Yi P N, Rhee T, Fenn J O, Jarrett J H, Wallace K M
J Biochem Biophys Methods. 1986 Mar;12(3):123-33. doi: 10.1016/0165-022x(86)90027-8.
In numerous cellular studies, cells labeled with radioisotopes have been separated from the labeling medium by an aqueous solution in order to determine the quantity of internalized labels; however, the aqueous wash tends to remove significant labeling from the cells. Therefore, in order to preserve all of the internalized labels, non-aqueous medium such as silicone fluids may be used. The termination of the labeling is achieved in the silicone method when, upon centrifugation, the cells separate from the medium and enter the silicone fluid to sediment to the tube bottom. This sedimentation of cells placed above a layer of silicone fluid exhibits a critical dependence on the centrifugal force, and gives rise to an uncertainty of only 2 s in determining the time of separation of cells from the medium using General Electric F-50 silicone fluid and a modified Beckman J2-21 centrifuge. It is therefore possible to determine the kinetics of incorporation of labeled amino acids into intracellular pools and proteins. In particular, since this silicone wash method determines the size of the total pool and the aqueous wash method determines the size of the acid-extractable pool, the simultaneous measurements of the size of both pools leads to the determination of the kinetics of labeling of the free amino acid pool. Among many possible applications and extensions of these methods, the studies of formation of intracellular pools and relations among different pools of transported molecules, such as water and amino acids, appear promising.
在众多细胞研究中,为了测定内化标记物的量,用放射性同位素标记的细胞已通过水溶液与标记培养基分离;然而,水洗往往会从细胞上去除大量标记物。因此,为了保留所有内化标记物,可使用非水介质,如硅油。在硅油法中,当离心时细胞与培养基分离并进入硅油中沉淀到管底时,标记就终止了。置于硅油层上方的细胞的这种沉淀对离心力有严格的依赖性,使用通用电气F - 50硅油和改良的贝克曼J2 - 21离心机测定细胞与培养基分离时间时,不确定性仅为2秒。因此,有可能确定标记氨基酸掺入细胞内池和蛋白质的动力学。特别是,由于这种硅油洗涤法测定的是总池的大小,而水洗法测定的是酸可提取池的大小,同时测量这两个池的大小就能确定游离氨基酸池的标记动力学。在这些方法的许多可能应用和扩展中,对细胞内池的形成以及运输分子(如水和氨基酸)的不同池之间关系的研究似乎很有前景。