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镉可恢复因锌缺乏而受到抑制的体外剪接活性。

Cadmium restores in vitro splicing activity inhibited by zinc-depletion.

作者信息

Lee Myeong Jin, Ayaki Hitoshi, Goji Junko, Kitamura Keiko, Nishio Hisahide

机构信息

Department of Public Health, Kobe University Graduate School of Medicine, Kobe 650-0017, Japan.

出版信息

Arch Toxicol. 2006 Oct;80(10):638-43. doi: 10.1007/s00204-006-0104-2. Epub 2006 Apr 26.

Abstract

Zinc (Zn)-depletion inhibits the second step of RNA splicing, namely exon-ligation. To investigate the effects of cadmium (Cd) and other metal ions on RNA splicing inhibited by Zn-depletion, we measured in vitro splicing activities in the presence of these metals. Zn-depletion in the splicing reaction mixture was achieved by addition of a Zn-chelator, 1,10-phenanthroline. Cd(II) at 1, 5 and 10 microM restored the splicing activity to 2, 24 and 72% of that in the control reaction mixture, while higher concentrations of Cd(II) decreased the splicing activity, and more than 50 microM Cd(II) showed a complete absence of spliced products. Hg(II) also restored the splicing activity, albeit to a lesser extent, since 5 and 10 microM Hg(II) restored the splicing activity to 3 and 4% of the control value. The other metal ions examined in this study, Co(II), Cu(II), Mg(II) and Mn(II), did not show any restoration of the splicing activity. We concluded that Cd(II) could restore the in vitro splicing activity inhibited by Zn-depletion, although higher concentrations of Cd(II) prevented progress of the RNA splicing reaction. These results suggest that Cd(II) has a bifunctional property regarding RNA splicing, and is stimulatory at low concentrations and inhibitory at high concentrations.

摘要

锌(Zn)缺乏会抑制RNA剪接的第二步,即外显子连接。为了研究镉(Cd)和其他金属离子对锌缺乏所抑制的RNA剪接的影响,我们测定了在这些金属存在下的体外剪接活性。通过添加锌螯合剂1,10 - 菲咯啉实现剪接反应混合物中的锌缺乏。1、5和10微摩尔的Cd(II)将剪接活性恢复至对照反应混合物中活性的2%、24%和72%,而更高浓度的Cd(II)则降低剪接活性,超过50微摩尔的Cd(II)时完全没有剪接产物。Hg(II)也能恢复剪接活性,尽管程度较小,因为5和10微摩尔的Hg(II)将剪接活性恢复至对照值的3%和4%。本研究中检测的其他金属离子,Co(II)、Cu(II)、Mg(II)和Mn(II),均未显示出剪接活性的任何恢复。我们得出结论,Cd(II)可以恢复锌缺乏所抑制的体外剪接活性,尽管更高浓度的Cd(II)会阻止RNA剪接反应的进行。这些结果表明,Cd(II)在RNA剪接方面具有双功能特性,低浓度时具有刺激作用,高浓度时具有抑制作用。

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