Science for Life Laboratory, Department of Medical Biochemistry and Microbiology, Uppsala University, Uppsala, Sweden.
Department of Pathology & Laboratory Medicine and Department of Physiology, Children's Hospital of Philadelphia and University of Pennsylvania Perelman School of Medicine, Philadelphia, United States of America.
PLoS Genet. 2023 Apr 17;19(4):e1010724. doi: 10.1371/journal.pgen.1010724. eCollection 2023 Apr.
The biochemical pathway regulating the synthesis of yellow/red pheomelanin is less well characterized than the synthesis of black/brown eumelanin. Inhibitor of gold (IG phenotype) is a plumage colour variant in chicken that provides an opportunity to further explore this pathway since the recessive allele (IG) at this locus is associated with a defect in the production of pheomelanin. IG/IG homozygotes display a marked dilution of red pheomelanin pigmentation, whilst black pigmentation (eumelanin) is only slightly affected. Here we show that a 2-base pair insertion (frame-shift mutation) in the 5th exon of the Catechol-O-methyltransferase containing domain 1 gene (COMTD1), expected to cause a complete or partial loss-of-function of the COMTD1 enzyme, shows complete concordance with the IG phenotype within and across breeds. We show that the COMTD1 protein is localized to mitochondria in pigment cells. Knockout of Comtd1 in a mouse melanocytic cell line results in a reduction in pheomelanin metabolites and significant alterations in metabolites of glutamate/glutathione, riboflavin, and the tricarboxylic acid cycle. Furthermore, COMTD1 overexpression enhanced cellular proliferation following chemical-induced transfection, a potential inducer of oxidative stress. These observations suggest that COMTD1 plays a protective role for melanocytes against oxidative stress and that this supports their ability to produce pheomelanin.
调节黄色/红色真黑色素合成的生化途径的特征不如黑色/棕色真黑色素合成的特征那么明显。鸡的金色抑制剂(IG 表型)是一种羽毛颜色变体,为进一步探索该途径提供了机会,因为该基因座的隐性等位基因(IG)与真黑色素生成缺陷有关。IG/IG 纯合子显示出红色真黑色素着色明显稀释,而黑色色素(真黑色素)仅受到轻微影响。在这里,我们表明,在 5 号外显子中存在 2 个碱基对插入(移码突变)的儿茶酚-O-甲基转移酶含结构域 1 基因(COMTD1),预计会导致 COMTD1 酶的完全或部分功能丧失,与 IG 表型在品种内和品种间完全一致。我们表明 COMTD1 蛋白定位于色素细胞的线粒体中。在鼠黑素细胞系中敲除 Comtd1 会导致真黑色素代谢物减少,谷氨酸/谷胱甘肽、核黄素和三羧酸循环的代谢物发生重大改变。此外,COMTD1 的过表达可增强化学诱导转染后的细胞增殖,这是一种潜在的氧化应激诱导剂。这些观察结果表明,COMTD1 对黑素细胞具有抗氧化应激的保护作用,这支持它们产生真黑色素的能力。