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成纤维细胞增殖的细胞外调节。正常和SV40病毒转化的人肺细胞增殖所需营养物质和血清因子的定量差异。

Extracellular regulation of fibroblast multiplication. Quantitative differences in nutrient and serum factor requirements for multiplication of normal and SV40 virus-transformed human lung cells.

作者信息

McKeehan W L, McKeehan K A, Calkins D

出版信息

J Biol Chem. 1981 Mar 25;256(6):2973-81.

PMID:6259146
Abstract

The principles of Henri-Michaelis-Menten kinetic analysis were applied to directly relate the concentration of serum growth factors and individual nutrients in the culture medium to the multiplication rate of a population of normal (N-HLF) and SV40 virus-transformed (SV-HLF) human lung fibroblasts. When all nutrient concentrations were optimal and in steady state, the concentration of serum factors that was required to support a half-maximal rate of proliferation of both N-HLF and SV-HLF was similar. When the serum factor concentration was optimal and constant, SV-HLF cells exhibited a reduced requirement (p less than 0.001) for 12 of 27 individual nutrients that were examined. Serum factors control the cellular requirement for Ca2+, K+, Mg2+, phosphate ions, and 2-oxocarboxylic acids for multiplication of N-HLF (McKeehan, W. L., and McKeehan, K. A. (1980) Proc. Natl, Acad, Sci, U. S. A. 77, 3417-3421). SV-HLF exhibited a constitutively reduced requirement for Ca2+, K+, and Mg2+ which partially removed the requirement for the 3 ions for multiplication of SV-HLF from the control of serum factors. The results suggest that SV40 virus transformation confers a growth advantage on human lung fibroblasts by alteration of their quantitative requirements for specific nutrients.

摘要

将亨利 - 米氏动力学分析原理应用于直接关联培养基中血清生长因子和单个营养素的浓度与正常(N - HLF)和SV40病毒转化(SV - HLF)的人肺成纤维细胞群体的增殖率。当所有营养素浓度处于最佳且稳定状态时,支持N - HLF和SV - HLF半最大增殖率所需的血清因子浓度相似。当血清因子浓度最佳且恒定时,SV - HLF细胞对所检测的27种单个营养素中的12种表现出需求降低(p小于0.001)。血清因子控制N - HLF增殖对Ca2 +、K +、Mg2 +、磷酸根离子和2 - 氧代羧酸的细胞需求(麦基汉,W. L.,和麦基汉,K. A.(1980年)《美国国家科学院院刊》77,3417 - 3421)。SV - HLF对Ca2 +、K +和Mg2 +的需求持续降低,这部分消除了血清因子对SV - HLF增殖所需这三种离子的控制。结果表明,SV40病毒转化通过改变人肺成纤维细胞对特定营养素的定量需求,赋予其生长优势。

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