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决定MADS盒蛋白p67SRF和RSRFC4不同DNA结合特异性的元件的鉴定

The identification of elements determining the different DNA binding specificities of the MADS box proteins p67SRF and RSRFC4.

作者信息

Sharrocks A D, von Hesler F, Shaw P E

机构信息

Max-Planck-Institut für Immunobiologie, Spemann Laboratories, Freiburg, Germany.

出版信息

Nucleic Acids Res. 1993 Jan 25;21(2):215-21. doi: 10.1093/nar/21.2.215.

Abstract

The human transcription factors p67SRF and RSRFC4 recognise similar but distinct binding sites which are found in the promoters of both muscle-specific and 'immediate early' genes. Both proteins share a common basic DNA-binding domain, which is defined by the MADS box homology region. The DNA-binding specificity of a truncated form of p67SRF (coreSRF) can be converted to that of RSRFC4. Removal of residues immediately N-terminal to the MADS box relaxes the specificity of coreSRF for its cognate sequence (CC(A/T)6GG) as it improves binding to the RSRFC4 site (CTA(A/T)4TAG). Moreover, the introduction of a single, additional mutation, K154E, into the N-terminal truncated derivative completes the change in specificity to the RSRFC4 binding site. It also influences the salt dependence of DNA binding and ternary complex formation with p62TCF. However, residues at this position do not appear to be involved in direct basepair recognition. These results indicate that although the DNA binding specificity of p67SRF can be converted to that of RSRFC4, the two proteins may bind DNA in different ways. Furthermore, they suggest that binding site specificity can be determined by an indirect mechanism involving residues which are not directly involved in base recognition.

摘要

人类转录因子p67SRF和RSRFC4识别相似但不同的结合位点,这些位点存在于肌肉特异性基因和“即刻早期”基因的启动子中。这两种蛋白质共享一个由MADS盒同源区域定义的共同碱性DNA结合结构域。截短形式的p67SRF(coreSRF)的DNA结合特异性可以转变为RSRFC4的特异性。去除MADS盒紧邻N端的残基会放宽coreSRF对其同源序列(CC(A/T)6GG)的特异性,因为这会增强其与RSRFC4位点(CTA(A/T)4TAG)的结合。此外,在N端截短衍生物中引入单个额外突变K154E,可使特异性完全转变为RSRFC4结合位点。它还会影响DNA结合的盐依赖性以及与p62TCF形成三元复合物。然而,该位置的残基似乎不参与直接的碱基对识别。这些结果表明,尽管p67SRF的DNA结合特异性可以转变为RSRFC4的特异性,但这两种蛋白质可能以不同方式结合DNA。此外,它们表明结合位点特异性可能由一种间接机制决定,该机制涉及不直接参与碱基识别的残基。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcd0/309095/a308794960d1/nar00051-0050-a.jpg

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