Einspanier R, Krause I, Calvete J J, Töfper-Petersen E, Klostermeyer H, Karg H
Institut für Physiologie, Forschungszentrum für Milch und Lebensmittel-Weihenstephan, Freising, Germany.
FEBS Lett. 1994 May 9;344(1):61-4. doi: 10.1016/0014-5793(94)00362-9.
Acidic seminal fluid protein (aSFP) is a major 13 kDa protein isolated from bull seminal plasma and characterized as a new growth factor which stimulates in vitro cell division and progesterone secretion by ovarian cells. Here, we establish that the four cysteines of oxidized aSFP form two disulfide bridges between nearest-neighbour residues. This pattern is conserved in boar spermadhesins, with which aSFP shares up to 50% amino acid sequence identity, and other proteins of the recently identified CUB domain family. Using isoelectric focusing in combination with sulfhydryl group-specific blotting, the three forms of aSFP were identified as completely oxidized (pI 4.7), partly reduced (pI 4.8) and fully reduced at pI 5.1. These results indicate that native aSFP possesses two pairs of cysteine residues of different reactivity. The observation that aSFP can protect sperm from oxidative damage might be explained by its reduction/oxidation behaviour.
酸性精液蛋白(aSFP)是一种主要的13 kDa蛋白,从公牛精浆中分离得到,其特征为一种新的生长因子,可刺激体外细胞分裂以及卵巢细胞分泌孕酮。在此,我们证实氧化型aSFP的四个半胱氨酸在相邻残基之间形成两个二硫键。这种模式在猪精子黏附素中是保守的,aSFP与猪精子黏附素的氨基酸序列同一性高达50%,并且在最近鉴定出的CUB结构域家族的其他蛋白中也是保守的。通过等电聚焦结合巯基特异性印迹法,aSFP的三种形式被鉴定为完全氧化型(pI 4.7)、部分还原型(pI 4.8)和完全还原型(pI 5.1)。这些结果表明天然aSFP拥有两对反应性不同的半胱氨酸残基。aSFP能够保护精子免受氧化损伤这一观察结果或许可以通过其还原/氧化行为来解释。