首页> 外文期刊>Journal of the American Chemical Society >Instantaneous Inclusion of a Polynucleotide and Hydrophobic Guest Molecules into a Helical Core of Cationic β-1,3-Glucan Polysaccharide
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Instantaneous Inclusion of a Polynucleotide and Hydrophobic Guest Molecules into a Helical Core of Cationic β-1,3-Glucan Polysaccharide

机译:将多核苷酸和疏水性客体分子瞬时包含到阳离子β-1,3-葡聚糖多糖的螺旋核中

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We succeeded in the quantitative and selective introduction of an ammonium cationic group into the C6 position of Curdlan (CUR) by "Click Chemistry", and the obtained cationic Curdlan (CUR-N~+) showed good solubility in water. ORD studies suggested that CUR-N~+ adopts a single-stranded structure, different from a right-handed, triple-stranded helical structure of β-1,3-glucan polysaccharides in water. It has been revealed that the polymeric complexes of CUR-N~+ with polymeric guest molecules, such as polycytidylic acid (poly(C)), permethyldecasilane (PMDS), and single-walled carbon nanotubes (SWNTs), can be easily obtained by just mixing them in water with sonication. The characterization of the resultant CUR-N~+-poly(C) complexes by UV-vis, CD spectroscopic measurements, and AFM and TEM observations revealed that they have stoichiometric, nanosized fibrous structures. From these experimental results as well as our precedent studies (e.g., refs 6 and 23), we propose that the complexation would be driven by the cooperative action of (1) the hydrogen-bonding interaction between the OH group at the C2 position and hydrogen-bonding sites of the cytosine ring (ref 6d), (2) the electrostatic interaction between the ammonium cation and the phosphate anion (ref 23), as well as (3) the background hydrophobic interaction. In addition, the complexed polynucleotide chain showed a strong resistance against enzymatic hydrolysis. Likewise, the dispersion of PMDS and SWNTs in water by CUR-N~+ and the fibrous structures of the complexes were confirmed by spectroscopic measurements as well as microscopic observations. These binding properties of CUR-N~+, which can proceed spontaneously in water, clearly differ from those of schizophyllan (SPG), which inevitably require a denature-renature process corresponding to a conversion of a triple strand to single strands induced by DMSO or base for inclusion of polymeric guest molecules.
机译:我们通过“点击化学”成功地将铵阳离子基团定量和选择性地引入了Curdlan(CUR)的C6位置,所得阳离子Curdlan(CUR-N〜+)在水中的溶解性良好。 ORD研究表明,CUR-N〜+采用单链结构,与水中的β-1,3-葡聚糖多糖的右旋,三链螺旋结构不同。现已发现,通过以下方法可以很容易地获得CUR-N〜+与聚合物客体分子的聚合物络合物,例如聚胞苷酸(poly(C)),全甲基癸硅烷(PMDS)和单壁碳纳米管(SWNTs)。只需将它们与超声波混合在水中即可。通过紫外可见光谱,CD光谱测量以及AFM和TEM观察对所得CUR-N〜+ -poly(C)配合物进行表征,结果表明它们具有化学计量的纳米级纤维结构。从这些实验结果以及我们的先前研究(例如,参考文献6和23),我们提出络合将由以下共同作用驱动:(1)C2位置的OH基团与氢之间的氢键相互作用-胞嘧啶环的结合位点(参考文献6d),(2)铵阳离子和磷酸根阴离子之间的静电相互作用(参考文献23),以及(3)背景疏水相互作用。另外,复合的多核苷酸链显示出对酶促水解的强抗性。同样,通过光谱测量和显微镜观察证实了CUR-N〜+在水中PMDS和SWNTs的分散以及复合物的纤维结构。可以在水中自发进行的CUR-N〜+的这些结合特性与裂褶多糖(SPG)明显不同,后者不可避免地需要变性-变性过程,该过程对应于DMSO或DMSO诱导的三链向单链的转化。包含聚合物客体分子的基础。

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