Dempsey M E, Hargis P S, McGuire D M, McMahon A, Olson C D, Salati L M, Clarke S D, Towle H C
Chem Phys Lipids. 1985 Sep;38(3):223-37. doi: 10.1016/0009-3084(85)90018-0.
This report summarizes our recent studies on the protein known as sterol carrier protein (SCP) or fatty acid binding protein (FABP). SCP is a highly abundant, ubiquitous protein with multifunctional roles in the regulation of lipid metabolism and transport. SCP in vitro activates membrane-bound enzymes catalyzing cholesterol synthesis and metabolism, as well as those catalyzing long chain fatty acid metabolism. SCP also binds cholesterol and fatty acids with high affinity and rapidly penetrates cholesterol containing model membranes. Studies in vivo showed SCP undergoes a remarkable diurnal cycle in level and synthesis, induced by hormones and regulated in liver by translational events. SCP rapidly responds in vivo to physiological events and manipulations affecting lipid metabolism by changes in level. Thus SCP appears to be an important regulator of lipid metabolism. Preliminary evidence is presented that SCP is secreted by liver and intestine into blood and then taken up by tissues requiring SCP but incapable of adequate SCP synthesis.
本报告总结了我们最近对一种名为固醇载体蛋白(SCP)或脂肪酸结合蛋白(FABP)的蛋白质的研究。SCP是一种高度丰富、普遍存在的蛋白质,在脂质代谢和运输的调节中具有多种功能。SCP在体外可激活催化胆固醇合成和代谢的膜结合酶,以及催化长链脂肪酸代谢的酶。SCP还能以高亲和力结合胆固醇和脂肪酸,并能迅速穿透含胆固醇的模型膜。体内研究表明,SCP的水平和合成呈现出显著的昼夜周期,受激素诱导,并在肝脏中通过翻译事件进行调节。SCP在体内通过水平变化对影响脂质代谢的生理事件和操作迅速做出反应。因此,SCP似乎是脂质代谢的重要调节因子。初步证据表明,SCP由肝脏和肠道分泌到血液中,然后被需要SCP但无法充分合成SCP的组织摄取。