Schipani Ernestina
Massachusetts General Hospital, Endocrine Unit, 50 Blossom Street, Wellman 501, Boston, MA 02114-2696, USA.
Ann N Y Acad Sci. 2006 Apr;1068:66-73. doi: 10.1196/annals.1346.009.
In endochondral bone development chondrocytes undergo proliferation, hypertrophic differentiation, mineralization of the surrounding matrix, death, blood vessel invasion, and finally replacement of cartilage with bone. The chondrocytic growth plate is a unique mesenchymal tissue, as it is avascular but it requires blood vessel invasion in order to be replaced by bone. We have recently provided evidence that the growth plate is hypoxic during fetal development. Adaptation to hypoxia is a critical event in numerous pathological settings, such as tumor progression and survival of tissues in which blood flow has been suddenly interrupted. One of the hallmarks of the response to hypoxia is activation of the transcription factor HIF-1alpha. The von Hippel-Lindau (VHL) tumor suppressor protein is a component of a ubiquitin ligase promoting proteolysis of HIF-1alpha. By using a genetic approach, we have demonstrated that VHL and HIF-1alpha are critical regulators of endochondral bone development.
在软骨内骨发育过程中,软骨细胞经历增殖、肥大分化、周围基质矿化、死亡、血管侵入,最终软骨被骨替代。软骨细胞生长板是一种独特的间充质组织,因为它无血管,但需要血管侵入才能被骨替代。我们最近提供的证据表明,生长板在胎儿发育期间处于缺氧状态。适应缺氧是许多病理情况下的关键事件,例如肿瘤进展以及血流突然中断的组织的存活。对缺氧反应的标志之一是转录因子HIF-1α的激活。冯·希佩尔-林道(VHL)肿瘤抑制蛋白是促进HIF-1α蛋白水解的泛素连接酶的一个组成部分。通过遗传学方法,我们已经证明VHL和HIF-1α是软骨内骨发育的关键调节因子。