School of Computer Science and Technology, Xidian University, Xi'an 710000, China.
School of Computer Science, Xi'an Polytechnic University, Xi'an 710000, China.
Molecules. 2017 Dec 25;23(1):39. doi: 10.3390/molecules23010039.
Driver mutation provides fitness advantage to cancer cells, the accumulation of which increases the fitness of cancer cells and accelerates cancer progression. This work seeks to extract patterns accumulated by driver genes ("fitness relationships") in tumorigenesis. We introduce a network-based method for extracting the fitness relationships of driver genes by modeling the network properties of the "fitness" of cancer cells. Colon adenocarcinoma (COAD) and skin cutaneous malignant melanoma (SKCM) are employed as case studies. Consistent results derived from different background networks suggest the reliability of the identified fitness relationships. Additionally co-occurrence analysis and pathway analysis reveal the functional significance of the fitness relationships with signaling transduction. In addition, a subset of driver genes called the "fitness core" is recognized for each case. Further analyses indicate the functional importance of the fitness core in carcinogenesis, and provide potential therapeutic opportunities in medicinal intervention. Fitness relationships characterize the functional continuity among driver genes in carcinogenesis, and suggest new insights in understanding the oncogenic mechanisms of cancers, as well as providing guiding information for medicinal intervention.
驱动突变为癌细胞提供了适应优势,其积累增加了癌细胞的适应性,并加速了癌症的进展。这项工作旨在提取驱动基因中积累的模式(“适应性关系”)在肿瘤发生中的作用。我们通过模拟“癌细胞适应性”的网络特性,引入了一种基于网络的方法来提取驱动基因的适应性关系。我们选择结肠腺癌(COAD)和皮肤皮肤恶性黑色素瘤(SKCM)作为案例研究。来自不同背景网络的一致结果表明,所确定的适应性关系具有可靠性。此外,共现分析和途径分析揭示了与信号转导相关的适应性关系的功能意义。此外,对于每种情况,我们都识别出了一组被称为“适应性核心”的驱动基因。进一步的分析表明,适应性核心在致癌作用中的功能重要性,并为药物干预提供了潜在的治疗机会。适应性关系描述了致癌过程中驱动基因之间的功能连续性,为理解癌症的致癌机制提供了新的见解,并为药物干预提供了指导信息。