Kyne Ciara, Crowley Peter B
School of Chemistry, National University of Ireland Galway, Ireland.
FEBS J. 2016 Aug;283(16):3016-28. doi: 10.1111/febs.13744. Epub 2016 May 11.
Current models of the cell interior emphasise its crowded, chemically complex and dynamically organised structure. Although the chemical composition of cells is known, the cooperative intermolecular interactions that govern cell ultrastructure are poorly understood. A major goal of biochemistry is to capture these myriad interactions in vivo. We consider the landmark discoveries that have shaped this objective, starting from the vitalist framework established by early natural philosophers. Through this historical revisionism, we extract important lessons for the bioinspired chemists of today. Scientific specialisation tends to insulate seminal ideas and hamper the unification of paradigms across biology. Therefore, we call for interdisciplinary collaboration in grappling with the complex cell interior. Recent successes in integrative structural biology and chemical biology demonstrate the power of hybrid approaches. The future roles of the (bio)chemist and model systems are also discussed as starting points for in vivo explorations.
当前的细胞内部模型强调其拥挤、化学组成复杂且动态有序的结构。尽管细胞的化学成分已为人所知,但对于支配细胞超微结构的分子间协同相互作用却知之甚少。生物化学的一个主要目标是在体内捕捉这些无数的相互作用。我们将探讨从早期自然哲学家建立的活力论框架开始,塑造这一目标的具有里程碑意义的发现。通过这种历史修正主义,我们为当今受生物启发的化学家汲取重要经验教训。科学专业化往往会使开创性的思想孤立起来,并阻碍生物学各范式的统一。因此,我们呼吁跨学科合作来应对复杂的细胞内部。整合结构生物学和化学生物学最近取得的成功证明了混合方法的力量。还讨论了(生物)化学家及模型系统在体内探索中的未来作用,以此作为起点。