Sun Shiyong, Liu Mingxue, Dong Faqin, Fan Shenglan, Yao Yanchen
Key Laboratory of Solid Waste Treatment and Resource Recycle & Fundamental Science on Nuclear Waste and Environmental Security Laboratory, Southwest University of Science and Technology, Mianyang 621010, Sichuan, China.
Int J Mol Sci. 2013 Dec 6;14(12):23842-57. doi: 10.3390/ijms141223842.
The liquid crystalline state is a universal phenomenon involving the formation of an ordered structure via a self-assembly process that has attracted attention from numerous scientists. In this study, the dinoflagellate histone-like protein HCcp3 is shown to induce super-coiled pUC18 plasmid DNA to enter a liquid crystalline state in vitro, and the role of HCcp3 in gene condensation in vivo is also presented. The plasmid DNA (pDNA)-HCcp3 complex formed birefringent spherical particles with a semi-crystalline selected area electronic diffraction (SAED) pattern. Circular dichroism (CD) titrations of pDNA and HCcp3 were performed. Without HCcp3, pUC18 showed the characteristic B conformation. As the HCcp3 concentration increased, the 273 nm band sharply shifted to 282 nm. When the HCcp3 concentration became high, the base pair (bp)/dimer ratio fell below 42/1, and the CD spectra of the pDNA-HCcp3 complexes became similar to that of dehydrated A-form DNA. Microscopy results showed that HCcp3 compacted the super-coiled gene into a condensed state and that inclusion bodies were formed. Our results indicated that HCcp3 has significant roles in gene condensation both in vitro and in histone-less eukaryotes in vivo. The present study indicates that HCcp3 has great potential for applications in non-viral gene delivery systems, where HCcp3 may compact genetic material to form liquid crystals.
液晶态是一种普遍现象,涉及通过自组装过程形成有序结构,这一现象已吸引了众多科学家的关注。在本研究中,显示出甲藻组蛋白样蛋白HCcp3能在体外诱导超螺旋pUC18质粒DNA进入液晶态,并且还展示了HCcp3在体内基因凝聚中的作用。质粒DNA(pDNA)-HCcp3复合物形成了具有半结晶选区电子衍射(SAED)图案的双折射球形颗粒。对pDNA和HCcp3进行了圆二色性(CD)滴定。没有HCcp3时,pUC18呈现出特征性的B构象。随着HCcp3浓度增加,273nm波段急剧移至282nm。当HCcp3浓度变高时,碱基对(bp)/二聚体比率降至42/1以下,并且pDNA-HCcp3复合物的CD光谱变得与脱水A-型DNA的光谱相似。显微镜结果表明,HCcp3将超螺旋基因压缩成凝聚态并形成了包涵体。我们的结果表明,HCcp3在体外和体内无组蛋白的真核生物中基因凝聚方面都具有重要作用。本研究表明,HCcp3在非病毒基因递送系统中具有巨大的应用潜力,在该系统中HCcp3可能压缩遗传物质以形成液晶。