Liu Liqing, Suzuki Kentaro, Nakagata Naomi, Mihara Kenichiro, Matsumaru Daisuke, Ogino Yukiko, Yashiro Kenta, Hamada Hiroshi, Liu Zhonghua, Evans Sylvia M, Mendelsohn Cathy, Yamada Gen
Department of Organ Formation, Institute of Molecular Embryology and Genetics, Kumamoto University, Kumamoto, Japan.
Birth Defects Res B Dev Reprod Toxicol. 2012 Feb;95(1):79-88. doi: 10.1002/bdrb.20344. Epub 2011 Nov 29.
Retinoic acid (RA) plays pivotal roles in organogenesis, and both excessive and reduced amounts of RA cause developmental abnormalities. Reproductive organs are susceptible to teratogen toxigenicity, and the genital tubercle (GT) is one such representative organ. The physiological function of endogenous RA signaling and the mechanisms of RA-induced teratogenicity are poorly understood during the GT development. The objective of this study is to understand the developmental and teratogenic roles of RA during GT development by analyzing genetically modified mouse models. We found dynamic patterns of gene expression for the RA-synthesizing enzyme, Raldh2, and for the RA-catabolizing enzyme, Cyp26b1, during GT development. Rarb, an indicator gene for RA signaling, starts its expression in the prospective corpus cavernosum penis and in the urethral plate epithelium (UE), which plays central roles during GT development. Excessive RA signaling in Cyp26b1(-/-) mutants leads to abnormal extents of cell proliferation and differentiation during GT development, and also upregulates expression of growth factor signalings. They include Sonic hedgehog (Shh) signaling and Bone morphogenetic protein (Bmp) signaling, which are expressed in the UE and its bilateral mesenchyme. RA signaling positively regulatesShh and Bmp4 expression during GT development as testified also by the experiment of RA administration and analyses of loss-of-function of RA signaling mutants. Thus, RA signaling is involved in the developmental cascade necessary for UE formation and GT development.
视黄酸(RA)在器官发生过程中发挥着关键作用,RA含量过多或过少都会导致发育异常。生殖器官易受致畸原毒性影响,生殖结节(GT)就是这样一个具有代表性的器官。在GT发育过程中,内源性RA信号的生理功能以及RA诱导致畸性的机制尚不清楚。本研究的目的是通过分析转基因小鼠模型来了解RA在GT发育过程中的发育和致畸作用。我们发现了RA合成酶Raldh2和RA分解代谢酶Cyp26b1在GT发育过程中的动态基因表达模式。Rarb是RA信号的指示基因,它在前瞻性阴茎海绵体和尿道板上皮(UE)中开始表达,UE在GT发育过程中起核心作用。Cyp26b1(-/-)突变体中过量的RA信号导致GT发育过程中细胞增殖和分化程度异常,还上调了生长因子信号的表达。它们包括在UE及其双侧间充质中表达的音猬因子(Shh)信号和骨形态发生蛋白(Bmp)信号。RA给药实验以及RA信号突变体功能丧失分析也证明,RA信号在GT发育过程中正向调节Shh和Bmp4的表达。因此,RA信号参与了UE形成和GT发育所必需的发育级联反应。