基于生物信息学的视网膜母细胞瘤DNA序列靶向单链抗体分子设计
Bioinformatics-led design of single-chain antibody molecules targeting DNA sequences for retinoblastoma.
作者信息
Shang Guo-Gang, Zhang Jian-Hua, Lü Yong-Gang, Yun Jun
机构信息
Department of Radiotherapy, Zhengzhou People's Hospital, Zhengzhou 450052, Henan Province, China.
出版信息
Int J Ophthalmol. 2011;4(1):8-13. doi: 10.3980/j.issn.2222-3959.2011.01.02. Epub 2011 Feb 18.
AIM
To analyze the relationship between the structure and function of single-chain Fv antibody (scFv) with bioinformatics methods, so as to provide theoretical basis for retinoblastoma targeted therapy.
METHODS
Single-chain antibodies are reconstructed for cancer-targeted therapy to provide good penetration into tumor tissue and to improve their pharmacokinetics in vivo, offering a clinically valuable application. The relationship needs to be analyzed that there may be some variations between the structure and function of the fusion proteins, and the relationship between the structure and function of protein molecules was obtained through analyzing relevant literature at home and abroad as well as modeling analysis.
RESULTS
Through our analysis of the interaction region between the antibody and the antigen, and of the binding sites for molecular conformation, it is clear that existing antibodies need to be modified at the DNA sequence level, enhancing the biological activity of the antibodies. Based on the view that bio-molecular computer models are closely integrated with biological experiments, a bio-molecular structure-activity relationship model can be established in terms of molecular conformation, physical and chemical properties and the biological activity of single-chain antibodies. Two enlightenments are obtained from our analysis. On the one hand, the structure-activity relationship is clear for new immune molecules at the gene expression level. On the other hand, a single-chain antibody molecule can be designed and optimized for the cancer-oriented treatment.
CONCLUSION
In this article, we provide the theoretical and experimental basis for the development of single-chain antibodies appropriate for retinoblastoma therapy.
目的
运用生物信息学方法分析单链Fv抗体(scFv)的结构与功能之间的关系,为视网膜母细胞瘤的靶向治疗提供理论依据。
方法
重建单链抗体用于癌症靶向治疗,以实现对肿瘤组织的良好渗透并改善其体内药代动力学,从而提供具有临床价值的应用。需要分析融合蛋白的结构与功能之间可能存在的一些差异,通过分析国内外相关文献以及进行建模分析来获得蛋白质分子结构与功能之间的关系。
结果
通过对抗体与抗原之间相互作用区域以及分子构象结合位点的分析,明确现有抗体需要在DNA序列水平进行修饰,以增强抗体的生物活性。基于生物分子计算机模型与生物学实验紧密结合的观点,可根据单链抗体的分子构象、理化性质和生物活性建立生物分子构效关系模型。分析得出两点启示。一方面,在基因表达水平上新的免疫分子的构效关系明确。另一方面,可为面向癌症的治疗设计和优化单链抗体分子。
结论
本文为开发适用于视网膜母细胞瘤治疗的单链抗体提供了理论和实验依据。