Estrada Alejandro F, Avalos Javier
Departamento de Genética, Facultad de Biología, Universidad de Sevilla, Sevilla, Spain.
J Mol Biol. 2009 Mar 20;387(1):59-73. doi: 10.1016/j.jmb.2009.01.057. Epub 2009 Feb 3.
Opsins are widespread photoreceptor proteins involved in a diversity of light-driven processes in all major taxa that use the apocarotenoid retinal as a light-absorbing prosthetic group. Proteins from the opsin family are also found in filamentous fungi, but no function has been attributed to them. The fungus Fusarium fujikuroi contains two genes for presumptive retinal-binding opsins, which we call carO and opsA, and a gene for an opsin-related protein, called hspO. One report showed that carO is linked and co-regulated with the enzymatic genes of the carotenoid pathway, carRA, carB, and carX, but that its mutation produced no detectable phenotype. Sequence analyses suggest that OpsA, not CarO, is the orthologue of the Neurospora opsin NOP-1. mRNA levels for the three Fusarium opsin genes are induced by heat shock, while those for carO and opsA are induced by light. This photoinduction is lost in mutants of the white collar gene wcoA, which contains much higher carO and opsA mRNA levels than the wild type, indicating a down-regulation of both genes by WcoA. Conversely to carO, opsA mRNA levels are not enhanced in carotenoid-overproducing mutants. Targeted opsA mutants have no discernible external phenotype, but they exhibit a significant decrease in mRNA levels for structural genes of the carotenoid pathway. Similar reductions are produced by mutations in the enzymatic genes carRA and carB, but not in carX, responsible for retinal biosynthesis.
视蛋白是广泛存在的光感受器蛋白,参与所有主要生物分类群中多种光驱动过程,这些生物分类群使用视黄醛类胡萝卜素作为吸光辅基。视蛋白家族的蛋白质也存在于丝状真菌中,但尚未确定其功能。藤仓镰孢菌含有两个推测的视网膜结合视蛋白基因,我们称之为carO和opsA,以及一个视蛋白相关蛋白基因,称为hspO。一份报告显示,carO与类胡萝卜素途径的酶基因carRA、carB和carX连锁并共同调控,但其突变未产生可检测到的表型。序列分析表明,OpsA而非CarO是粗糙脉孢菌视蛋白NOP-1的直系同源物。三种镰孢菌视蛋白基因的mRNA水平受热激诱导,而carO和opsA的mRNA水平受光诱导。这种光诱导在白领基因wcoA的突变体中消失,该突变体中carO和opsA的mRNA水平比野生型高得多,表明WcoA对这两个基因有下调作用。与carO相反,类胡萝卜素过量产生突变体中opsA的mRNA水平没有提高。靶向opsA突变体没有明显的外部表型,但它们在类胡萝卜素途径结构基因的mRNA水平上显著降低。类胡萝卜素生物合成相关酶基因carRA和carB的突变也会产生类似的降低,但负责视网膜生物合成的carX基因的突变则不会。