Zhang Zhenfeng, Gong Yong, Chen Yuanyuan, Li Hongbin, Huang Li
State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, No. 1 West Beichen Road, Chaoyang District, Beijing, 100101, China.
Extremophiles. 2015 Mar;19(2):395-406. doi: 10.1007/s00792-014-0725-y. Epub 2015 Jan 3.
Sulfolobus synthesizes large amounts of small chromatin proteins Cren7 and Sul7d. The two proteins share overall structural similarity, but differ distinctly in the DNA-binding region between β3- and β4-strands. While Sul7d possesses a hinge of two amino acid residues, Cren7 contains a flexible seven-residue loop (loop β3-β4) in the region. Here, we report the role of loop β3-β4 in the interaction of Cren7 with duplex DNA. We show that all residues with a large side chain on the loop, i.e., Pro30, Lys31, Arg33 and Lys34, contributed significantly to the binding of Cren7 to DNA. The three basic amino acids affected the ability of Cren7 to constrain negative DNA supercoils in a residue number-dependent manner. The crystal structure of a complex between a mutant Cren7 protein (GR) with loop β3-β4 replaced by two residues (Gly and Arg) to mimic the hinge at the corresponding position in Sul7d and an 8-bp dsDNA has been determined. Structural comparison between the GR-DNA and Cren7-DNA complexes shows that GR resembles Sul7d more than Cren7 in DNA-binding size and in the effect on the width of the major groove of DNA and the pattern of DNA bending. However, GR induces smaller DNA curvature than Sul7d. Our results suggest that Cren7 and Sul7d package chromosomal DNA in a slightly different fashion, presumably permitting different chromosomal accessibility by proteins functioning in DNA transactions.
硫化叶菌合成大量的小染色质蛋白Cren7和Sul7d。这两种蛋白质在整体结构上相似,但在β3链和β4链之间的DNA结合区域明显不同。虽然Sul7d有一个由两个氨基酸残基组成的铰链,但Cren7在该区域含有一个灵活的七残基环(β3-β4环)。在此,我们报道β3-β4环在Cren7与双链DNA相互作用中的作用。我们表明,环上所有具有大侧链的残基,即Pro30、Lys31、Arg33和Lys34,对Cren7与DNA的结合有显著贡献。这三个碱性氨基酸以残基数量依赖的方式影响Cren7约束负DNA超螺旋的能力。已经确定了一种突变型Cren7蛋白(GR)与8碱基对双链DNA形成的复合物的晶体结构,其中GR的β3-β4环被两个残基(甘氨酸和精氨酸)取代,以模拟Sul7d中相应位置的铰链。GR-DNA和Cren7-DNA复合物之间的结构比较表明,在DNA结合大小、对DNA大沟宽度的影响以及DNA弯曲模式方面,GR比Cren7更类似于Sul7d。然而,GR诱导的DNA曲率比Sul7d小。我们的结果表明,Cren7和Sul7d以略有不同的方式包装染色体DNA,大概是允许参与DNA交易的蛋白质对染色体有不同的可及性。