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Life is Complicated

机译:生活很复杂

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摘要

Success in the three conceptually related fields of metabolic engineerign, drug discovery, and functional genomics rests on understanding, or discovering, the relationship among activities encoded on particular genes and the phenotype of the organism. In spite of detailed catalogues of complicated networks in individual cells, in turn embedded in additional layers of complicated signalling systems in cell populations, assuming that biology is simple is common, as manifested by the terms "rate-limiting step", "drug target", and "function of a gene." All of these naive concepts are based on the assumption that a single gene's product has a simply understood and substantial effect on the function of an organism. Why do these simplistic concepts and approaches survive, and to a large extent dominate, contemporary science, pharmaceutical research and development, and biotechnology investment? The answers seem to be: (1) these concepts sometimes work (particularly at the peripheries of cellular networks, e.g. within unbranched terminal biosynthetic pathways, or for certain receptors), and (2) not enough people so far understand otherwise.
机译:在代谢工程,药物发现和功能基因组学这三个概念上相关的领域中的成功取决于对特定基因编码的活性与生物表型之间关系的理解或发现。尽管有详细的单个细胞中复杂网络的目录,但又将其嵌入细胞群体中复杂信号系统的其他层中,但假设生物学很简单,就如术语“限速步骤”,“药物靶点”所示以及“基因的功能”。所有这些幼稚的概念都基于这样一个假设,即单个基因的产物对生物体的功能具有简单的理解和实质性影响。为什么这些简单化的概念和方法在当代科学,药物研究与开发以及生物技术投资中得以生存,并在很大程度上占据主导地位?答案似乎是:(1)这些概念有时行得通(特别是在细胞网络的外围,例如在未分支的末端生物合成途径内,或对于某些受体而言),(2)到目前为止,没有足够的人了解其他概念。

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