Masada Sayaka, Terasaka Kazuyoshi, Mizukami Hajime
Graduate School of Pharmaceutical Sciences, Nagoya City University, Tanabe-dori 3-1, Nagoya, Japan.
FEBS Lett. 2007 Jun 12;581(14):2605-10. doi: 10.1016/j.febslet.2007.05.002. Epub 2007 May 11.
Curcumin glucosyltransferase (CaUGT2) isolated from cell cultures of Catharanthus roseus exhibits unique substrate specificity. To identify amino acids involved in substrate recognition and catalytic activity of CaUGT2, a combination of domain swapping and site-directed mutagenesis was carried out. Exchange of the PSPG-box of CaUGT2 with that of NtGT1b (a phenolic glucosyltransferase from tobacco) led to complete loss of enzyme activity in the resulting recombinant protein. However, replacement of Arg378 of the NtGT1b PSPG-box with cysteine, the corresponding amino acid in CaUGT2, restored the catalytic activity of the chimeric enzyme. Further site-directed mutagenesis revealed that the size of the amino acid side-chain in that particular site is critical to the catalytic activity of CaUGT2.
从长春花细胞培养物中分离出的姜黄素葡萄糖基转移酶(CaUGT2)表现出独特的底物特异性。为了鉴定参与CaUGT2底物识别和催化活性的氨基酸,进行了结构域交换和定点诱变相结合的实验。将CaUGT2的PSPG盒与NtGT1b(来自烟草的一种酚类葡萄糖基转移酶)的PSPG盒进行交换,导致所得重组蛋白的酶活性完全丧失。然而,将NtGT1b PSPG盒中的Arg378替换为CaUGT2中的对应氨基酸半胱氨酸,恢复了嵌合酶的催化活性。进一步的定点诱变表明,该特定位点氨基酸侧链的大小对CaUGT2的催化活性至关重要。