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动物细胞中存在大小感知机制的证据。

Evidence for a size-sensing mechanism in animal cells.

作者信息

Dolznig Helmut, Grebien Florian, Sauer Thomas, Beug Hartmut, Müllner Ernst W

机构信息

Institute of Molecular Pathology, The Vienna Biocenter, Institute of Medical Biochemistry, Division of Molecular Biology, Dr Bohr-Gasse 7-9, 1030 Vienna, Austria.

出版信息

Nat Cell Biol. 2004 Sep;6(9):899-905. doi: 10.1038/ncb1166. Epub 2004 Aug 22.

Abstract

Continuously proliferating cells exactly double their mass during each cell cycle. Here we have addressed the controversial question of if and how cell size is sensed and regulated. We used erythroblasts that proliferate under the control of a constitutively active oncogene (v-ErbB) or under the control of physiological cytokines (stem cell factor, erythropoietin and v-ErbB inhibitor). The oncogene-driven cells proliferated 1.7 times faster and showed a 1.5-fold increase in cell volume. The two phenotypes could be converted into each other 24 h after altering growth factor signalling. The large cells had a higher rate of protein synthesis, together with a shortened G1 phase. Additional experiments with chicken erythroblasts and mouse fibroblasts, synchronized by centrifugal elutriation, provided further evidence that vertebrate cells can respond to cell size alterations (induced either through different growth factor signalling or DNA synthesis inhibitors) by compensatory shortening of the subsequent G1 phase. Taken together, these data suggest that an active size threshold mechanism exists in G1, which induces adjustment of cell-cycle length in the next cycle, thus ensuring maintenance of a proper balance between growth and proliferation rates in vertebrates.

摘要

持续增殖的细胞在每个细胞周期中质量精确翻倍。在此,我们探讨了细胞大小是否以及如何被感知和调控这一颇具争议的问题。我们使用了在组成型激活癌基因(v-ErbB)控制下或在生理细胞因子(干细胞因子、促红细胞生成素和v-ErbB抑制剂)控制下增殖的成红细胞。癌基因驱动的细胞增殖速度快1.7倍,细胞体积增加1.5倍。改变生长因子信号24小时后,这两种表型可相互转换。大细胞的蛋白质合成速率更高,同时G1期缩短。通过离心淘析同步化的鸡成红细胞和小鼠成纤维细胞的额外实验进一步证明,脊椎动物细胞能够通过补偿性缩短后续G1期来响应细胞大小的改变(由不同的生长因子信号或DNA合成抑制剂诱导)。综上所述,这些数据表明G1期存在一种活跃的大小阈值机制,该机制会诱导下一个周期中细胞周期长度的调整,从而确保脊椎动物生长和增殖速率之间维持适当的平衡。

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