之,基因异常,其中每一种本身都不是糖尿病的,如果它们共存,就会导致过度糖尿病。这份报告提供了作为一种多基因疾病的NIDDM在小鼠中的第一次遗传重建。
英文摘要
Non-insulin-dependent diabetes mellitus(NIDDM)is considered a polygenic disorder in which insulin resistance and insulin secretory defect are the major etiologic factors. Homozygous mice with insulin receptor substrate-1(IRS-1)gene knockout showed normal glucose tolerance associated with insulin resistance and compensatory hyperinsulinemia. Heterozygous mice with beta-cell glucokinase(GK)gene knockout showed impaired glucose tolerance due to decreased insulin secretion to glucose. To elucidate the interplay between insulin resistance and insulin secretory defect for the development of NIDDM,we generated a double knockout mouse with ***ption of IRS-1 and beta-cell GK genes by crossing the mice with each of the single gene knockout. The double knockout mice developed overt diabetes. Blood glucose levels 120min after intraperitoneal glucose load(1.5mg/ g body weight)were 108(]SY.+-。[)24(wide-type), 95(]SY.+-。[)26(IRS-1 knockout), 159(]SY.+-。[)68(GK knockout), and 210(]SY.+-。[)38(double knockout) mg/dl(mean(]SY.+-。[)SD)(double vs. wild-type, IRS-1, or GK ; P<0.01). The double knockout mice showed fasting hyperinsulinemia and selective hyperplasia of the beta-cells as the IRS-1 knockout mice(fasting insulin levels : 0.38(]SY.+-。[)0.30(double knockout), 0.35(]SY.+-。[)0.27(IRS-1 knockout)vs. 0.25(]SY.+-。[)0.12(wild-type)ng/ml)(proportion of areas of insulin-positive cells to the pancreas : 1.18(]SY.+-。[)0.68% ; P<0.01(double knockout), 1.20(]SY.+-。[)0.95% ; P<0.05(IRS-1 knockout)vs. 0.54(]SY.+-。[)0.26%(wild-type)), but impaired insulin secreation to glucose(the ratio of increment of insulin to that of glucose during the first 30min after load : 31(double knockout)vs. 163(wild-type)or 183(IRS-1 knockout)ng insulin/mg glucose x 103). In conclusions, the genetic abnormalities, each of which is non-diabetogenic by itself, cause overtdiabetes if they coexist. This report provides the first genetic reconstitution of NIDDM as a polygenic disorder in mice.
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Kaburaki, Y.: "Role of insulin receptor substrate-1 and pp60 in the regulation of insulin-induced glucose transport and GLUT4 translocation in primary adipocytes." J.Biol.Chem.272. 25839-25844 (1997)
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鏑木康志: "インスリンによる細胞内情報伝達におけるIRS-1とMAPキナーゼの役割" 分子糖尿病学. 4. 77-82 (1993)
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共 29 条
Comprehensive and expansive research of the universal metabolic regulation mechanisms for healthspan
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Integrated elucidation of metabolic pathway in the physiology and pathology
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Physiological and pathophysiological roles ofAdiponectin receptors and identification of molecular targets for treatment of life-style related diseases
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Physiological and pathophysiological roles and signal transduction of adiponectin receptors
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Development of novel diagnostic and therapeutic strategies for obesity and insulin resistance by identification of endogenous PPARγ ligands
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国内基金
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