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斑马鱼光裂合酶/隐花色素家族的分子分析:斑马鱼中存在两种类型的隐花色素。

Molecular analysis of zebrafish photolyase/cryptochrome family: two types of cryptochromes present in zebrafish.

作者信息

Kobayashi Y, Ishikawa T, Hirayama J, Daiyasu H, Kanai S, Toh H, Fukuda I, Tsujimura T, Terada N, Kamei Y, Yuba S, Iwai S, Todo T

机构信息

Radiation Biology Center, Kyoto University, Yoshidakonoe-cho, Sakyoku, Kyoto 606-8501 Japan.

出版信息

Genes Cells. 2000 Sep;5(9):725-38. doi: 10.1046/j.1365-2443.2000.00364.x.

Abstract

BACKGROUND

Cryptochromes (CRY), members of the DNA photolyase/cryptochrome protein family, regulate the circadian clock in animals and plants. Two types of animal CRYs are known, mammalian CRY and Drosophila CRY. Both CRYs participate in the regulation of circadian rhythm, but they have different light dependencies for their reactions and have different effects on the negative feedback loop which generates a circadian oscillation of gene expression. Mammalian CRYs act as a potent inhibitor of transcriptional activator whose reactions do not depend on light, but Drosophila CRY functions as a light-dependent suppressor of transcriptional inhibitor.

RESULTS

We cloned seven zebrafish genes that carry members of the DNA photolyase/cryptochrome protein family; one (6-4)photolyase and six cry genes. A sequence analysis and determination of their in vitro functions showed that these zebrafish cry genes constitute two groups. One has a high sequence similarity to mammalian cry genes and inhibits CLOCK:BMAL1 mediated transcription. The other, which has a higher sequence similarity to the Drosophila cry gene rather than the mammalian cry genes, does not carry transcription inhibitor activity. The expressions of these cry genes oscillate in a circadian manner, but their patterns differ.

CONCLUSIONS

These findings suggest that functionally diverse cry genes are present in zebrafish and each gene has different role in the molecular clock.

摘要

背景

隐花色素(CRY)是DNA光解酶/隐花色素蛋白家族的成员,可调节动植物的生物钟。已知有两种类型的动物CRY,即哺乳动物CRY和果蝇CRY。两种CRY都参与昼夜节律的调节,但它们的反应对光的依赖性不同,并且对产生基因表达昼夜振荡的负反馈回路有不同的影响。哺乳动物CRY作为转录激活因子的有效抑制剂,其反应不依赖于光,而果蝇CRY则作为转录抑制剂的光依赖性抑制剂发挥作用。

结果

我们克隆了七个携带DNA光解酶/隐花色素蛋白家族成员的斑马鱼基因;一个(6-4)光解酶基因和六个cry基因。序列分析及其体外功能测定表明,这些斑马鱼cry基因构成两组。一组与哺乳动物cry基因具有高度序列相似性,并抑制CLOCK:BMAL1介导的转录。另一组与果蝇cry基因的序列相似性高于与哺乳动物cry基因的相似性,不具有转录抑制活性。这些cry基因的表达以昼夜节律的方式振荡,但其模式不同。

结论

这些发现表明斑马鱼中存在功能多样的cry基因,并且每个基因在分子钟中具有不同的作用。

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