Fujimoto Kenta, Nakajima Keisuke, Yaoita Yoshio
Division of Embryology and Genetics, Institute for Amphibian Biology, Graduate School of Science, Hiroshima University, Higashihiroshima 739-8526, Japan.
Dev Growth Differ. 2006 May;48(4):223-41. doi: 10.1111/j.1440-169X.2006.00859.x.
The drastic morphological changes of the tadpole are induced during the climax of anuran metamorphosis, when the concentration of endogenous thyroid hormone is maximal. The tadpole tail, which is twice as long as the body, shortens rapidly and disappears completely in several days. We isolated a cDNA clone, designated as Xl MMP-9TH, similar to the previously reported Xenopus laevis MMP-9 gene, and showed that their Xenopus tropicalis counterparts are located tandemly about 9 kb apart from each other in the genome. The Xenopus MMP-9TH gene was expressed in the regressing tail and gills and the remodeling intestine and central nervous system, and induced in thyroid hormone-treated tail-derived myoblastic cultured cells, while MMP-9 mRNA was detected in embryos. Three thyroid hormone response elements in the distal promoter and the first intron were involved in the upregulation of the Xl MMP-9TH gene by thyroid hormone in transient expression assays, and their relative positions are conserved between X. laevis and X. tropicalis promoters. These data strongly suggest that the MMP-9 gene was duplicated, and differentiated into two genes, one of which was specialized in a common ancestor of X. laevis and X. tropicalis to be expressed in degenerating and remodeling organs as a response to thyroid hormone during metamorphosis.
在无尾两栖类变态高峰期,当内源性甲状腺激素浓度达到最大值时,蝌蚪会发生剧烈的形态变化。蝌蚪的尾巴长度是身体的两倍,会迅速缩短,并在几天内完全消失。我们分离出一个cDNA克隆,命名为Xl MMP - 9TH,它与先前报道的非洲爪蟾MMP - 9基因相似,并表明它们在热带爪蟾中的对应基因在基因组中彼此串联排列,相距约9 kb。非洲爪蟾MMP - 9TH基因在退化的尾巴、鳃、正在重塑的肠道和中枢神经系统中表达,并在甲状腺激素处理的尾巴来源的成肌细胞培养物中被诱导表达,而MMP - 9 mRNA在胚胎中被检测到。在瞬时表达实验中,远端启动子和第一个内含子中的三个甲状腺激素反应元件参与了甲状腺激素对Xl MMP - 9TH基因的上调,并且它们在非洲爪蟾和热带爪蟾启动子之间的相对位置是保守的。这些数据有力地表明,MMP - 9基因发生了复制,并分化成两个基因,其中一个在非洲爪蟾和热带爪蟾的共同祖先中专门用于在变态过程中作为对甲状腺激素的反应而在退化和重塑的器官中表达。