Hendling Michaela, Barišić Ivan
Austrian Institute of Technology GmbH, Center for Health & Bioresources, Molecular Diagnostics, Giefinggasse 4, 1210 Vienna, Austria.
Comput Struct Biotechnol J. 2019 Jul 29;17:1056-1065. doi: 10.1016/j.csbj.2019.07.008. eCollection 2019.
DNA oligonucleotides are essential components of a high number of technologies in molecular biology. The key event of each oligonucleotide-based assay is the specific binding between oligonucleotides and their target DNA. However, single-stranded DNA molecules also tend to bind to unintended targets or themselves. The probability of such unspecific binding increases with the complexity of an assay. Therefore, accurate data management and design workflows are necessary to optimize the design of primers and probes. Important considerations concerning computational infrastructure and run time need to be made for both data management and the design process. Data retrieval, data updates, storage, filtering and analysis are the main parts of a sequence data management system. Each part needs to be well-implemented as the resulting sequences form the basis for the oligonucleotide design. Important key features, such as the oligonucleotide length, melting temperature, secondary structures and primer dimer formation, as well as the specificity, should be considered for the selection of oligonucleotides. The development of an efficient oligonucleotide design workflow demands the right balance between the precision of the applied computer models, the general expenditure of time, and computational workload. This paper gives an overview of important parameters during the design process, starting from the data retrieval, up to the design parameters for optimized oligonucleotide design.
DNA寡核苷酸是分子生物学中众多技术的重要组成部分。每种基于寡核苷酸的检测方法的关键步骤是寡核苷酸与其靶DNA之间的特异性结合。然而,单链DNA分子也倾向于与非目标靶点或自身结合。这种非特异性结合的概率会随着检测方法的复杂性而增加。因此,需要精确的数据管理和设计工作流程来优化引物和探针的设计。在数据管理和设计过程中,需要对计算基础设施和运行时间进行重要考量。数据检索、数据更新、存储、筛选和分析是序列数据管理系统的主要组成部分。每个部分都需要良好实现,因为所得序列构成了寡核苷酸设计的基础。在选择寡核苷酸时,应考虑重要的关键特征,如寡核苷酸长度、解链温度、二级结构和引物二聚体形成以及特异性。高效的寡核苷酸设计工作流程的开发需要在应用计算机模型的精度、总体时间消耗和计算工作量之间取得恰当平衡。本文概述了设计过程中的重要参数,从数据检索开始,直至优化寡核苷酸设计的设计参数。