Distinct forms of ferredoxin - NADP+ reductase are expressed in photosynthetic and nonphotosynthetic plant tissues. Both enzymes catalyze electron transfer between NADP(H) and ferredoxin; whereas in leaves the enzyme transfers reducing equivalents from photoreduced ferredoxin to NADP+ in photosynthesis, in roots it has the opposite physiological role, reducing ferredoxin at the expense of NADPH mainly for use in nitrate assimilation. Here, structural and kinetic properties of a nonphotosynthetic isoform were analyzed to define characteristics that may be related to tissue-specific function. Compared with spinach leaf ferredoxin - NADP+ reductase, the recombinant corn root isoform showed a slightly altered absorption spectrum, a higher pI, a >30-fold higher affinity for NADP+, greater susceptibility to limited proteolysis, and an ∼20 mV more positive redox potential. The 1.7 Å resolution crystal structure is very similar to the structures of ferredoxin - NADP+ reductases from photosynthetic tissues. Four distinct structural features of this root ferredoxin - NADP+ reductases are an alternate conformation of the bound FAD molecule, an alternate path for the amino-terminal extension, a disulfide bond in the FAD-binding domain, and changes in the surface that binds ferredoxin.

Biochemical and crystallographyc characterization of ferredoxin-NADP+ reductase from nonphotosynthetic tissues / A. Aliverti, R. Faber, C.M. Finnerty, C. Ferioli, V. Pandini, A. Negri, P.A. Karplus, G.Zanetti. - In: BIOCHEMISTRY. - ISSN 0006-2960. - 40:48(2001), pp. 14501-14508.

Biochemical and crystallographyc characterization of ferredoxin-NADP+ reductase from nonphotosynthetic tissues

A. Aliverti
Primo
;
V. Pandini;A. Negri;
2001

Abstract

Distinct forms of ferredoxin - NADP+ reductase are expressed in photosynthetic and nonphotosynthetic plant tissues. Both enzymes catalyze electron transfer between NADP(H) and ferredoxin; whereas in leaves the enzyme transfers reducing equivalents from photoreduced ferredoxin to NADP+ in photosynthesis, in roots it has the opposite physiological role, reducing ferredoxin at the expense of NADPH mainly for use in nitrate assimilation. Here, structural and kinetic properties of a nonphotosynthetic isoform were analyzed to define characteristics that may be related to tissue-specific function. Compared with spinach leaf ferredoxin - NADP+ reductase, the recombinant corn root isoform showed a slightly altered absorption spectrum, a higher pI, a >30-fold higher affinity for NADP+, greater susceptibility to limited proteolysis, and an ∼20 mV more positive redox potential. The 1.7 Å resolution crystal structure is very similar to the structures of ferredoxin - NADP+ reductases from photosynthetic tissues. Four distinct structural features of this root ferredoxin - NADP+ reductases are an alternate conformation of the bound FAD molecule, an alternate path for the amino-terminal extension, a disulfide bond in the FAD-binding domain, and changes in the surface that binds ferredoxin.
Settore BIO/10 - Biochimica
2001
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/182620
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