Lechner J F, Kaighn M E
J Cell Physiol. 1979 Sep;100(3):519-29. doi: 10.1002/jcp.1041000314.
The interaction of mitogenic factors on a single cell type and the comparative activity of a given factor in diverse cell types have been studied by applying the principles of Michaelis-Menten kinetics to clonal growth data. Such comparisons are facilitated by derivation of two parameters; Km mitogen, the mitogen concentration that gives half-maximal clonal growth and a theoretical maximal growth rate, RMAX T. Both parameters are analogous to the Km and VMAX as applied to enzymatic reactions. Use of these parameters permits meaningful comparisons between cells with different growth rates. Using kinetic analysis of dose-response data, we found that normal human epithelial cells require 200 times more fetal bovine serum protein (FBSP) than a malignant line to multiply at their respective half-maximal rates. Further, the Km FBSP of normal cells was reduced to that of the malignant line by the inclusion of growth factors (EGF or FGF, and hydrocortisone) in the medium. On the other hand, even though greater levels of serum were required when growth factors and hydrocortisone were not present, their inclusion did not alter RMAX T. Interactions between mitogenic factors were shown to be unidirectional. Although EGF reduced the Km FBSP, FBSP did not change the Km EGF. The same type of analysis revealed that hydrocortisone, which potentiated the mitogenic activity of EGF did not change the Km EGF. Kinetic analysis of cell growth should prove useful in studies on the relation between growth and tumor promotion as well as in the evaluation of growth-inhibiting chemotherapeutic agents.
通过将米氏动力学原理应用于克隆生长数据,研究了促有丝分裂因子对单一细胞类型的相互作用以及给定因子在不同细胞类型中的相对活性。通过推导两个参数有助于进行此类比较;促有丝分裂原的Km值,即产生半数最大克隆生长的促有丝分裂原浓度,以及理论最大生长速率RMAX T。这两个参数类似于应用于酶促反应的Km值和VMAX。使用这些参数可以对不同生长速率的细胞进行有意义的比较。通过对剂量反应数据的动力学分析,我们发现正常人上皮细胞在各自的半数最大生长速率下增殖所需的胎牛血清蛋白(FBSP)比恶性细胞系多200倍。此外,通过在培养基中加入生长因子(表皮生长因子或成纤维细胞生长因子以及氢化可的松),正常细胞的FBSP的Km值降低到了恶性细胞系的水平。另一方面,即使在没有生长因子和氢化可的松时需要更高水平的血清,但加入它们并不会改变RMAX T。促有丝分裂因子之间的相互作用显示为单向的。虽然表皮生长因子降低了FBSP的Km值,但FBSP并没有改变表皮生长因子的Km值。同样类型的分析表明,增强表皮生长因子促有丝分裂活性的氢化可的松并没有改变表皮生长因子的Km值。细胞生长的动力学分析在生长与肿瘤促进关系的研究以及生长抑制性化疗药物的评估中应会证明是有用的。