Gansner John M, Gitlin Jonathan D
Edward Mallinckrodt Department of Pediatrics, Washington University School of Medicine, St. Louis, Missouri, USA.
Dev Dyn. 2008 Dec;237(12):3715-26. doi: 10.1002/dvdy.21779.
Several zebrafish mutants identified in large-scale forward genetic screens exhibit notochord distortion. We now report the cloning and further characterization of one such mutant, gulliver(m208) (gul(m208)). The notochord defect in gul(m208) mutants is exacerbated under conditions of copper depletion or lysyl oxidase cuproenzyme inhibition that are without a notochord effect on wild-type embryos. The gul(m208) phenotype results from a missense mutation in the gene encoding Col8a1, a lysyl oxidase substrate, and morpholino knockdown of col8a1 recapitulates the notochord distortion observed in gul(m208) mutants. Of interest, the amino acid mutated in gul(m208) Col8a1 is highly conserved, and the equivalent substitution in a closely related human protein, COL10A1, causes Schmid metaphyseal chondrodysplasia. Taken together, the data identify a new protein essential for notochord morphogenesis, extend our understanding of gene-nutrient interactions in early development, and suggest that human mutations in COL8A1 may cause structural birth defects.
在大规模正向遗传筛选中鉴定出的几种斑马鱼突变体表现出脊索畸变。我们现在报告其中一种突变体gulliver(m208)(gul(m208))的克隆及进一步特征分析。在铜缺乏或赖氨酰氧化酶铜酶抑制的条件下,gul(m208)突变体的脊索缺陷会加剧,而这些条件对野生型胚胎的脊索没有影响。gul(m208)表型是由编码Col8a1(一种赖氨酰氧化酶底物)的基因中的错义突变引起的,并且col8a1的吗啉代敲低重现了在gul(m208)突变体中观察到的脊索畸变。有趣的是,gul(m208) Col8a1中发生突变的氨基酸高度保守,并且在密切相关的人类蛋白质COL10A1中的等效替代会导致施密德干骺端软骨发育不良。综上所述,这些数据确定了一种对脊索形态发生至关重要的新蛋白质,扩展了我们对早期发育中基因 - 营养相互作用的理解,并表明COL8A1中的人类突变可能导致结构出生缺陷。