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大鼠肝脏金属硫蛋白的体外降解

Degradation of rat liver metallothioneins in vitro.

作者信息

Feldman S L, Failla M L, Cousins R J

出版信息

Biochim Biophys Acta. 1978 Dec 18;544(3):638-46. doi: 10.1016/0304-4165(78)90338-0.

Abstract

The degradation of zinc and cadmium-induced hepatic metallothionineins was investigated in vitro. Both zinc-thionein and cadmium-thionein were labeled in vivo with [35S]cystine. The labeled proteins were isolated and purified by gel filtration and DEAE-ion exchange chromatography. Purified zinc[35S]thionein and cadmium-[35S]thionein were incubated with trypsin, chymotrypsin and pronase for varying times up to 24 h. The rate of degradation of zinc-thionein was twice that of cadmium-thionein when the proteins were incubated with trypsin. Virtually no digestion occurred when the proteins were incubated with chymotrypsin, whereas the rates of degradation were about equal when they were incubated with pronase. In contrast, degradation of zinc-thionein was twice that observed with cadmium-thionein when the proteins were incubated at pH 5.0 with a purified lysosomal extract. Degradation of these proteins by the lysosomal proteases was 77 and 46% within 3 h for zinc-thionein and cadmium-thionein, respectively. Thionein, the metal-free form of metallothionein, was degraded extremely rapidly by both neutral and lysosomal proteases. Chromatography of the digestion products on Sephadex G-25 demonstrated that all three forms of metallothionein were degraded to species of approximately 100-300 daltons. These data indicate that metals stabilize thionein polypeptides and suggest that the degradation of metallothionein in vivo is regulated in part by the species of metal bound.

摘要

体外研究了锌和镉诱导的肝脏金属硫蛋白的降解情况。锌硫蛋白和镉硫蛋白均在体内用[35S]胱氨酸进行标记。标记后的蛋白质通过凝胶过滤和DEAE离子交换色谱法进行分离和纯化。将纯化后的锌[35S]硫蛋白和镉[35S]硫蛋白与胰蛋白酶、糜蛋白酶和链霉蛋白酶一起孵育不同时间,最长达24小时。当蛋白质与胰蛋白酶孵育时,锌硫蛋白的降解速率是镉硫蛋白的两倍。当蛋白质与糜蛋白酶孵育时几乎没有发生消化,而当它们与链霉蛋白酶孵育时降解速率大致相等。相比之下,当蛋白质在pH 5.0条件下与纯化的溶酶体提取物一起孵育时,锌硫蛋白的降解速率是镉硫蛋白的两倍。溶酶体蛋白酶对这些蛋白质的降解在3小时内,锌硫蛋白和镉硫蛋白分别为77%和46%。硫蛋白,即金属硫蛋白的无金属形式,被中性和溶酶体蛋白酶极快速地降解。消化产物在Sephadex G - 25上的色谱分析表明,所有三种形式的金属硫蛋白都被降解为约100 - 300道尔顿的物质。这些数据表明金属可稳定硫蛋白多肽,并提示体内金属硫蛋白的降解部分受所结合金属种类的调控。

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