Gross M, Oertel M, Köhrle J
Max Planck Institut für Experimentelle Endokrinologie, Hannover, Federal Republic of Germany.
Biochem J. 1995 Mar 15;306 ( Pt 3)(Pt 3):851-6. doi: 10.1042/bj3060851.
The Se-dependent expression of two selenoproteins, cytosolic glutathione peroxidase (cGPx) and type I iodothyronine-5'-deiodinase (5'DI), was investigated in the porcine epithelial kidney cell line LLC-PK1 in serum-free medium. The selenite-dependent expression of cGPx and 5'DI was revealed by enzyme-activity measurements, affinity labelling of 5'DI, metabolic labelling of proteins with 75Se and steady-state mRNA analysis. The expression of the two enzymes strongly depended on selenite concentrations of the culture medium. cGPx required 2-fold higher selenite levels than 5'DI to reach half-maximal activity. The Se-dependent enzyme activities were approximately paralleled by the corresponding steady-state mRNA levels. The response of the two enzymes to Se supply was further characterized by kinetic Se-depletion and -repletion experiments. Upon removal of medium selenite, cGPx activity decreased exponentially, whereas after an initial decrease over 1-2 days, 5'DI levels completely recovered during a further 2 days. These data indicate a differential Se-dependent regulation of the two selenoproteins, with 5'DI being preferentially supplied with the trace element Se, thus ensuring a continuous cellular capacity for thyroid-hormone activation, even under Se-deficient conditions. The abundant cGPx in cells with sufficient Se supply might serve as a cellular Se store which can be mobilized for the synthesis of more vital selenoproteins such as 5'DI under shortage conditions. Thus, a cellular hierarchy of selenoprotein expression, reflected by different individual regulation mechanisms at the transcriptional and post-transcriptional level, adds to the previously recognized tissue-specific hierarchy of Se retention.
在无血清培养基中,对猪肾上皮细胞系LLC-PK1中两种硒蛋白——胞质谷胱甘肽过氧化物酶(cGPx)和I型碘甲腺原氨酸-5'-脱碘酶(5'DI)的硒依赖性表达进行了研究。通过酶活性测定、5'DI的亲和标记、用75Se对蛋白质进行代谢标记以及稳态mRNA分析,揭示了cGPx和5'DI的亚硒酸盐依赖性表达。这两种酶的表达强烈依赖于培养基中的亚硒酸盐浓度。cGPx达到最大活性一半时所需的亚硒酸盐水平比5'DI高2倍。硒依赖性酶活性与相应的稳态mRNA水平大致平行。通过动力学硒耗竭和补充实验进一步表征了这两种酶对硒供应的反应。去除培养基中的亚硒酸盐后,cGPx活性呈指数下降,而在最初1-2天下降后,5'DI水平在接下来的2天内完全恢复。这些数据表明这两种硒蛋白存在差异的硒依赖性调节,5'DI优先获得微量元素硒供应,从而即使在缺硒条件下也能确保细胞持续具备甲状腺激素激活能力。在硒供应充足的细胞中大量存在的cGPx可能作为细胞硒储存库,在短缺条件下可被调动用于合成更重要的硒蛋白如5'DI。因此,在转录和转录后水平上由不同个体调节机制反映的硒蛋白表达的细胞层次结构,进一步丰富了先前公认的硒保留的组织特异性层次结构。