Sequence determinants directing conversion of cysteine to formylglycine in eukaryotic sulfatases

被引:115
作者
Dierks, T [1 ]
Lecca, MR [1 ]
Schlotterhose, P [1 ]
Schmidt, B [1 ]
von Figura, K [1 ]
机构
[1] Univ Gottingen, Inst Biochem & Mol Zellbiol, Biochem Abt 2, D-37073 Gottingen, Germany
关键词
cysteine; endoplasmic reticulum; multiple sulfatase deficiency; protein modification; sulfatase;
D O I
10.1093/emboj/18.8.2084
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
Sulfatases carry at their catalytic site a unique posttranslational modification, an alpha-formylglycine residue that is essential for enzyme activity. Formylglycine is generated by oxidation of a conserved cysteine or, in some prokaryotic sulfatases, serine residue. In eukaryotes, this oxidation occurs in the endoplasmic reticulum during or shortly after import of the nascent sulfatase polypeptide, The modification of arylsulfatase A was studied in vitro and was found to be directed by a short linear sequence, CTPSR, starting with the cysteine to be modified. Mutational analyses showed that the cysteine, proline and arginine are the key residues within this motif, whereas formylglycine formation tolerated the individual, but not the simultaneous substitution of the threonine or serine. The CTPSR moth was transferred to a heterologous protein leading to low-efficient formylglycine formation. The efficiency reached control values when seven additional residues (AALLTGR) directly following the CTPSR moth in arylsulfatase A were present. Mutating up to four residues simultaneously within this heptamer sequence inhibited the modification only moderately. AALLTGR may, therefore, have an auxiliary function in presenting the core motif to the modifying enzyme. Within the two moths, the key residues are fully, and other residues are highly conserved among all known members of the sulfatase family.
引用
收藏
页码:2084 / 2091
页数:8
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