Extracellular-superoxide dismutase (EC-SOD) levels in sera divide into two discontinuous groups: a low-level group below 400 ng/ml and a high-level group above 400 ng/ml [Adachi, Nakamura, Yamada, Futenma, Kato and Hirano (1994) Clin. Chim. Acta 229, 123-131]. Molecular genetic studies have shown that the donors in the high-level group have a single base substitution generating the exchange of glycine for arginine-213 (R213G) in the heparin-binding domain of EC-SOD [Sandström, Nilsson, Karlsson and Marklund (1994) J. Biol. Chem. 269, 19163-19166; Yamada, Yamada, Adachi, Goto, Ogasawara, Futenma, Kitano, Hirano and Kato (1995) Jpn. J. Hum. Genet. 40, 177-184]. The serum EC-SOD level in homozygote subjects was significantly higher than that in heterozygotes and in normal subjects. Serum EC-SOD from heterozygotes and homozygotes had equally decreased affinity for heparin, as judged by heparin-HPLC, as compared with that from normal donors. This result suggests that the serum EC-SOD in heterozygotes was mainly composed of the mutant form which has reduced heparin affinity. On the other hand, fibroblast cells derived from heterozygote subjects generated mRNA of both normal and mutant EC-SOD (m-EC-SOD), and expressed the corresponding proteins. EC-SOD is a tetrameric enzyme, and in heterozygote donors would be heterogeneous with regard to the constitution of normal and mutant subunits. The enzyme form consisting of only mutant subunits, the form with the weakest heparin affinity, can be preferentially driven out to the plasma phase, because EC-SOD in the vasculature exists in equilibrium between plasma and the endothelial cell surface. The binding of m-EC-SOD to bovine aortic endothelial cells was about 50-fold less than that of normal EC-SOD. This result suggests that the binding of m-EC-SOD to vascular endothelial cells is much decreased in vivo, which causes a high level of serum EC-SOD.
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January 1996
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Research Article|
January 01 1996
Substitution of glycine for arginine-213 in extracellular-superoxide dismutase impairs affinity for heparin and endothelial cell surface Available to Purchase
Tetsuo ADACHI;
Tetsuo ADACHI
*Department of Pharmaceutics, Gifu Pharmaceutical University, Gifu 502, Japan
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Harutaka YAMADA;
Harutaka YAMADA
†First Department of Internal Medicine, Aichi Medical University, Aichi 480-11, Japan
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Yasukazu YAMADA;
Yasukazu YAMADA
‡Department of Genetics, Institute for Developmental Research, Aichi Prefectural Colony, Kasugai 480-03, Japan
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Naoaki MORIHARA;
Naoaki MORIHARA
*Department of Pharmaceutics, Gifu Pharmaceutical University, Gifu 502, Japan
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Naoya YAMAZAKI;
Naoya YAMAZAKI
*Department of Pharmaceutics, Gifu Pharmaceutical University, Gifu 502, Japan
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Takaya MURAKAMI;
Takaya MURAKAMI
*Department of Pharmaceutics, Gifu Pharmaceutical University, Gifu 502, Japan
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Arao FUTENMA;
Arao FUTENMA
†First Department of Internal Medicine, Aichi Medical University, Aichi 480-11, Japan
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Katsumi KATO;
Katsumi KATO
†First Department of Internal Medicine, Aichi Medical University, Aichi 480-11, Japan
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Kazuyuki HIRANO
Kazuyuki HIRANO
§
*Department of Pharmaceutics, Gifu Pharmaceutical University, Gifu 502, Japan
§To whom correspondence should be addressed.
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Publisher: Portland Press Ltd
Received:
February 14 1995
Revision Received:
August 21 1995
Accepted:
September 06 1995
Online ISSN: 1470-8728
Print ISSN: 0264-6021
The Biochemical Society, London © 1996
1996
Biochem J (1996) 313 (1): 235–239.
Article history
Received:
February 14 1995
Revision Received:
August 21 1995
Accepted:
September 06 1995
Citation
Tetsuo ADACHI, Harutaka YAMADA, Yasukazu YAMADA, Naoaki MORIHARA, Naoya YAMAZAKI, Takaya MURAKAMI, Arao FUTENMA, Katsumi KATO, Kazuyuki HIRANO; Substitution of glycine for arginine-213 in extracellular-superoxide dismutase impairs affinity for heparin and endothelial cell surface. Biochem J 1 January 1996; 313 (1): 235–239. doi: https://doi.org/10.1042/bj3130235
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