Title of article :
Molecular Basis for Multiple Sulfatase Deficiency and Mechanism for Formylglycine Generation of the Human Formylglycine-Generating Enzyme
Author/Authors :
Dierks، Thomas نويسنده , , Dickmanns، Achim نويسنده , , Preusser-Kunze، Andrea نويسنده , , Schmidt، Bernhard نويسنده , , Mariappan، Malaiyalam نويسنده , , Figura، Kurt von نويسنده , , Ficner، Ralf نويسنده , , Rudolph، Markus Georg نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2005
Pages :
-540
From page :
541
To page :
0
Abstract :
Sulfatases are enzymes essential for degradation and remodeling of sulfate esters. Formylglycine (FGly), the key catalytic residue in the active site, is unique to sulfatases. In higher eukaryotes, FGly is generated from a cysteine precursor by the FGly-generating enzyme (FGE). Inactivity of FGE results in multiple sulfatase deficiency (MSD), a fatal autosomal recessive syndrome. Based on the crystal structure, we report that FGE is a singledomain monomer with a surprising paucity of secondary structure and adopts a unique fold. The effect of all 18 missense mutations found in MSD patients is explained by the FGE structure, providing a molecular basis of MSD. The catalytic mechanism of FGly generation was elucidated by six high-resolution structures of FGE in different redox environments. The structures allow formulation of a novel oxygenase mechanism whereby FGE utilizes molecular oxygen to generate FGly via a cysteine sulfenic acid intermediate.
Keywords :
PLAYBACK EXPERIMENTS , TONIC COMMUNICATION , URGENCY-BASED , VIGILANCE
Journal title :
CELL
Serial Year :
2005
Journal title :
CELL
Record number :
102452
Link To Document :
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