Kuhl W E, Spector A A
J Lipid Res. 1970 Sep;11(5):458-65.
Albumin-bound long-chain fatty acid methyl esters (ME) were taken up and utilized by Ehrlich ascites tumor cells and slices of rat heart, liver, and kidney. Much more ME than albumin was taken up by the tumor cells, indicating that ME dissociated from the carrier protein during their uptake. 70-80% of the radioactivity associated with the cells after 1 min of incubation at 37 degrees C remained as ME. The results of studies with metabolic inhibitors and glucose suggest that uptake of ME is an energy-independent process. Changes in incubation medium pH between 7.8 and 6.5 did not markedly alter uptake of ME. Cells incubated with FFA and methanol did not synthesize ME. These findings indicate that ME are taken up intact, and they suggest that the presence of an anionic carboxyl group is not essential for the binding of a long-chain aliphatic hydrocarbon to a mammalian cell. When incubation with labeled ME was continued for 1 hr, increasing amounts of radioactivity were recovered in FFA, phospholipids, neutral lipid esters, and CO(2). ME radioactivity associated with the cells after a brief initial incubation was released in the form of ME and FFA when the cells were incubated subsequently in a medium containing albumin. If the second incubation medium contained no albumin, most of the ME radioactivity initially associated with the cells was incorporated into phospholipids, neutral lipid esters, and CO(2). These results suggest that much of the ME which is taken up, is hydrolyzed to FFA, and that the fatty acids derived from ME are available for further metabolism.
白蛋白结合的长链脂肪酸甲酯(ME)被艾氏腹水瘤细胞以及大鼠心脏、肝脏和肾脏切片摄取并利用。肿瘤细胞摄取的ME比白蛋白多得多,这表明ME在摄取过程中与载体蛋白解离。在37℃孵育1分钟后,与细胞相关的放射性中有70 - 80%仍以ME的形式存在。用代谢抑制剂和葡萄糖进行的研究结果表明,ME的摄取是一个不依赖能量的过程。孵育培养基pH在7.8至6.5之间的变化并未显著改变ME的摄取。用游离脂肪酸(FFA)和甲醇孵育的细胞并未合成ME。这些发现表明ME是完整摄取的,并且表明阴离子羧基的存在对于长链脂肪烃与哺乳动物细胞的结合并非必不可少。当用标记的ME继续孵育1小时时,在FFA、磷脂、中性脂质酯和二氧化碳中回收的放射性量不断增加。在短暂的初始孵育后与细胞相关的ME放射性,当细胞随后在含有白蛋白的培养基中孵育时,以ME和FFA的形式释放。如果第二个孵育培养基不含白蛋白,最初与细胞相关的大部分ME放射性会被整合到磷脂、中性脂质酯和二氧化碳中。这些结果表明,摄取的大部分ME被水解为FFA,并且源自ME的脂肪酸可用于进一步代谢。