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Expression of genes involved in cholesterol biosynthesis in male germ cells is insensitive to the negative cholesterol feedback regulation, in contrast to cholesterol level-sensitive/sterol regulatory element binding protein (SREBP)-dependent gene regulation in somatic cells. The role of sterol regulatory element binding proteins in spermatogenic cells was an enigma until recently, when a soluble, 55 kDa cholesterol-insensitive form of SREBP2 (SREBP2gc) was discovered [Mol. Cell. Endocrinol. 22 (2002) 8478], being translated from a germ cell-specific SREBP2 mRNA. Our RT-PCR results also show that SREBP2 as well as SREBP1c mRNAs are detectable in prepubertal and postpubertal male germ cells while SREBP1a is not detected. Surprisingly, three SREBP2 immunoreactive proteins (72, 63 and 55 kDa), that are not present in mouse liver nuclei, reside in testis nuclei of prepubertal and adult mice. The 55 kDa protein is likely SREBP2gc, the other two isoforms are novel. HPLC measurements in liver and testes of fasted prepubertal and postpubertal mice showed no significant difference in cholesterol level. However, FF-MAS and lanosterol/testis-meiosis activating sterol (T-MAS) intermediates that are detectable mainly in testes, increase in fasted postpubertal mice which coincides well with the elevated level of 68 kDa SREBP2. Similar to SREBP2gc, the two novel SREBP2 immunoreactive proteins seem to be insensitive to the level of cholesterol.  相似文献   

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1. The analogies between the processing of amyloid precursor protein (APP) and other transmembrane sterol regulatory element binding proteins (SREBPs) inspired us to conduct further studies on whether β-amyloid (Aβ) affects aromatase by interacting with APP and SREBP.2. In this study, cultured human neuroblastoma cells (SHSY-5Y) were incubated in experimental media (media without FBS, the main cholesterol source) in the presence or absence of Aβ (1 μM) for 24 h.3. Cellular extracts were subjected to immunoblot analysis using anti-APP, anti-aromatase and anti-SREBP-1. In these cell lines, we detected aromatase (55 kDa), SREBP cleavage product (68 kDa) and APP precursor (100–95 kDa) and cleavage product (60 kDa) by immunoblotting. Aromatase and SREBP levels were elevated in the cells incubated 24 h in experimental media and were attenuated in Aβ-supplemented experimental media.4. The disturbance of cholesterol homeostasis appears to be an important factor in the pathogenesis of Alzheimer's disease. These findings may have important implications for understanding the mechanisms of the aromatase enzyme gene in disease states such as Alzheimer’s.  相似文献   

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Proteolytic activation of SREBPs during adipocyte differentiation   总被引:1,自引:0,他引:1  
A member of sterol regulatory element-binding protein (SREBP) family, SREBP-1, is a key regulator of adipocyte differentiation. Expression of the SREBP-1 gene is induced during adipocyte differentiation, but proteolytic activation of the synthesized precursor form of SREBP-1 has not been well analyzed. The proteolytic processing of SREBPs is severely suppressed in sterol loaded culture cells. Here we report that a splicing isoform, SREBP-1a, is predominantly expressed in 3T3-L1 preadipocytes and adipocytes, and that the nuclear active form of SREBP-1 protein increases in adipocyte differentiation. We further show that the amount of nuclear SREBP-2 protein also increases despite no increase in SREBP-2 mRNA, suggesting that proteolytic cleavage of SREBPs is induced in lipid loaded adipocytes. Northern blot analyses reveal that mRNA levels for SREBP cleavage-activating protein (SCAP), Site-1 protease (S1P), and Site-2 protease (S2P), which participate in the proteolytic processing of SREBPs, are relatively unaffected in adipogenesis. These results demonstrate that SREBP-2 appears to promote adipocyte differentiation as well as SREBP-1 and that the proteolytic activation of SREBPs may be induced by an as-yet unidentified mechanism in lipid loaded adipocytes.  相似文献   

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SREBP介导的基因表达的调控(英文)   总被引:1,自引:0,他引:1  
SREBP转录因子是脂类代谢的重要调节者。当细胞有脂类需求时,在内质网膜上的SREBP前体通过蛋白水解被激活。然后,氨基端的SREBP片段被运到细胞核内激活靶基因的转录。细胞培养和转基因小鼠模型的研究已经证明,SREBP的主要靶基因包括负责脂肪和胆固醇合成的酶,以及低密度脂蛋白受体。早期对SREBP的研究相当完善地揭示了其前体被激活的机理。最近的研究又使我们认识了细胞核内SREBP的调控机理。在细胞核中,SREBP会结合特定的转录辅助因子,刺激或抑制其靶基因的转录,这些转录辅助因子包括CBP/p300和Mediator蛋白复合体。此外,细胞核内SREBP的稳定性受磷酸化和乙酰化的调节。细胞核内SREBP的这种蛋白质相互作用和修饰,使细胞内外信号(如胰岛素或氧化应激)更好地控制脂类合成。在正常生理状态下,脂质动态平衡是严格保持着的,然而,在有些病理条件下,如肥胖、二型糖尿病、心血管疾病和脂肪肝,SREBP往往会失调。因此,SREBP的新调控机制可能对治疗代谢性疾病提供新的机遇。  相似文献   

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