Characterization and reconstitution of a 4Fe-4S adenylyl sulfate/phosphoadenylyl sulfate reductase from Bacillus subtilis

被引:51
作者
Berndt, C
Lillig, CH
Wollenberg, M
Bill, E
Mansilla, MC
de Mendoza, D
Seidler, A
Schwenn, JD
机构
[1] Ruhr Univ Bochum, Fak Biol, Lehrstuhl Biochem Pflanzen, D-44780 Bochum, Germany
[2] Karolinska Inst, Dept Med Biochem & Biophys, Med Nobel Inst Biochem, Stockholm, Sweden
[3] Univ Nacl Rosario, Fac Ciencias Bioquim & Farmaceut, Dept Microbil, RA-2000 Rosario, Santa Fe, Argentina
[4] Inst Mol & Cellular Biol, Rosario, Santa Fe, Argentina
[5] Max Planck Inst Bioorgan Chem, Mulheim, Germany
关键词
D O I
10.1074/jbc.M309332200
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
CysH1 from Bacillus subtilis encodes a 3'-phospho/ adenosine-phosphosulfate-sulfonucleotide reductase (SNR) of 27 kDa. Recombinant B. subtilis SNR is a homodimer, which is bispecific and reduces adenylylsulfate (APS) and 3'-phosphoadenylylsulfate ( PAPS) alike with thioredoxin 1 or with glutaredoxin 1 as reductants. The enzyme has a higher affinity for PAPS (K(m)PAPS 6.4 muM Trx-saturating, 10.7 muM Grx-saturating) than for APS (K-m APS 28.7 muM Trx-saturating, 105 muM Grx-saturating) at a V-max ranging from 280 to 780 nmol sulfite mg(-1) min(-1). The catalytic efficiency with PAPS as substrate is higher by a factor of 10 (K-cat/K-m 2.7 x 10(4)- 3.6 x 10(4) liter mol(-1) s(.)(-1) B. subtilis SNR contains one 4Fe-4S cluster per polypeptide chain. SNR activity and color were lost rapidly upon exposure to air or upon dilution. Mossbauer and absorption spectroscopy revealed that the enzyme contained a 4Fe-4S cluster when isolated, but degradation of the 4Fe-4S cluster produced an inactive intermediate with spectral properties of a 2Fe-2S cluster. Activity and spectral properties of the 4Fe-4S cluster were restored by preincubation of SNR with the iron-sulfur cluster-assembling proteins IscA1 and IscS. Reconstitution of the 4Fe-4S cluster of SNR did not affect the reductive capacity for PAPS or APS. The interconversion of the clusters is thought to serve as oxygen-sensitive switch that suppresses SO3 formation under aerobiosis.
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页码:7850 / 7855
页数:6
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