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同源异型域-亮氨酸拉链结构域的DNA结合特异性

DNA-binding specificity of the homeodomain-leucine zipper domain.

作者信息

Sessa G, Morelli G, Ruberti I

机构信息

Dipartimento di Genetica e Biologia Molecolare, Rome, Italy.

出版信息

J Mol Biol. 1997 Dec 5;274(3):303-9. doi: 10.1006/jmbi.1997.1408.

Abstract

Homeodomain-leucine zipper (HD-Zip) proteins are putative transcription factors identified only in plants. The study of the DNA-binding properties of the ATHB-1 and -2 HD-Zip (HD-Zip-1 and -2) domains showed that they interact with DNA as homodimers and recognize two distinct 9 bp pseudopalindromic sequences, CAAT(A/T)ATTG (BS-1) and CAAT(G/C)ATTG (BS-2), respectively, as determined by selecting high-affinity binding sites from random-sequence DNA. Here, we report a mutational analysis of the HD-Zip-2 domain. We determined that conserved amino acid residues of helix 3, Val47 and Asn51, and Arg55 are essential for the DNA-binding activity of the HD-Zip-2 domain. We demonstrated that the preferential recognition of a G/C base-pair at the central position by the HD-Zip-2 domain is abolished either by the replacement of Arg55 with lysine or by the substitution of Glu46 and Thr56 with the corresponding residues of the HD-Zip-1 domain (alanine and tryptophan, respectively). In contrast, substitution of Arg55 with lysine in the HD-Zip-1 domain significantly reduced DNA-binding activity without changing the specificity of recognition. Finally, we determined that differences in residues outside helix 3 further contribute to the DNA-binding specificity of the HD-Zip domain. Taken together, the data strongly suggest that the preferential recognition of BS-2 and -1 by the HD-Zip-2 and -1 domains, respectively, may be attributable to a distinct orientation of the side-chain of Arg55 in these two domains.

摘要

同源异型域-亮氨酸拉链(HD-Zip)蛋白是仅在植物中发现的假定转录因子。对ATHB-1和-2 HD-Zip(HD-Zip-1和-2)结构域的DNA结合特性研究表明,它们以同源二聚体形式与DNA相互作用,并分别识别两个不同的9 bp假回文序列,即CAAT(A/T)ATTG(BS-1)和CAAT(G/C)ATTG(BS-2),这是通过从随机序列DNA中选择高亲和力结合位点确定的。在此,我们报告了对HD-Zip-2结构域的突变分析。我们确定,螺旋3的保守氨基酸残基Val47、Asn51和Arg55对HD-Zip-2结构域的DNA结合活性至关重要。我们证明,HD-Zip-2结构域对中心位置G/C碱基对的优先识别,可通过用赖氨酸取代Arg55或用HD-Zip-1结构域的相应残基(分别为丙氨酸和色氨酸)取代Glu46和Thr56来消除。相反,在HD-Zip-1结构域中用赖氨酸取代Arg55会显著降低DNA结合活性,而不会改变识别特异性。最后,我们确定螺旋3外残基的差异进一步影响了HD-Zip结构域的DNA结合特异性。综上所述,数据强烈表明,HD-Zip-2和-1结构域分别对BS-2和-1的优先识别,可能归因于这两个结构域中Arg55侧链的不同取向。

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