Cardiovascular Research Center, Massachusetts General Hospital, Charlestown, Massachusetts 02129, USA.
J Cell Biochem. 2012 Jul;113(7):2208-16. doi: 10.1002/jcb.24120.
The number of possible small organic molecules of different structure is virtually limitless. One of the main goals of chemical biologists is to identify, from this "chemical space", entities that affect biological processes or systems in a specific manner. This can lead to a better understanding of the regulation and components of various biological machineries, as well as provide insights into efficacious therapeutic targets and drug candidates. However, the challenges confronting chemical biologists are multiple. How do we efficiently identify compounds that possess desirable activities without unwanted off-target effects? Once a candidate compound has been found, how do we determine its mode of action? In this Prospects piece, we call attention to recent studies using embryonic and larval zebrafish to illustrate the breadth and depth of questions in chemical biology that may be addressed using this model, and hope that they can serve as catalysts for future investigational ideas.
可能具有不同结构的小分子有机化合物的数量实际上是无限的。化学生物学家的主要目标之一是从这个“化学空间”中识别出以特定方式影响生物过程或系统的实体。这可以帮助我们更好地了解各种生物机制的调节和组成部分,并为有效的治疗靶点和药物候选物提供新的思路。然而,化学生物学家面临着多重挑战。我们如何在不产生不必要的脱靶效应的情况下高效地识别具有理想活性的化合物?一旦找到了候选化合物,我们如何确定其作用模式?在这篇展望文章中,我们呼吁关注最近使用胚胎和幼体斑马鱼的研究,这些研究说明了使用这种模型可以解决的化学生物学中的广泛而深入的问题,并希望它们能够成为未来研究思路的催化剂。