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Rap30 DNA结合结构域与连接组蛋白H5之间的结构同源性:对起始前复合物组装的影响。

Structural homology between the Rap30 DNA-binding domain and linker histone H5: implications for preinitiation complex assembly.

作者信息

Groft C M, Uljon S N, Wang R, Werner M H

机构信息

Laboratories of Molecular Biophysics, The Rockefeller University, New York, NY 10021, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Aug 4;95(16):9117-22. doi: 10.1073/pnas.95.16.9117.

Abstract

The three-dimensional structure of the human Rap30 DNA-binding domain has been solved by multinuclear NMR spectroscopy. The structure of the globular domain is strikingly similar to that of linker histone H5 and its fold places Rap30 into the "winged" helix-turn-helix family of eukaryotic transcription factors. Although the domain interacts weakly with DNA, the binding surface was identified and shown to be consistent with the structure of the HNF-3/fork head-DNA complex. The architecture of the Rap30 DNA-binding domain has important implications for the function of Rap30 in the assembly of the preinitiation complex. In analogy to the function of linker histones in chromatin formation, the fold of the Rap30 DNA-binding domain suggests that its role in transcription initiation may be that of a condensation factor for preinitiation complex assembly. Functional similarity to linker histones may explain the dependence of Rap30 binding on the bent DNA environment induced by the TATA box-binding protein. Cryptic sequence identity and functional homology between the Rap30 DNA-binding domain and region 4 of Escherichia coli sigma70 may indicate that the sigma factors also possess a linker histone-like activity in the formation of a prokaryotic closed complex.

摘要

人类Rap30 DNA结合结构域的三维结构已通过多核核磁共振光谱法解析出来。球状结构域的结构与连接组蛋白H5的结构惊人地相似,其折叠方式将Rap30归入真核转录因子的“带翼”螺旋-转角-螺旋家族。尽管该结构域与DNA的相互作用较弱,但已确定了其结合表面,且该表面与肝细胞核因子3/叉头-DNA复合物的结构一致。Rap30 DNA结合结构域的结构对其在起始前复合物组装中的功能具有重要意义。与连接组蛋白在染色质形成中的功能类似,Rap30 DNA结合结构域的折叠表明其在转录起始中的作用可能是作为起始前复合物组装的凝聚因子。与连接组蛋白的功能相似性可能解释了Rap30结合对由TATA盒结合蛋白诱导的弯曲DNA环境的依赖性。Rap30 DNA结合结构域与大肠杆菌σ70的区域4之间的隐蔽序列同一性和功能同源性可能表明,σ因子在原核封闭复合物的形成中也具有类似连接组蛋白的活性。

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