Purification and characterization of chloroplast dehydroascorbate reductase from spinach leaves

被引:57
作者
Shimaoka, T [1 ]
Yokota, A [1 ]
Miyake, C [1 ]
机构
[1] Nara Inst Sci & Technol, Grad Sch Biol Sci, Nara 6300101, Japan
关键词
ascorbate; chloroplast; dehydroascorbate reductase; oxidative stress; spinach;
D O I
10.1093/pcp/pcd035
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Green leaves of plants require the high-level activity that can regenerate ascorbate during photosynthesis, One of such enzyme is dehydroascorbate reductase (DHAR), but the molecular and enzymological properties of the enzyme remain to be fully characterized. In this study, we showed that two major DHAR existed in spinach leaves. The two DHARs occupied at least over 90% of total DHAR activity. The amount of the two DHARS was almost the same. We purified both DHARs from spinach leaves. One form of DHAR originated in chloroplasts; the other occurred in the subcellular compartment other than chloroplasts, The chloroplast DHAR had K-m values of 70 muM and 1.1 mM for dehydroascorbate and reduced glutathione, respectively, The specific activity of the purified enzyme corresponded to 360 mu mol of ascorbate formed per milligram of protein per minute. These properties were quite different from those of trypsin inhibitor, which has been reported to be the plastid DHAR. The other DHAR had the very similar properties to those of chloroplast DHAR. Chloroplast and the other DHARs functioned as a monomer with molecular masses of 26 kDa and 25 kDa, respectively. cDNA for the chloroplast DHAR was cloned with the determined amino-terminal amino acid sequence, The primary sequence predicted from the cDNA. included the plastid-targeting sequence, Finally, the significance of chloroplast DHAR in the regeneration of ascorbate is discussed.
引用
收藏
页码:1110 / 1118
页数:9
相关论文
共 24 条
[1]   The water-water cycle in chloroplasts: Scavenging of active oxygens and dissipation of excess photons [J].
Asada, K .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1999, 50 :601-639
[2]  
Asada K., 1996, Photosynthesis and the environment. Advances in photosynthesis and respiration, P123, DOI DOI 10.1007/0-306-48135-9_5
[3]  
Ausbel F. M., 1987, CURRENT PROTOCOLS MO
[4]   GENOMIC SEQUENCING [J].
CHURCH, GM ;
GILBERT, W .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1984, 81 (07) :1991-1995
[5]   DEHYDROASCORBATE REDUCTASE FROM POTATO-TUBERS [J].
DIPIERRO, S ;
BORRACCINO, G .
PHYTOCHEMISTRY, 1991, 30 (02) :427-429
[6]   ChloroP, a neural network-based method for predicting chloroplast transit peptides and their cleavage sites [J].
Emanuelsson, O ;
Nielsen, H ;
Von Heijne, G .
PROTEIN SCIENCE, 1999, 8 (05) :978-984
[7]   MEASUREMENT OF THE ASCORBATE CONTENT OF SPINACH LEAF PROTOPLASTS AND CHLOROPLASTS DURING ILLUMINATION [J].
FOYER, C ;
ROWELL, J ;
WALKER, D .
PLANTA, 1983, 157 (03) :239-244
[8]   PURIFICATION AND PROPERTIES OF DEHYDROASCORBATE REDUCTASE FROM SPINACH LEAVES [J].
FOYER, CH ;
HALLIWELL, B .
PHYTOCHEMISTRY, 1977, 16 (09) :1347-1350
[9]  
HOSSAIN MA, 1984, PLANT CELL PHYSIOL, V25, P85
[10]   LIGHT-DEPENDENT REDUCTION OF DEHYDROASCORBATE BY RUPTURED PEA-CHLOROPLASTS [J].
JABLONSKI, PP ;
ANDERSON, JW .
PLANT PHYSIOLOGY, 1981, 67 (06) :1239-1244