Ma Shuguang, Hill Kristina E, Burk Raymond F, Caprioli Richard M
Mass Spectrometry Research Center, Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, Tennessee 37232, USA.
Biochemistry. 2003 Aug 19;42(32):9703-11. doi: 10.1021/bi0346300.
Rat selenoprotein P is an extracellular glycoprotein of 366 amino acid residues that is rich in cysteine and selenocysteine. Plasma contains four isoforms that differ principally by length at the C-terminal end. Mass spectrometry was used to identify sites of glycosylation on the full-length protein. Of the potential N-glycosylation sites, three located at residues 64, 155, and 169 were occupied, while the two at residues 351 and 356 were not occupied. Threonine 346 was variably O-glycosylated. Thus, full-length selenoprotein P is both N- and O-glycosylated. The shortest isoform of selenoprotein P, which terminates at residue 244, was analyzed for selenide-sulfide and disulfide linkages. In this isoform, a single selenocysteine and seven cysteines are present. Mass spectrometric analysis indicated that a selenide-sulfide bond exists between Sec40 and Cys43. Two disulfides were also detected as Cys149-Cys167 and Cys153-Cys156. The finding of a selenide-sulfide bond in the shortest isoform is compatible with a redox function of this pair that might be analogous to the selenol-thiol pair near the C terminus of animal thioredoxin reductase. The disulfide formed by Cys153-Cys156 also has some characteristics of a redox active pair.
大鼠硒蛋白P是一种由366个氨基酸残基组成的细胞外糖蛋白,富含半胱氨酸和硒代半胱氨酸。血浆中含有四种主要在C末端长度不同的异构体。采用质谱法鉴定全长蛋白上的糖基化位点。在潜在的N-糖基化位点中,位于第64、155和169位残基的三个位点被占据,而位于第351和356位残基的两个位点未被占据。苏氨酸346存在可变的O-糖基化。因此,全长硒蛋白P同时进行N-糖基化和O-糖基化。对终止于第244位残基的最短异构体形式的硒蛋白P进行了硒化物-硫化物和二硫键分析。在这种异构体中,存在一个硒代半胱氨酸和七个半胱氨酸。质谱分析表明,Sec40和Cys43之间存在硒化物-硫化物键。还检测到两个二硫键,分别为Cys149-Cys167和Cys153-Cys156。在最短异构体中发现硒化物-硫化物键与该对的氧化还原功能相符,该功能可能类似于动物硫氧还蛋白还原酶C末端附近的硒醇-硫醇对。由Cys153-Cys156形成的二硫键也具有一些氧化还原活性对的特征。