Lebreton J P, Daveau M, Hiron M, Fontaine M, Biou D, Gilbert D, Guguen-Guillouzo C
Biochem J. 1986 Apr 15;235(2):421-7. doi: 10.1042/bj2350421.
We used a system of co-culture of adult rat hepatocytes with another epithelial cell type from rat liver to study the synthesis of two acute-phase reactants, alpha-1 acid glycoprotein (alpha 1AGP) and the third component of complement (C3), and we have obtained long-term secretion of these two proteins. After a period of adaptation corresponding to the first 2-4 days of the co-culture, hepatocytes secreted C3 and alpha 1AGP for at least 2 weeks at a mean level higher than that observed in the first days of a pure culture of hepatocytes. When pulse-chase analysis was performed on day 6 of co-culture, kinetics of synthesis of alpha 1AGP and C3 were the same as those observed on day 1 of a conventional culture of pure hepatocytes. Furthermore, intracellular and extracellular alpha 1AGP had Mr values respectively of 39,000 and of 42,000-52,000, identical with those observed in pure cultures of hepatocytes. Similarly, the molecular size and subunit structures of C3 were the same in co-culture and in cultures, indicating an identical processing of this protein. C3 produced in co-culture was also haemolytically active. Therefore, the system of adult hepatocytes co-cultured with this liver epithelial cell provides a physiological system in vitro which permits long-term synthesis of the two acute-phase reactants C3 and alpha 1AGP. This model opens the possibility to study the modulation of the synthesis of these two proteins during a long period by inflammatory agents or by hormones.
我们采用成年大鼠肝细胞与大鼠肝脏的另一种上皮细胞类型进行共培养的系统,来研究两种急性期反应物——α-1酸性糖蛋白(α1AGP)和补体第三成分(C3)的合成,并且我们已经获得了这两种蛋白质的长期分泌。在对应共培养最初2 - 4天的适应期后,肝细胞分泌C3和α1AGP至少2周,其平均水平高于在肝细胞纯培养最初几天所观察到的水平。当在共培养第6天进行脉冲追踪分析时,α1AGP和C3的合成动力学与在纯肝细胞常规培养第1天所观察到的相同。此外,细胞内和细胞外的α1AGP的相对分子质量分别为39,000和42,000 - 52,000,与在肝细胞纯培养中所观察到的相同。同样,共培养和纯培养中C3的分子大小和亚基结构相同,表明该蛋白的加工过程相同。共培养中产生的C3也具有溶血活性。因此,成年肝细胞与这种肝上皮细胞共培养的系统提供了一种体外生理系统,它能够长期合成两种急性期反应物C3和α1AGP。这个模型为长期研究炎症因子或激素对这两种蛋白质合成的调节开辟了可能性。