癌变·畸变·突变 ›› 2005, Vol. 17 ›› Issue (3): 136-139.doi: 10.3969/j.issn.1004-616x.2005.03.003

• 论著 • 上一篇    下一篇

甲基汞对不同发育阶段大鼠大脑神经元细胞核染色质转录活性的影响

张红宇1 /孟祥玉2   

  1. 深圳市疾病预防控制中心,广东 深圳 518020
  • 收稿日期:1900-01-01 修回日期:1900-01-01 出版日期:2005-05-30 发布日期:2005-05-30

Effects of Methyl Mercury Chloride on Transcription Activities of rain Chromatin from Rats in Various Stages of Development

ZHANG Hong-yu,MENG Xiang-yu   

  1. Shenzhen Center for Disease Prevention and Control,Shenzhen 518020 ,Guangdong,China
  • Received:1900-01-01 Revised:1900-01-01 Online:2005-05-30 Published:2005-05-30

摘要: 背景与目的: 通过体内与体外实验相结合的方法研究氯化甲基汞(Methy1 mercury chloride,MMC)对不同发育阶段的大鼠大脑部位神经细胞染色质转录活性的影响,探讨甲基汞对胎、幼脑发育损伤的分子机制。 材料与方法: 体内实验中,Wistar系妊娠大鼠于妊娠7~9 d连续灌胃,每日给予MMC 4 mg/kg。取生后3、7、14、21和30 d仔鼠大脑制备脑神经元细胞核。体外试验中,采用经DNase I、EcoR I两种核酸内切酶消解后的核缺口翻译,液闪计数3H-dAMP的掺入量以观察MMC对大鼠大脑神经元细胞核染色质转录活性的影响;液闪计数3H-UMP的掺入量,观察MMC对神经元细胞核内三类RNA聚合酶的转录活性的影响。 结果: 生后3 d和7 d的实验组大鼠大脑神经元细胞核3H-dAMP的掺入量与对照组差异有显著性。神经元细胞核内三类RNA聚合酶的转录活性均表现为不同程度的抑制作用。 结论: MMC对大鼠大脑神经元细胞核染色质转录活性及三类RNA聚合酶的转录活性均表现为抑制作用,从分子水平阐述了MMC对神经系统的蛋白质抑制学说。

关键词: 氯化甲基汞, 脑神经元, 染色质, RNA聚合酶

Abstract: BACKGROUND & AIM: To study the mechanism of injury on the fetus and infants in the brain development caused by methly mercury chloride(MMC) and its effects on the transcription activities of three RNA polymerase in the brain nuclei by MMC with experiments in vitro and in vivo. MATERIAL AND METHODS: In vivo,Wistar pregnant rats were administered with 4 mg/kg MMC of body weight by gastric perfused from the 7th to the 9th gestational days. On the 3rd , 7th,14th,21st and 30th days after birth,the rats were killed and the nuclei were harvested from their brain; in vitro, used Dnase I、EcoR I digestion for nick translation to observed the effect of MMC by scintillation counting, of 3H-dAMP. The effect to the activity of three RNA polymerase was also observed by scintillation counting, of 3H-UMP. RESULTS: The 3rd and 7th days after birth 3H-dAMP incorporation of brain nuclei were significantly lower than that of unexposed rats (P<0.01). The activity of three sorts of RNA polymerase was inhibited too. CONCLUSION:It is concluded that MMC could inhibit the translation activity of brain nuclei and the three RNA polymerases, which could explain the mechanism of inhibition to the protein synthesis.

Key words: methyl mercury chloride, brain nuclei, chromatin, RNA polymerase