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首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >Impaired regulation of sterol regulatory element binding protein 2 in cholesterol gallstone-susceptible mice
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Impaired regulation of sterol regulatory element binding protein 2 in cholesterol gallstone-susceptible mice

机译:胆固醇胆结石易感小鼠中固醇调节元件结合蛋白2的调节受损

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摘要

Lipid synthesis is under tight transcriptional control involving sterol regulatory element binding proteins (SREBP1, SREBP2). Rising cellular cholesterol levels prevent SREBP2 from entering the nucleus to directly activate the expression of 3-hydroxy-3-methylglutaryl-coenzyme A reductase (Hmgcr), the key enzyme of cholesterol synthesis. The failure to down-regulate cholesterol synthesis in gallstone-susceptible C57L/J but not AKR/J mice prompted us to study the processing of SREBP2 in these mice. Male mice of each strain received a control or lithogenic diet for 28 days. Membrane and nuclear extracts of pooled livers were prepared for immunoblot analysis of SREBP. Steady-state mRNA levels of Hmgcr, Srebp1, Srebp2 and the SREBP cleavage activating protein (Scap) were measured from individual livers. There was no marked difference between the two strains with regard to processing of SREBP1 as well as steady-state mRNA levels of Srebp1, Srebp2 and Scap. However, a near-complete suppression of nuclear SREBP2 related to low Hmgcr mRNA levels was noticed only for gallstone-resistant AKR mice. Abnormal regulation of SREBP2 appears to be responsible for the failure to suppress cholesterol synthesis in genetically cholesterol gallstone-susceptible mice. This defect may contribute to cholesterol hypersecretion and gallstone formation.
机译:脂质合成处于紧密的转录控制之下,涉及固醇调节元件结合蛋白(SREBP1,SREBP2)。升高的细胞胆固醇水平阻止SREBP2进入细胞核,直接激活3-羟基-3-甲基戊二酰辅酶A还原酶(Hmgcr)的表达,这是胆固醇合成的关键酶。下调胆结石敏感性C57L / J小鼠而不是AKR / J小鼠的胆固醇合成的失败未能促使我们研究这些小鼠中SREBP2的加工。每个品系的雄性小鼠接受对照或石质饮食28天。制备合并肝的膜和核提取物用于SREBP的免疫印迹分析。从各个肝脏测量Hmgcr,Srebp1,Srebp2和SREBP裂解激活蛋白(Scap)的稳态mRNA水平。在处理SREBP1以及Srebp1,Srebp2和Scap的稳态mRNA水平方面,两种菌株之间没有显着差异。但是,仅对于抗胆结石的AKR小鼠,发现与低Hmgcr mRNA水平相关的SREBP2核几乎完全被抑制。 SREBP2的异常调节似乎是导致无法抑制遗传性胆固醇胆结石易感小鼠胆固醇合成的原因。该缺陷可能导致胆固醇过度分泌和胆结石形成。

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