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Molecular mechanisms for thyroid hormone-induced remodeling in the amphibian digestive tract: a model for studying organ regeneration

机译:两栖类消化道中甲状腺激素诱导的重塑的分子机制:研究器官再生的模型

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During amphibian metamorphosis the digestive tract is extensively remodeled under the control of epithelial-connective tissue interactions. At the cellular level, larval epithelial cells undergo apoptosis, while a small number of stem cells appear, actively proliferate, and then differentiate to form adult epithelium that is analogous to its mammalian counterpart. Therefore the amphibian digestive tract is a unique model system for the study of postembryonic organ regeneration. As amphibian intestinal remodeling can be triggered by thyroid hormone (TH), the molecular mechanisms involved can be studied from the perspective of examining the expression cascade of TH response genes. A number of these genes have been isolated from the intestine of Xenopus laevis. Recent progress in the functional analysis of this cascade has shed light on key molecules in intestinal remodeling such as matrix metalloproteinase-11, sonic hedgehog, and bone morphogenetic protein-4. These genes are also thought to play key roles in organogenesis and/or homeostasis in both chick and mammalian digestive tract, suggesting the existence of conserved mechanisms underlying such events in terrestrial vertebrates. In this article, we review our recent findings in this field, focusing on the development of adult epithelium in the X. laevis intestine.
机译:在两栖动物变态过程中,消化道在上皮-结缔组织相互作用的控制下进行了广泛的重塑。在细胞水平上,幼虫上皮细胞发生凋亡,而少量干细胞出现,活跃增殖,然后分化形成类似于哺乳动物对应物的成年上皮细胞。因此,两栖动物的消化道是用于胚胎后器官再生研究的独特模型系统。由于甲状腺激素(TH)可以引发两栖动物肠道重塑,因此可以从检查TH反应基因的表达级联的角度研究涉及的分子机制。这些基因中有许多是从非洲爪蟾的肠道中分离出来的。该级联功能分析的最新进展揭示了肠道重塑中的关键分子,例如基质金属蛋白酶11,声波刺猬和骨形态发生蛋白4。还认为这些基因在雏鸡和哺乳动物消化道的器官发生和/或体内平衡中起关键作用,表明在陆生脊椎动物中存在此类事件的保守机制。在本文中,我们回顾了我们在该领域的最新发现,重点是X. laevis肠中成人上皮的发育。

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