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通过哇巴因逐步筛选法对HeLa细胞中钠钾激活的三磷酸腺苷酶进行扩增。

Amplification of sodium- and potassium-activated adenosinetriphosphatase in HeLa cells by ouabain step selection.

作者信息

Ash J F, Fineman R M, Kalka T, Morgan M, Wire B

出版信息

J Cell Biol. 1984 Sep;99(3):971-83. doi: 10.1083/jcb.99.3.971.

Abstract

A multistep selection for ouabain resistance was used to isolate a clone of HeLa S3 cells that overproduces the plasma membrane sodium, potassium activated adenosinetriphosphatase (Na+,K+-ATPase). Measurements of specific [3H]ouabain-binding to the resistant clone, C+, and parental HeLa cells indicated that C+ cells contain 8-10 X 10(6) ouabain binding sites per cell compared with 8 X 10(5) per HeLa cell. Plasma membranes isolated from C+ cells by a vesiculation procedure and analyzed for ouabain-dependent incorporation of [32P]phosphate into a 100,000-mol-wt peptide demonstrated a ten- to twelvefold increase in Na+,K+-ATPase catalytic subunit. The affinity of the enzyme for ouabain on the C+ cells was reduced and the time for half maximal ouabain binding was increased compared with the values for the parental cells. The population doubling time for cultures of C+ cells grown in dishes was increased and C+ cells were unable to grow in suspension. Growth of C+ cells in ouabain-free medium resulted in revertant cells, C-, with biochemical and growth properties identical with HeLa. Karyotype analysis revealed that the ouabain-resistant phenotype of the C+ cells was associated with the presence of minute chromosomes which are absent in HeLa and C- cells. This suggests that a gene amplification event is responsible for the Na+,K+-ATPase increase in C+ cells.

摘要

采用多步选择抗哇巴因法来分离一株过量产生质膜钠钾激活腺苷三磷酸酶(Na⁺,K⁺-ATP酶)的HeLa S3细胞克隆。对耐药克隆C⁺和亲本HeLa细胞进行特异性[³H]哇巴因结合测量表明,C⁺细胞每细胞含有8 - 10×10⁶个哇巴因结合位点,而HeLa细胞每细胞有8×10⁵个。通过囊泡化程序从C⁺细胞分离质膜,并分析[³²P]磷酸盐依赖哇巴因掺入100,000分子量肽段情况,结果显示Na⁺,K⁺-ATP酶催化亚基增加了10到12倍。与亲代细胞相比,C⁺细胞上该酶对哇巴因的亲和力降低,且达到最大结合量一半所需时间增加。在培养皿中生长的C⁺细胞群体倍增时间增加,且C⁺细胞不能在悬浮状态下生长。在无哇巴因培养基中培养C⁺细胞可产生回复细胞C⁻,其生化和生长特性与HeLa细胞相同。核型分析表明,C⁺细胞的抗哇巴因表型与HeLa和C⁻细胞中不存在的微小染色体有关。这表明基因扩增事件是导致C⁺细胞中Na⁺,K⁺-ATP酶增加的原因。

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