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Isolation and characterization of the binding sequences for the product of the Arabidopsis floral homeotic gene AGAMOUS

机译:拟南芥花卉同源基因AGAMOUS产物结合序列的分离与鉴定

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The Arabidopsis floral homeotic geneAGAMOUS (AG) is required for normal flower development. The deduced AG protein contains a region which shares substantial sequence similarity with the DNA-binding domains of known transcription factors, SRF (human) and MCM1 (yeast). Therefore, it is likely that AG is also a DNA-binding protein regulating transcription of floral genes. We describe here several experiments to characterize AG-DNA binding in vitro. We show that AG indeed binds a DNA sequence matching the consensus of SRF targets. Further, we have selected the AGbinding sequences from a pool of random oligonucleotides, and deduced an AG-binding consensus sequence of TT(A/T)CC(A/T)(A/t)2(T/A)NNGG(-G)(A/t)2. We have demonstrated that AG binds to the consensus region of three of the oligonucleotides by footprinting analysis. Finally, we have examined AG′s relative binding affinity for different sequences, as compared to SRF, by gel mobility shift analysis. Our results indicate that AG is a sequence-specific DNA-binding protein, and that the AG-binding consensus sequence is similar to those of MCM1 and SRF.
机译:正常的花发育需要拟南芥花的同源同源基因AGAMOUS(AG)。推导的AG蛋白包含一个与已知转录因子SRF(人)和MCM1(酵母)的DNA结合结构域具有基本序列相似性的区域。因此,AG很可能也是调节花基因转录的DNA结合蛋白。我们在这里描述了几个实验来表征AG-DNA体外结合。我们显示AG确实结合了与SRF目标的共识相匹配的DNA序列。此外,我们从随机寡核苷酸库中选择了AG结合序列,并推导了TT(A / T)CC(A / T)(A / t) 2 ( T / A)NNGG(-G)(A / t) 2 。我们已经证明,通过足迹分析,AG结合到三个寡核苷酸的共有区域。最后,我们通过凝胶迁移率变动分析检查了与SRF相比,AG对不同序列的相对结合亲和力。我们的结果表明,AG是一种序列特异性DNA结合蛋白,并且AG结合共有序列与MCM1和SRF相似。

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