Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine, Baltimore, MD 21201, USA.
Amino Acids. 2012 Feb;42(2-3):1065-75. doi: 10.1007/s00726-011-1021-0. Epub 2011 Aug 2.
We have characterized the protein cross-linking enzyme transglutaminase (TGs) genes in zebrafish, Danio rerio, based on the analysis of their genomic organization and phylogenetics. Thirteen zebrafish TG genes (zTGs) have been identified, of which 11 show high homology to only 3 mammalian enzymes: TG1, TG2 and FXIIIa. No zebrafish homologues were identified for mammalian TGs 3-7. Real-time PCR analysis demonstrated distinct temporal expression profiles for zTGs in larvae and adult fish. Analysis by in situ hybridization revealed restricted expression of zTG2b and zFXIIIa in skeletal elements, resembling expression of their mammalian homologues in osteo-chondrogenic cells. Mammalian TG2 and FXIIIa have been implicated in promoting osteoblast differentiation and bone mineralization in vitro, however, mouse models lacking either gene have no skeletal phenotype likely due to a compensation effect. We show in this study that mineralization of the newly formed vertebrae is significantly reduced in fish grown for 5 days in the presence of TG inhibitor KCC-009 added at 3-5 days post fertilization. This treatment reduces average vertebrae mineralization by 30%, with complete inhibition in some fish, and no effect on the overall growth and vertebrae number. This is the first in vivo demonstration of the crucial requirement for the TG-catalyzed cross-linking activity in bone mineralization.
我们根据其基因组组织和系统发生学分析,鉴定了斑马鱼(Danio rerio)中的蛋白交联酶转谷氨酰胺酶(TGs)基因。已鉴定出 13 种斑马鱼 TG 基因(zTGs),其中 11 种与仅 3 种哺乳动物酶具有高度同源性:TG1、TG2 和 FXIIIa。在哺乳动物 TG3-7 中没有鉴定出斑马鱼同源物。实时 PCR 分析表明,zTGs 在幼虫和成年鱼中的表达模式存在明显的时间差异。原位杂交分析表明,zTG2b 和 zFXIIIa 在骨骼元素中的表达受到限制,类似于其哺乳动物同源物在成骨-软骨细胞中的表达。体外研究表明,哺乳动物 TG2 和 FXIIIa 可促进成骨细胞分化和骨矿化,但缺乏这两种基因的小鼠模型可能由于补偿效应而没有骨骼表型。本研究表明,在受精后 3-5 天添加 TG 抑制剂 KCC-009 培养 5 天的鱼类中,新形成的脊椎骨的矿化明显减少。该处理使平均脊椎骨矿化减少 30%,一些鱼类完全抑制,而对整体生长和脊椎骨数量没有影响。这是首次在体内证明 TG 催化的交联活性对骨矿化至关重要的要求。