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Relative zinc-binding capacity of metallothionein in hepatic cytosols of zinc-injected rats.

Shigeru Saito, Yukimi Kojima

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Abstract

In order to determine the zinc-binding capacity of metallothionein in hepatic cytosols of zinc-injected rats, we examined the relationship between zinc contents in cytosols and metallothionein fraction in rat livers. Each rat was injected intraperitoneally once with 0.9% NaCl or zinc (10, 20, 40 or 60 mg zinc/kg b.w.) and was killed 14 h after injection. The distribution profiles of the hepatic cytosols of zinc-injected rats on a Sephadex G-75 column showed that the increased zinc was attributable to the metallothionein and high molecular weight proteins. Our results demonstrated that 63% of the increased zinc in hepatic cytosols of zinc-injected rats was bound to metallothionein and that 23% of the increased zinc was bound to high molecular weight proteins. These results suggest that the mechanisms of zinc accumulation in rat liver are different from those of cadmium accumulation.

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What this paper is about

In order to determine the zinc-binding capacity of metallothionein in hepatic cytosols of zinc-injected rats, we examined the relationship between zinc contents in cytosols and metallothionein fraction in rat livers. Each rat was injected intraperitoneally once with 0.9% NaCl or zinc (10, 20, 40 or 60 mg zinc/kg b.w.) and was killed 14 h after injection. The distribution profiles of the hepatic cytosols of zinc-injected rats on a Sephadex G-75 column showed that the increased zinc was attributable to the metallothionein and high molecular weight proteins. Our results demonstrated that 63% of the increased zinc in hepatic cytosols of zinc-injected rats was bound to metallothionein and that 23% of the increased zinc was bound to high molecular weight proteins. These results suggest that the mechanisms of zinc accumulation in rat liver are different from those of cadmium accumulation.

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Available abstract

In order to determine the zinc-binding capacity of metallothionein in hepatic cytosols of zinc-injected rats, we examined the relationship between zinc contents in cytosols and metallothionein fraction in rat livers. Each rat was injected intraperitoneally once with 0.9% NaCl or zinc (10, 20, 40 or 60 mg zinc/kg b.w.) and was killed 14 h after injection. The distribution profiles of the hepatic cytosols of zinc-injected rats on a Sephadex G-75 column showed that the increased zinc was attributable to the metallothionein and high molecular weight proteins. Our results demonstrated that 63% of the increased zinc in hepatic cytosols of zinc-injected rats was bound to metallothionein and that 23% of the increased zinc was bound to high molecular weight proteins. These results suggest that the mechanisms of zinc accumulation in rat liver are different from those of cadmium accumulation.

Key concepts: Metallothionein, Zinc, Sephadex, Chemistry, Cadmium, Biochemistry, Metalloprotein, Internal medicine

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Relative zinc-binding capacity of metallothionein in hepatic cytosols of zinc-injected rats. — Research Paper | ScholarLens