Chan Yuk-Hang, Wong Joseph T Y
Department of Biology, Hong Kong University of Science and Technology, Kowloon, Hong Kong SAR, People's Republic of China.
Nucleic Acids Res. 2007;35(8):2573-83. doi: 10.1093/nar/gkm165. Epub 2007 Apr 4.
The liquid crystalline chromosomes of dinoflagellates are the alternative to the nucleosome-based organization of chromosomes in the eukaryotes. These nucleosome-less chromosomes have to devise novel ways to maintain active parts of the genome. The dinoflagellate histone-like protein HCc3 has significant sequence identity with the bacterial DNA-binding protein HU. HCc3 also has a secondary structure resembling HU in silico. We have examined HCc3 in its recombinant form. Experiments on DNA-cellulose revealed its DNA-binding activity is on the C-terminal domain. The N-terminal domain is responsible for intermolecular oligomerization as demonstrated by cross-linking studies. However, HCc3 could not complement Escherichia coli HU-deficient mutants, suggesting functional differences. In ligation assays, HCc3-induced DNA concatenation but not ring closure as the DNA-bending HU does. The basic HCc3 was an efficient DNA condensing agent, but it did not behave like an ordinary polycationic compound. HCc3 also induced specific structures with DNA in a concentration-dependent manner, as demonstrated by atomic force microscopy (AFM). At moderate concentration of HCc3, DNA bridging and bundling were observed; at high concentrations, the complexes were even more condensed. These results are consistent with a biophysical role for HCc3 in maintaining extended DNA loops at the periphery of liquid crystalline chromosomes.
甲藻的液晶染色体是真核生物中基于核小体的染色体组织的替代形式。这些无核小体的染色体必须想出新的方法来维持基因组的活跃部分。甲藻类组蛋白样蛋白HCc3与细菌DNA结合蛋白HU具有显著的序列相似性。在计算机模拟中,HCc3也具有类似于HU的二级结构。我们已经研究了重组形式的HCc3。在DNA纤维素上进行的实验表明,其DNA结合活性位于C末端结构域。交联研究表明,N末端结构域负责分子间寡聚化。然而,HCc3不能互补大肠杆菌HU缺陷型突变体,这表明存在功能差异。在连接试验中,HCc3诱导DNA连接,但不像使DNA弯曲的HU那样诱导环化。碱性的HCc3是一种有效的DNA凝聚剂,但它的行为不像普通的聚阳离子化合物。如原子力显微镜(AFM)所示,HCc3也以浓度依赖的方式诱导DNA形成特定结构。在HCc3的中等浓度下,观察到DNA桥接和成束;在高浓度下,复合物凝聚得更厉害。这些结果与HCc3在维持液晶染色体外围延伸的DNA环中的生物物理作用一致。