Bhanumathy Kalpana K, Abuhussein Omar, Vizeacoumar Frederick S, Freywald Andrew, Vizeacoumar Franco J, Phenix Christopher P, Price Eric W, Cao Ran
Division of Oncology, Cancer Cluster, College of Medicine, University of Saskatchewan, Saskatoon, SK, Canada.
College of Pharmacy and Nutrition, University of Saskatchewan, Saskatoon, SK, Canada.
Methods Mol Biol. 2021;2381:333-358. doi: 10.1007/978-1-0716-1740-3_18.
Cancer is one of the leading causes of death and chromosomal instability (CIN) is a hallmark feature of cancer. CIN, a source of genetic variation in either altered chromosome number or structure contributes to tumor heterogeneity and has become a hot topic in recent years prominently for its role in therapeutic responses. Synthetic lethality and synthetic rescue based approaches, for example, advancing CRISPR-Cas9 platform, are emerging as a powerful strategy to identify new potential targets to selectively eradicate cancer cells. Unfortunately, only few of them are further explored therapeutically due to the difficulty in linking these targets to small molecules for pharmacological intervention. This, however, can be alleviated by the efforts to bring chemical, bioactivity, and genomic data together, as well as established computational approaches. In this chapter, we will discuss some of these advances, including established databases and in silico target-ligand prediction, with the aim to navigate through the synthetically available chemical space to the biologically targetable landscape, and eventually, to the chemical modeling of synthetic lethality and synthetic rescue interactions, that are of great clinical and pharmaceutical relevance and significance.
癌症是主要的死亡原因之一,染色体不稳定(CIN)是癌症的一个标志性特征。CIN是染色体数目或结构改变导致的遗传变异来源,它促进了肿瘤异质性,并且由于其在治疗反应中的作用,近年来已成为一个热门话题。例如,基于合成致死和合成拯救的方法,如推进CRISPR-Cas9平台,正成为一种强大的策略,用于识别新的潜在靶点以选择性根除癌细胞。不幸的是,由于难以将这些靶点与用于药物干预的小分子联系起来,只有少数靶点得到了进一步的治疗探索。然而,通过将化学、生物活性和基因组数据整合在一起的努力以及既定的计算方法,可以缓解这一问题。在本章中,我们将讨论其中的一些进展,包括既定的数据库和计算机辅助的靶点-配体预测,目的是从合成可用的化学空间导航到生物可靶向的领域,并最终实现具有重大临床和药学相关性及意义的合成致死和合成拯救相互作用的化学建模。