Kauffman M G, Noga S J, Kelly T J, Donnenberg A D
Department of Molecular Biology and Genetics, Johns Hopkins University Medical School, Baltimore, Maryland 21230.
Anal Biochem. 1990 Nov 15;191(1):41-6. doi: 10.1016/0003-2697(90)90384-l.
Counterflow centrifugal elutriation (CCE) has been used to fractionate cell populations on the basis of sedimentation properties, with minimal perturbation of metabolic function. Therefore, it is an ideal method for the isolation of cell cycle phase specific populations. We present modifications of the standard Beckman centrifugal elutriation system which permit standardization of the elutriation procedure and eliminate inter-run variability. We provide elutriation parameters for the cell cycle fractionation of a variety of cultured cell lines and suggest ways to improve the quality of the cell separations. In addition, we describe protocols for the fractionation of up to 3.50 X 10(8) cells in the small (JE-6B) Beckman elutriation system. This represents a four- to eight-fold increase in cell numbers over current cell fractionation procedures. Cell cycle populations containing greater than 95% G1, greater than 80% S, and greater than 70% G2/M were consistently obtained using these protocols. Finally, we analyzed phase-enriched fractions from several cultured cell lines for the cell cycle regulation of the enzyme thymidine kinase. The data confirm previous findings that CCE is an excellent means of obtaining physiologically unperturbed cell cycle phase specific fractions.
逆流离心淘析(CCE)已被用于根据沉降特性对细胞群体进行分级分离,对代谢功能的干扰最小。因此,它是分离细胞周期阶段特异性群体的理想方法。我们对标准贝克曼离心淘析系统进行了改进,使淘析程序标准化并消除了运行间的变异性。我们提供了多种培养细胞系细胞周期分级分离的淘析参数,并提出了提高细胞分离质量的方法。此外,我们描述了在小型(JE-6B)贝克曼淘析系统中对多达3.50×10⁸个细胞进行分级分离的方案。这比目前的细胞分级分离程序增加了四到八倍的细胞数量。使用这些方案始终能获得G1期大于95%、S期大于80%和G2/M期大于70%的细胞周期群体。最后,我们分析了来自几种培养细胞系的阶段富集级分中胸苷激酶的细胞周期调控。数据证实了先前的发现,即CCE是获得生理上未受干扰的细胞周期阶段特异性级分的极佳方法。