Damjanovski S, Puzianowska-Kuznicka M, Ishuzuya-Oka A, Shi Y B
Laboratory of Molecular Embryology, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, Maryland, 20892, USA.
FASEB J. 2000 Mar;14(3):503-10. doi: 10.1096/fasebj.14.3.503.
Matrix metalloproteinases (MMPs) are a family of Zn(2+)-dependent extracellular proteases capable of degrading various proteinaceous components of the extracellular matrix (ECM). They are expressed in developmental and pathological processes such as postlactation mammary gland involution and tumor metastasis. Relatively few studies have been carried out to investigate the function of MMPs during embryogenesis and postembryonic organ development. Using Xenopus development as a model system, we and others have previously isolated three MMP genes as thyroid hormone response genes. They have distinct temporal and organ-specific regulations during thyroid hormone-dependent metamorphosis. We demonstrate here that three MMPs-stromelysin-3 (ST3), collagenases-3 (Col3), and collagenases-4 (Col4)-also have distinct spatial and temporal expression profiles during embryogenesis. Consistent with earlier suggestions that ST3 is a direct thyroid hormone response gene whereas Col3 and Col4 are not, we show that precocious overexpression of thyroid hormone receptors in the presence of thyroid hormone lead to increased expression of ST3, but not Col3. Furthermore, our whole-mount in situ hybridizations reveal a tight but distinct association of individual MMPs with tissue remodeling in different regions of the animal during embryogenesis. These results suggest that ST3 is likely to play a role in ECM remodeling that facilitate apoptotic tissue remodeling or resorption, whereas Col3 and Col4 appear to participate in connective tissue degradation during development.
基质金属蛋白酶(MMPs)是一类依赖锌离子(Zn²⁺)的细胞外蛋白酶家族,能够降解细胞外基质(ECM)的各种蛋白质成分。它们在发育和病理过程中表达,如哺乳期后乳腺退化和肿瘤转移。相对较少的研究致力于探究MMPs在胚胎发生和胚后器官发育过程中的功能。以非洲爪蟾发育作为模型系统,我们和其他人之前已分离出三个MMP基因作为甲状腺激素反应基因。它们在甲状腺激素依赖性变态过程中具有不同的时间和器官特异性调控。我们在此证明,三种MMPs——基质溶解素-3(ST3)、胶原酶-3(Col3)和胶原酶-4(Col4)——在胚胎发生过程中也具有不同的时空表达模式。与早期观点一致,即ST3是直接的甲状腺激素反应基因,而Col3和Col4不是,我们表明在甲状腺激素存在的情况下甲状腺激素受体的早熟过表达会导致ST3表达增加,但不会导致Col3表达增加。此外,我们的全胚胎原位杂交显示,在胚胎发生过程中,单个MMPs与动物不同区域的组织重塑紧密但明显相关。这些结果表明,ST3可能在促进凋亡性组织重塑或吸收的ECM重塑中发挥作用,而Col3和Col4似乎在发育过程中参与结缔组织降解。