ROLES OF ATP AND NADPH IN FORMATION OF THE FE-S CLUSTER OF SPINACH FERREDOXIN

被引:28
|
作者
TAKAHASHI, Y
MITSUI, A
FUJITA, Y
MATSUBARA, H
机构
[1] Department of Biology, Faculty of Science, Osaka University, Toyonaka
[2] Basic Research Laboratory, Ajinomoto Co., Ltd., Kawasaki-ku, Kawasaki 210, Suzuki-cho
关键词
D O I
10.1104/pp.95.1.104
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Ferredoxin (Fd) in higher plants is encoded by a nuclear gene, synthesized in the cytoplasm as a larger precursor, and imported into the chloroplast, where it is proteolytically processed, and assembled with the [2Fe-2S] cluster. The final step in the biosynthetic pathway of Fd can be analyzed by a reconstitution system composed of isolated chloroplasts and [S-35]cysteine, in which [S-35]sulfide and iron are incorporated into Fd to build up the S-35-labeled Fe-S cluster. Although a lysed chloroplast system shows obligate requirements for ATP and NADPH, in vitro chemical reconstitution of the Fe-S cluster is generally thought to be energy-independent. The present study investigated whether ATP and NADPH in the chloroplast system of spinach (Spinacia oleracea) are involved in the supply of [S-35]sulfide or iron, or in Fe-S cluster formation itself. [S-35]sulfide was liberated from [S-35]cysteine in an NADPH-dependent manner, whereas ATP was not necessary for this process. This desulfhydration of [S-35]cysteine occurred before the formation of the S-35-labeled Fe-S cluster, and the amount of radioactivity in [S-35]sulfide was greater than that in S-35-labeled holo-Fd by a factor of more than 20. Addition of nonradioactive sulfide (Na2S) inhibited competitively formation of the S-35-labeled Fe-S cluster along with the addition of nonradioactive cysteine, indicating that some of the inorganic sulfide released from cysteine is incorporated in the Fe-S cluster of Fd. ATP hydrolysis was not involved in the production of inorganic sulfide or in the supply of iron for assembly into the Fe-S cluster. However, ATP-dependent Fe-S cluster formation was observed even in the presence of sufficient amounts of [S-35]sulfide and iron. These results suggest a novel type of ATP-dependent in vivo Fe-S cluster formation that is distinct from in vitro chemical reconstitution. The implications of these results for the possible mechanisms of ATP-dependent Fe-S cluster formation are discussed.
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页码:104 / 110
页数:7
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