Sulphatase activities are regulated by the interaction of sulphatase-modifying factor 1 with SUMF2

被引:47
作者
Zito, E
Fraldi, A
Pepe, S
Annunziata, I
Kobinger, G
Di Natale, P
Ballabio, A
Cosma, MP
机构
[1] TIGEM, Naples, Italy
[2] Univ Penn, Wistar Inst, Philadelphia, PA 19104 USA
[3] Univ Naples Federico II, Dept Biochem & Med Biotechnol, Naples, Italy
[4] Univ Naples Federico II, Fac Med, Dept Pediat, Naples, Italy
关键词
protein-protein interactions; enzymatic activity; inborn errors of metabolism;
D O I
10.1038/sj.embor.7400454
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
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.
引用
收藏
页码:655 / 660
页数:6
相关论文
共 10 条
[1]  
BALLABIO A, 2001, METABOLIC MOL BASIS, P4241
[2]   Molecular and functional analysis of SUMF1 mutations in multiple sulfatase deficiency [J].
Cosma, MP ;
Pepe, S ;
Parenti, G ;
Settembre, C ;
Annunziata, I ;
Wade-Martins, R ;
Di Domenico, C ;
Di Natale, P ;
Mankad, A ;
Cox, B ;
Uziel, G ;
Mancini, GMS ;
Zammarchi, E ;
Donati, MA ;
Kleijer, WJ ;
Filocamo, M ;
Carrozzo, R ;
Carella, M ;
Ballabio, A .
HUMAN MUTATION, 2004, 23 (06) :576-581
[3]   The multiple sulfatase deficiency gene encodes an essential and limiting factor for the activity of sulfatases [J].
Cosma, MP ;
Pepe, S ;
Annunziata, I ;
Newbold, RF ;
Grompe, M ;
Parenti, G ;
Ballabio, A .
CELL, 2003, 113 (04) :445-456
[4]   Multiple sulfatase deficiency is caused by mutations in the gene encoding the human Cα-formylglycine generating enzyme [J].
Dierks, T ;
Schmidt, B ;
Borissenko, LV ;
Peng, JH ;
Preusser, A ;
Mariappan, M ;
von Figura, K .
CELL, 2003, 113 (04) :435-444
[5]   A CLUSTER OF SULFATASE GENES ON XP22.3 - MUTATIONS IN CHONDRODYSPLASIA PUNCTATA (CDPX) AND IMPLICATIONS FOR WARFARIN EMBRYOPATHY [J].
FRANCO, B ;
MERONI, G ;
PARENTI, G ;
LEVILLIERS, J ;
BERNARD, L ;
GEBBIA, M ;
COX, L ;
MAROTEAUX, P ;
SHEFFIELD, L ;
RAPPOLD, GA ;
ANDRIA, G ;
PETIT, C ;
BALLABIO, A .
CELL, 1995, 81 (01) :15-25
[6]  
HOPWOOD JJ, 2001, METABOLIC MOL BASES, V3, P3725
[7]  
Neufeld EF, 2001, METABOLIC MOL BASES, P3421, DOI DOI 10.1036/OMMBID.165
[8]   Computational analysis of bacterial sulfatases and their modifying enzymes [J].
Schirmer, A ;
Kolter, R .
CHEMISTRY & BIOLOGY, 1998, 5 (08) :R181-R186
[9]   A NOVEL AMINO-ACID MODIFICATION IN SULFATASES THAT IS DEFECTIVE IN MULTIPLE SULFATASE DEFICIENCY [J].
SCHMIDT, B ;
SELMER, T ;
INGENDOH, A ;
VONFIGURA, K .
CELL, 1995, 82 (02) :271-278
[10]  
Von Figura K, 2001, METABOLIC MOL BASES, P3695