Allis Damian G, Fairchild Timothy J, Doyle Robert P
Department of Chemistry, Syracuse University, Syracuse, NY 13244, USA.
Mol Biosyst. 2010 Sep;6(9):1611-8. doi: 10.1039/c003476b. Epub 2010 Apr 8.
As part of ongoing research into the use of vitamin B(12) (B(12); cobalamin; Cbl)-based bioconjugate approaches for the oral delivery of peptides/proteins, a molecular dynamics (MD) study of the binding of a cyanocobalamin-insulin (CN-Cbl-insulin) conjugate to human transcobalamin(II) (TCII) was recently reported that provides a qualitative picture of how the human insulin protein in its open "T-state" geometry affects CN-Cbl binding to TCII. This initial analysis revealed that the B22-B30 segment of the insulin B-chain acts as a long tether that connects the larger combined insulin A/B region to CN-Cbl when this conjugation is performed at the CN-Cbl ribose 5'-hydroxy position. The experimental support for this model of the binding interaction is provided by the consequences of the successful delivery of the CN-Cbl-insulin conjugate in the production of significantly decreased blood glucose levels in diabetic STZ-rat models. In efforts to provide a more detailed description of the (CN-Cbl)-TCII complex for modeling Cbl-based bioconjugate designs, the (CN-Cbl)-TCII system and a CN-Cbl conjugate incorporating a flexible tether composed of only the B22-B30 segment of human insulin have been examined by MD simulations. The implications of these simulations are discussed in terms of successful conjugate positioning on Cbl, especially when such sites are not apparent from the diffraction studies alone, and the possibilities, as yet not reported, for dual-tethered Cbl bioconjugates for multi-component drug delivery applications.
作为正在进行的关于使用基于维生素B12(B12;钴胺素;Cbl)的生物共轭方法进行肽/蛋白质口服递送研究的一部分,最近有一项关于氰钴胺素-胰岛素(CN-Cbl-胰岛素)共轭物与人转钴胺素II(TCII)结合的分子动力学(MD)研究报告,该研究提供了一幅关于处于开放“T态”构象的人胰岛素蛋白如何影响CN-Cbl与TCII结合的定性图景。这一初步分析表明,当在CN-Cbl核糖5'-羟基位置进行共轭时,胰岛素B链的B22-B30片段充当一条长链,将较大的胰岛素A/B组合区域与CN-Cbl连接起来。在糖尿病STZ大鼠模型中成功递送CN-Cbl-胰岛素共轭物可显著降低血糖水平,这一结果为这种结合相互作用模型提供了实验支持。为了更详细地描述用于基于Cbl的生物共轭设计建模的(CN-Cbl)-TCII复合物,通过MD模拟研究了(CN-Cbl)-TCII系统以及一种包含仅由人胰岛素B22-B30片段组成的柔性链的CN-Cbl共轭物。这些模拟结果的意义从共轭物在Cbl上的成功定位方面进行了讨论,特别是当仅从衍射研究中这些位点不明显时,以及尚未报道的用于多组分药物递送应用的双链Cbl生物共轭物的可能性。