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Resolution of Complex Issues in Genome Regulation and Cancer Requires Non-Linear and Network-Based Thermodynamics

机译:解决基因组调控和癌症中的复杂问题需要非线性和基于网络的热力学

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摘要

The apparent lack of success in curing cancer that was evidenced in the last four decades of molecular medicine indicates the need for a global re-thinking both its nature and the biological approaches that we are taking in its solution. The reductionist, one gene/one protein method that has served us well until now, and that still dominates in biomedicine, requires complementation with a more systemic/holistic approach, to address the huge problem of cross-talk between more than 20,000 protein-coding genes, about 100,000 protein types, and the multiple layers of biological organization. In this perspective, the relationship between the chromatin network organization and gene expression regulation plays a fundamental role. The elucidation of such a relationship requires a non-linear thermodynamics approach to these biological systems. This change of perspective is a necessary step for developing successful ‘tumour-reversion’ therapeutic strategies.
机译:在过去的四十年中,分子医学证明无法治愈癌症,这表明需要全球重新考虑其性质以及我们在解决方案中所采用的生物学方法。还原论是一种基因/一种蛋白质的方法,这种方法迄今为止一直为我们服务,并且在生物医学中仍然占主导地位,它需要以更具系统性/整体性的方法进行补充,以解决20,000多种蛋白质编码之间的巨大串扰问题。基因,约100,000种蛋白质类型以及多层生物组织。从这个角度来看,染色质网络组织与基因表达调控之间的关系起着至关重要的作用。为了阐明这种关系,需要对这些生物系统采用非线性热力学方法。这种观点的改变是制定成功的“肿瘤逆转”治疗策略的必要步骤。

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