Molecular cloning of zebrafish (Danio rerio) MutS homolog 6(MSH6) and noncoordinate expression of MSH6 gene activity and G-T mismatch binding proteins in zebrafish larvae.

Fu-Lung Yeh, Hwei-Ling Yan, Shi-Ya Wang, Ting-Yi Jung, Todd Hsu
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引用次数: 12

Abstract

Eukaryotic MutS homolog 6(MSH6) is a DNA mismatch recognition protein associated with mismatch repair of simple base-base mispairs and small insertion-deletion loops. As replication or recombination errors generated during embryonic development of living organisms should be efficiently corrected to maintain the integrity of genetic materials, we attempted to study MSH6 gene expression in developing zebrafish (Danio rerio) and the influence of MSH6 expression on the production of mismatch binding factors. A full-length cDNA encoding zebrafish MSH6 (zMSH6) was first obtained by rapid amplification of cDNA ends (RACE). The deduced amino acid sequence of zMSH6 shares 57% and 56% identity with human and mouse MSH6, respectively. The 190-kDa recombinant zMSH6 containing 1,369 amino acids bound preferentially to a heteroduplex than to a homoduplex DNA. Northern blot and semiquantitative RT-PCR analysis detected apparent levels of zMSH6 mRNA expression in 12 and 36-hr-old zebrafish embryos, while this expression in 84-hr-old larvae was dramatically reduced to 23% of that in 12-hr-old embryos when beta-actin mRNA was constitutively synthesized. Incubation of G-T and G-G heteroduplex probes with 12 to 60-hr-old zebrafish extracts produced predominantly high-shifting binding complexes with very similar band intensity. Although low in zMSH6 mRNA production, the extracts of 84-hr-old larvae interacted significantly stronger than the embryonic extracts with both G-T and G-G mispairs, producing high and low-shifting complexes. Heteroduplex-recognition proteins in 108-hr-old larvae gave a similar pattern of mismatch binding. The intensities of G-T complexes produced by 84 and 108-hr-old zebrafish extracts were 2.5 to 3-fold higher than those of G-G complexes. Our data indicate that the production of efficient MSH6-independent binding factors, particularly G-T-specific recognition proteins, is upregulated in zebrafish at the larval stage when MSH6 gene activity is downregulated.

斑马鱼(Danio rerio) MutS同源物6(MSH6)的分子克隆及MSH6基因活性和G-T错配结合蛋白在斑马鱼幼体中的非坐标表达
真核MutS同源物6(MSH6)是一种DNA错配识别蛋白,与简单碱基错配修复和小插入-删除环相关。由于生物体在胚胎发育过程中产生的复制或重组错误需要被有效纠正以保持遗传物质的完整性,我们试图研究MSH6基因在发育中的斑马鱼(Danio rerio)中的表达以及MSH6表达对错配结合因子产生的影响。利用cDNA末端快速扩增技术(RACE)首次获得斑马鱼MSH6全长cDNA (zMSH6)。zMSH6的氨基酸序列与人类和小鼠MSH6的同源性分别为57%和56%。这个190 kda的重组zMSH6含有1,369个氨基酸,优先与异双工DNA结合,而不是与同双工DNA结合。Northern blot和半定量RT-PCR检测到zMSH6 mRNA在12和36 h龄斑马鱼胚胎中的明显表达水平,而在84 h龄的斑马鱼胚胎中合成β -actin mRNA后,zMSH6 mRNA的表达量显著降低至12 h龄胚胎的23%。G-T和G-G异双工探针与12至60小时龄的斑马鱼提取物孵育产生了条带强度非常相似的主要高移位结合复合物。虽然zMSH6 mRNA产量较低,但84小时龄幼虫提取物与G-T和G-G错配的相互作用明显强于胚胎提取物,产生高移和低移复合物。异源双工识别蛋白在108小时龄的幼虫中也表现出类似的错配结合模式。84和108小时的斑马鱼提取物产生的G-T复合物强度比G-G复合物高2.5 ~ 3倍。我们的数据表明,当MSH6基因活性下调时,斑马鱼幼虫期高效的MSH6独立结合因子,特别是g - t特异性识别蛋白的产生上调。
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