Vernet P, Rock E, Mazur A, Rayssiguier Y, Dufaure J P, Drevet J R
Reproduction & Developpement, Laboratoire de Biologie Cellulaire, Université Blaise Pascal, CNRS UMR 6547 - GEEM, Aubière Cedex, France.
Mol Reprod Dev. 1999 Dec;54(4):362-70. doi: 10.1002/(SICI)1098-2795(199912)54:4<362::AID-MRD6>3.0.CO;2-#.
We have previously characterized and cloned a secreted sperm-bound selenium-independent glutathione peroxidase protein (GPX5), the expression of which was found to be restricted to the mouse caput epididymidis. Because of the lack of selenium (Se) in the active site of this enzyme, unlike the other animal GPXs characterized to date, it was suspected that GPX5 does not function in the epididymis as a true glutathione peroxidase in vivo. In the present report, following dietary selenium deprivation which is known to reduce antioxidant defenses and favor oxidative stress in relation with depressed Se-dependent GPX activities, we show that the epididymis is still efficiently protected against increasing peroxidative conditions. In this model, the caput epididymides of selenium-deficient animals showed a limited production of lipid peroxides, a total GPX activity which was not dramatically affected by the shortage in selenium availability and an increase in GPX5 mRNA and protein levels. Altogether, these data strongly suggest that the selenium-independent GPX5 could function as a back-up system for Se-dependent GPXs.
我们之前已对一种分泌型精子结合的非硒依赖性谷胱甘肽过氧化物酶蛋白(GPX5)进行了表征和克隆,发现其表达仅限于小鼠附睾头。由于该酶的活性位点缺乏硒(Se),与迄今为止已表征的其他动物GPX不同,有人怀疑GPX5在附睾中并非作为真正的谷胱甘肽过氧化物酶在体内发挥作用。在本报告中,已知饮食中缺硒会降低抗氧化防御能力,并因硒依赖性GPX活性降低而导致氧化应激增加,在此情况下,我们发现附睾仍能有效抵御日益增加的过氧化条件。在该模型中,缺硒动物的附睾头脂质过氧化物生成量有限,总GPX活性并未因硒供应短缺而受到显著影响,且GPX5 mRNA和蛋白水平有所增加。总之,这些数据有力地表明,非硒依赖性的GPX5可能作为硒依赖性GPX的备用系统发挥作用。