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酵母同源结构域蛋白MATalpha2与Mcm1形成复合物时表现出扩展的DNA结合特异性。

The yeast homeodomain protein MATalpha2 shows extended DNA binding specificity in complex with Mcm1.

作者信息

Zhong H, Vershon A K

机构信息

Waksman Institute, Rutgers University, Piscataway, New Jersey 08855-0759, USA.

出版信息

J Biol Chem. 1997 Mar 28;272(13):8402-9. doi: 10.1074/jbc.272.13.8402.

Abstract

The MATalpha2 (alpha2) repressor interacts with the Mcm1 protein to turn off a-cell type-specific genes in the yeast Saccharomyces cerevisiae. We compared five natural alpha2-Mcm1 sites with an alpha2-Mcm1 symmetric consensus site (AMSC) for their relative strength of repression and found that the AMSC functions slightly better than any of the natural sites. To further investigate the DNA binding specificity of alpha2 in complex with Mcm1, symmetric substitutions at each position in the alpha2 half-sites of AMSC were constructed and assayed for their effect on repression in vivo and DNA binding affinity in vitro. As expected, substitutions at positions in which there are base-specific contacts decrease the level of repression. Interestingly, substitutions at other positions, in which there are no apparent base-specific contacts made by the protein in the alpha2-DNA co-crystal structure, also significantly decrease repression. As an alternative method to examining the DNA binding specificity of alpha2, we performed in vitro alpha2 binding site selection experiments in the presence and absence of Mcm1. In the presence of Mcm1, the consensus sequences obtained were extended and more closely related to the natural alpha2 sites than the consensus sequence obtained in the absence of Mcm1. These results demonstrate that in the presence of Mcm1 the sequence specificity of alpha2 is extended to these positions.

摘要

MATα2(α2)阻遏蛋白与Mcm1蛋白相互作用,以关闭酿酒酵母中a细胞类型特异性基因。我们将五个天然α2-Mcm1位点与一个α2-Mcm1对称共有位点(AMSC)的阻遏相对强度进行了比较,发现AMSC的功能略优于任何一个天然位点。为了进一步研究与Mcm1复合的α2的DNA结合特异性,构建了AMSC的α2半位点中每个位置的对称取代,并检测其对体内阻遏和体外DNA结合亲和力的影响。正如预期的那样,在存在碱基特异性接触的位置进行取代会降低阻遏水平。有趣的是,在α2-DNA共晶体结构中蛋白质没有明显碱基特异性接触的其他位置进行取代,也会显著降低阻遏。作为研究α2的DNA结合特异性的另一种方法,我们在有和没有Mcm1的情况下进行了体外α2结合位点选择实验。在有Mcm1的情况下,获得的共有序列比在没有Mcm1的情况下获得的共有序列更长,并且与天然α2位点的关系更密切。这些结果表明,在有Mcm1的情况下,α2的序列特异性扩展到了这些位置。

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