Madsen Erik C, Gitlin Jonathan D
Edward Mallinckrodt Department of Pediatrics, Washington University School of Medicine, St Louis, MO, USA.
PLoS Genet. 2008 Nov;4(11):e1000261. doi: 10.1371/journal.pgen.1000261. Epub 2008 Nov 14.
Nutrient availability is an important environmental variable during development that has significant effects on the metabolism, health, and viability of an organism. To understand these interactions for the nutrient copper, we used a chemical genetic screen for zebrafish mutants sensitive to developmental copper deficiency. In this screen, we isolated two mutants that define subtleties of copper metabolism. The first contains a viable hypomorphic allele of atp7a and results in a loss of pigmentation when exposed to mild nutritional copper deficiency. This mutant displays incompletely penetrant skeletal defects affected by developmental copper availability. The second carries an inactivating mutation in the vacuolar ATPase that causes punctate melanocytes and embryonic lethality. This mutant, catastrophe, is sensitive to copper deprivation revealing overlap between ion metabolic pathways. Together, the two mutants illustrate the utility of chemical genetic screens in zebrafish to elucidate the interaction of nutrient availability and genetic polymorphisms in cellular metabolism.
营养物质的可利用性是发育过程中的一个重要环境变量,对生物体的新陈代谢、健康和生存能力有重大影响。为了了解营养物质铜的这些相互作用,我们对发育性铜缺乏敏感的斑马鱼突变体进行了化学遗传筛选。在此筛选中,我们分离出两个定义铜代谢细微差别的突变体。第一个包含一个可行的atp7a次等位基因,当暴露于轻度营养性铜缺乏时会导致色素沉着丧失。该突变体表现出受发育性铜可利用性影响的不完全显性骨骼缺陷。第二个在液泡ATP酶中携带一个失活突变,导致点状黑素细胞和胚胎致死。这个名为“灾难”的突变体对铜剥夺敏感,揭示了离子代谢途径之间的重叠。这两个突变体共同说明了斑马鱼化学遗传筛选在阐明细胞代谢中营养物质可利用性与基因多态性相互作用方面的效用。