Zito Ester, Fraldi Alessandro, Pepe Stefano, Annunziata Ida, Kobinger Gary, Di Natale Paola, Ballabio Andrea, Cosma Maria Pia
Telethon Institute of Genetics and Medicine (TIGEM), via P. Castellino, 111, Naples, Italy.
EMBO Rep. 2005 Jul;6(7):655-60. doi: 10.1038/sj.embor.7400454.
Sulphatases undergo a unique post-translational modification that converts a highly conserved cysteine located within their active site into formylglycine. This modification is necessary for the catalytic activities of the sulphatases, and it is generated by the protein product of sulphatase-modifying factor 1 (SUMF1), the gene mutated in multiple sulphatase deficiency (MSD). A paralogous gene, SUMF2, was discovered through its sequence similarity to SUMF1. We present evidence that SUMF2 colocalizes with SUMF1 within the endoplasmic reticulum and that the two proteins form heterodimers. SUMF1 and SUMF2 also form homodimers. In addition, SUMF2 is able to associate with the sulphatases with and without SUMF1. We have previously shown that co-transfection of SUMF1 with the sulphatase complementary DNAs greatly enhances the activities of the overexpressed sulphatases. Here, we show that SUMF2 inhibits the enhancing effects of SUMF1 on sulphatases, suggesting that the SUMF1-SUMF2 interaction represents a further level of control of these sulphatase activities.
硫酸酯酶会经历一种独特的翻译后修饰,这种修饰会将位于其活性位点内的一个高度保守的半胱氨酸转化为甲酰甘氨酸。这种修饰对于硫酸酯酶的催化活性是必需的,它由硫酸酯酶修饰因子1(SUMF1)的蛋白质产物产生,SUMF1基因在多种硫酸酯酶缺乏症(MSD)中发生突变。通过与SUMF1的序列相似性发现了一个同源基因SUMF2。我们提供的证据表明,SUMF2与SUMF1在内质网中共定位,并且这两种蛋白质形成异二聚体。SUMF1和SUMF2也形成同二聚体。此外,SUMF2能够与有SUMF1和没有SUMF1的硫酸酯酶结合。我们之前已经表明,SUMF1与硫酸酯酶互补DNA共转染可大大增强过表达的硫酸酯酶的活性。在此,我们表明SUMF2会抑制SUMF1对硫酸酯酶的增强作用,这表明SUMF1 - SUMF2相互作用代表了对这些硫酸酯酶活性的进一步调控水平。