Sherwood A L, Nguyen A T, Whitaker J M, Macher B A, Stroud M R, Holmes E H
Division of Cell Surface Biochemistry, Northwest Hospital, Pacific Northwest Cancer Foundation, Seattle, Washington 98125, USA.
J Biol Chem. 1998 Sep 25;273(39):25256-60. doi: 10.1074/jbc.273.39.25256.
Amino acid sequence alignment of human alpha1, 3/4-fucosyltransferases (FucTs) demonstrates that three highly conserved Lys residues are present in the catalytic domain of FucTs III, IV, V, and VI. Two of these sites are conserved in FucT VII, with the third located within the alpha1,3-FucT motif as a conservative change to Arg at position 223. Site-directed mutagenesis experiments were conducted to change Lys255 of FucT V (equivalent to Arg223 of FucT VII) to either Arg255 or Ala255. Enzyme assays demonstrate that the FucT V K255R mutant has a 34-fold lower specific activity than native FucT V and that the K255A mutant is inactive. Site-directed mutagenesis of FucT VII was also conducted to change Arg223 to Lys223 for analysis of the effect on enzyme kinetic parameters. No differences in acceptor specificities or Km values for either substrate were observed between native FucT VII and the R223K mutant; however, the purified R223K mutant enzyme had a 2-fold increased specific activity compared with purified native FucT VII. No change in GDP-fucose-protectable pyridoxal-P/NaBH4 inactivation was observed for native or mutant FucT V or VII, further supporting the absence of involvement of this residue in sugar nucleotide binding. The results indicate that a basic residue in this position is required for enzyme activity, with a Lys residue providing higher intrinsic activity. The lack of influence of this site on substrate binding parameters and its location within the alpha1,3-FucT motif suggest that at least some of the residues within this motif are involved in catalysis rather than substrate binding.
人α1,3/4-岩藻糖基转移酶(FucTs)的氨基酸序列比对表明,FucTs III、IV、V和VI的催化结构域中存在三个高度保守的赖氨酸(Lys)残基。其中两个位点在FucT VII中保守,第三个位点位于α1,3-FucT基序内,在第223位保守地变为精氨酸(Arg)。进行了定点诱变实验,将FucT V的Lys255(相当于FucT VII的Arg223)变为Arg255或Ala255。酶活性测定表明,FucT V K255R突变体的比活性比天然FucT V低34倍,而K255A突变体无活性。还对FucT VII进行了定点诱变,将Arg223变为Lys223,以分析对酶动力学参数的影响。天然FucT VII与R223K突变体之间未观察到底物受体特异性或Km值的差异;然而,纯化的R223K突变体酶的比活性比纯化的天然FucT VII增加了2倍。天然或突变的FucT V或VII在GDP-岩藻糖可保护的吡哆醛-P/NaBH4失活方面未观察到变化,进一步支持该残基不参与糖核苷酸结合。结果表明,该位置的碱性残基是酶活性所必需的,赖氨酸残基具有更高的内在活性。该位点对底物结合参数缺乏影响及其在α1,3-FucT基序内的位置表明,该基序内至少一些残基参与催化而非底物结合。