Folgueras Alicia R, de Lara Fernando Martín, Pendás Alberto M, Garabaya Cecilia, Rodríguez Francisco, Astudillo Aurora, Bernal Teresa, Cabanillas Rubén, López-Otín Carlos, Velasco Gloria
Departamento de Bioquímica y Biología Molecular, Facultad de Medicina, Instituto Universitario de Oncología, Universidad de Oviedo, Spain.
Blood. 2008 Sep 15;112(6):2539-45. doi: 10.1182/blood-2008-04-149773. Epub 2008 Jun 3.
Proteolytic events at the cell surface are essential in the regulation of signal transduction pathways. During the past years, the family of type II transmembrane serine proteases (TTSPs) has acquired an increasing relevance because of their privileged localization at the cell surface, although our current understanding of the biologic function of most TTSPs is limited. Here we show that matriptase-2 (Tmprss6), a recently described member of the TTSP family, is an essential regulator of iron homeostasis. Thus, Tmprss6(-/-) mice display an overt phenotype of alopecia and a severe iron deficiency anemia. These hematologic alterations found in Tmprss6(-/-) mice are accompanied by a marked up-regulation of hepcidin, a negative regulator of iron export into plasma. Likewise, Tmprss6(-/-) mice have reduced ferroportin expression in the basolateral membrane of enterocytes and accumulate iron in these cells. Iron-dextran therapy rescues both alopecia and hematologic alterations of Tmprss6(-/-) mice, providing causal evidence that the anemic phenotype of these mutant mice results from the blockade of intestinal iron export into plasma after dietary absorption. On the basis of these findings, we conclude that matriptase-2 activity represents a novel and relevant step in hepcidin regulation and iron homeostasis.
细胞表面的蛋白水解事件在信号转导通路的调节中至关重要。在过去几年中,II型跨膜丝氨酸蛋白酶(TTSPs)家族因其在细胞表面的特殊定位而变得越来越重要,尽管我们目前对大多数TTSPs生物学功能的了解有限。在这里,我们表明,matriptase-2(Tmprss6)是TTSP家族中最近描述的成员,是铁稳态的重要调节因子。因此,Tmprss6(-/-)小鼠表现出明显的脱发表型和严重的缺铁性贫血。在Tmprss6(-/-)小鼠中发现的这些血液学改变伴随着血浆中铁输出的负调节因子hepcidin的显著上调。同样,Tmprss6(-/-)小鼠肠细胞基底外侧膜上的铁转运蛋白表达降低,并且这些细胞中铁积累。右旋糖酐铁疗法可挽救Tmprss6(-/-)小鼠的脱发和血液学改变,提供了因果证据,证明这些突变小鼠的贫血表型是由于饮食吸收后肠道铁向血浆输出受阻所致。基于这些发现,我们得出结论,matriptase-2活性代表了hepcidin调节和铁稳态中的一个新的重要步骤。