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来自嗜热栖热菌的Sso7c4的精氨酸对和C末端参与DNA的结合与弯曲。

The Arginine Pairs and C-Termini of the Sso7c4 from Sulfolobus solfataricus Participate in Binding and Bending DNA.

作者信息

Lin Bo-Lin, Chen Chin-Yu, Huang Chun-Hsiang, Ko Tzu-Ping, Chiang Cheng-Hung, Lin Kuan-Fu, Chang Yuan-Chih, Lin Po-Yen, Tsai Hui-Hsu Gavin, Wang Andrew H-J

机构信息

Institute of Biological Chemistry, Academia Sinica, Taipei, Taiwan.

Institute of Bioinformatics and Structural Biology, National Tsing-Hua University, Hsinchu, Taiwan.

出版信息

PLoS One. 2017 Jan 9;12(1):e0169627. doi: 10.1371/journal.pone.0169627. eCollection 2017.

Abstract

The Sso7c4 from Sulfolobus solfataricus forms a dimer, which is believed to function as a chromosomal protein involved in genomic DNA compaction and gene regulation. Here, we present the crystal structure of wild-type Sso7c4 at a high resolution of 1.63 Å, showing that the two basic C-termini are disordered. Based on the fluorescence polarization (FP) binding assay, two arginine pairs, R11/R22' and R11'/R22, on the top surface participate in binding DNA. As shown in electron microscopy (EM) images, wild-type Sso7c4 compacts DNA through bridging and bending interactions, whereas the binding of C-terminally truncated proteins rigidifies and opens DNA molecules, and no compaction of the DNA occurs. Moreover, the FP, EM and fluorescence resonance energy transfer (FRET) data indicated that the two basic and flexible C-terminal arms of the Sso7c4 dimer play a crucial role in binding and bending DNA. Sso7c4 has been classified as a repressor-like protein because of its similarity to Escherichia coli Ecrep 6.8 and Ecrep 7.3 as well as Agrobacterium tumefaciens ACCR in amino acid sequence. Based on these data, we proposed a model of the Sso7c4-DNA complex using a curved DNA molecule in the catabolite activator protein-DNA complex. The DNA end-to-end distance measured with FRET upon wild-type Sso7c4 binding is almost equal to the distance measured in the model, which supports the fidelity of the proposed model. The FRET data also confirm the EM observation showing that the binding of wild-type Sso7c4 reduces the DNA length while the C-terminal truncation does not. A functional role for Sso7c4 in the organization of chromosomal DNA and/or the regulation of gene expression through bridging and bending interactions is suggested.

摘要

来自嗜热栖热菌的Sso7c4形成二聚体,据信其作为一种染色体蛋白发挥作用,参与基因组DNA压缩和基因调控。在此,我们展示了野生型Sso7c4的晶体结构,分辨率高达1.63 Å,结果表明两个碱性C末端是无序的。基于荧光偏振(FP)结合分析,顶表面的两对精氨酸R11/R22'和R11'/R22参与DNA结合。如电子显微镜(EM)图像所示,野生型Sso7c4通过桥接和弯曲相互作用压缩DNA,而C末端截短蛋白的结合使DNA分子变硬并打开,且不会发生DNA压缩。此外,FP、EM和荧光共振能量转移(FRET)数据表明,Sso7c4二聚体的两个碱性且灵活的C末端臂在DNA结合和弯曲中起关键作用。由于Sso7c4在氨基酸序列上与大肠杆菌Ecrep 6.8和Ecrep 7.3以及根癌农杆菌ACCR相似,因此被归类为类似阻遏物的蛋白。基于这些数据,我们使用分解代谢物激活蛋白 - DNA复合物中的弯曲DNA分子提出了Sso7c4 - DNA复合物的模型。野生型Sso7c4结合时用FRET测量的DNA端到端距离几乎等于模型中测量的距离,这支持了所提出模型的准确性。FRET数据也证实了EM观察结果,即野生型Sso7c4的结合会缩短DNA长度,而C末端截短则不会。这表明Sso7c4在染色体DNA组织和/或通过桥接和弯曲相互作用进行基因表达调控中具有功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e05c/5222340/f00c9aa44889/pone.0169627.g001.jpg

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