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Complementary DNA cloning and characterization of ferredoxin localized in bundle-sheath cells of maize leaves.

Authors :
Matsumura, T
Kimata-Ariga, Y
Sakakibara, H
Sugiyama, T
Murata, H
Takao, T
Shimonishi, Y
Hase, T
Source :
Plant Physiology; February 1999, Vol. 119 Issue: 2 p481-488, 8p
Publication Year :
1999

Abstract

In maize (Zea mays L.) two leaf-specific ferredoxin (Fd) isoproteins, Fd I and Fd II, are distributed differentially in mesophyll and bundle-sheath cells. A novel cDNA encoding the precursor of Fd II (pFD2) was isolated by heterologous hybridization using a cDNA for Fd I (pFD1) as a probe. The assignment of the cDNAs to the Fds was verified by capillary liquid-chromatography/electrospray ionization-mass spectrometry. RNA-blot analysis demonstrated that transcripts for Fd I and Fd II accumulated specifically in mesophyll and bundle-sheath cells, respectively. The mature regions of pFD1 and pFD2 were expressed in Escherichia coli as functional Fds. Fd I and Fd II had similar redox potentials of -423 and -406 mV, respectively, but the Km value of Fd-NADP+ reductase for Fd II was about 3-fold larger than that for Fd I. Asparagine at position 65 of Fd II is a unique residue compared with Fd I and other Fds from various plants, which have aspartic acid or glutamic acid at the corresponding position as an electrostatic interaction site with Fd-NADP+ reductase. Substitution of asparagine-65 with aspartic acid increased the affinity of Fd II with Fd-NADP+ reductase to a level comparable to that of Fd I. These structural and functional differences of Fd I and Fd II may be related to their cell-specific expression in the leaves of a C4 plant.

Details

Language :
English
ISSN :
00320889 and 15322548
Volume :
119
Issue :
2
Database :
Supplemental Index
Journal :
Plant Physiology
Publication Type :
Periodical
Accession number :
ejs57114188
Full Text :
https://doi.org/10.1104/pp.119.2.481