Holmes E H, Yen T Y, Thomas S, Joshi R, Nguyen A, Long T, Gallet F, Maftah A, Julien R, Macher B A
Department of Cell Surface Biochemistry, Molecular Medicine, Northwest Hospital, Seattle, Washington 98134, USA.
J Biol Chem. 2000 Aug 11;275(32):24237-45. doi: 10.1074/jbc.M000888200.
Human alpha1,3 fucosyltransferases (FucTs) contain four highly conserved cysteine (Cys) residues, in addition to a free Cys residue that lies near the binding site for GDP-fucose (Holmes, E. H., Xu, Z. , Sherwood, A. L., and Macher, B. A. (1995) J. Biol. Chem. 270, 8145-8151). The participation of the highly conserved Cys residues in disulfide bonds and their functional significance were characterized by mass spectrometry (MS) analyses and site-directed mutagenesis, respectively. Among the human FucTs is a subset of enzymes (FucT III, V, and VI) having highly homologous sequences, especially in the catalytic domain, and Cys residues in FucT III and V were characterized. The amino acid sequence of FucT III was characterized. Peptides containing the four conserved Cys residues were detected after reduction and alkylation, and found to be involved in disulfide bonds. The disulfide bond pattern was characterized by multiple stage MS analysis and the use of Glu-C protease and MS/MS analysis. Disulfide bonds in FucT III occur between Cys residues (Cys(81) to Cys(338) and Cys(91) to Cys(341)) at the N and C termini of the catalytic domain, bringing these ends close together in space. Mutagenesis of highly conserved Cys residues to Ser in FucT V resulted in proteins lacking enzymatic activity. Three of the four mutants have molecular weights similar to wild type enzyme and maintained an ability to bind GDP, whereas the other (Cys(104)) produced a series of lower molecular weight bands when characterized by Western blot analysis, and did not bind GDP. FucTs have highly conserved, potential N-linked sites, and our mass spectrometry analyses demonstrated that both N-linked sites are modified with oligosaccharides.
人α1,3岩藻糖基转移酶(FucTs)除了在GDP-岩藻糖结合位点附近有一个游离半胱氨酸残基外,还含有四个高度保守的半胱氨酸(Cys)残基(霍姆斯,E.H.,徐,Z.,舍伍德,A.L.,和马赫,B.A.(1995年)《生物化学杂志》270,8145 - 8151)。高度保守的Cys残基在二硫键中的参与情况及其功能意义分别通过质谱(MS)分析和定点诱变进行了表征。在人FucTs中,有一组酶(FucT III、V和VI)具有高度同源的序列,尤其是在催化结构域,并且对FucT III和V中的Cys残基进行了表征。对FucT III的氨基酸序列进行了表征。在还原和烷基化后检测到含有四个保守Cys残基的肽段,并发现它们参与二硫键的形成。通过多级MS分析以及使用Glu-C蛋白酶和MS/MS分析对二硫键模式进行了表征。FucT III中的二硫键在催化结构域N端和C端的Cys残基(Cys(81)与Cys(338)以及Cys(91)与Cys(341))之间形成,使这些末端在空间上靠近。将FucT V中高度保守的Cys残基突变为Ser导致蛋白质缺乏酶活性。四个突变体中的三个具有与野生型酶相似的分子量,并保持了结合GDP的能力,而另一个(Cys(104))通过蛋白质免疫印迹分析表征时产生了一系列较低分子量的条带,并且不结合GDP。FucTs具有高度保守的潜在N-糖基化位点,并且我们的质谱分析表明两个N-糖基化位点都被寡糖修饰。