Abe Hiroko, Shimma Yoh-ichi, Jigami Yoshifumi
Research Center for Glycoscience, National Institute of Advanced Industrial Science and Technology (aist), Aist Central 6, Tsukuba, Ibaraki 305-8566, Japan.
Glycobiology. 2003 Feb;13(2):87-95. doi: 10.1093/glycob/cwg014. Epub 2002 Nov 26.
A glycosyltransferase was fused to the yeast cell wall protein Pir, which forms the Pir1-4 protein family and is incorporated into the cell wall by an unknown linkage to be displayed at the yeast cell surface. We first expressed the PIR1-HA-gma12+ fusion, in which gma12+ encodes alpha-1,2-galactosyltransferase from the fission yeast Schizosaccharomyces pombe under the Saccharomyces cerevisiae GAPDH promoter. The alpha-1,2-galactosyltransferase activity was detected at the surface of the intact cells that produce Pir1-HA-Gma12 fusion. To further demonstrate sequential oligosaccharide synthesis, two plasmids containing PIR1-HA-KRE2 and PIR2-FLAG-MNN1 fusion genes were constructed in which KRE2 and MNN1 encode alpha-1,2-mannosyltransferase and alpha-1,3-mannosyltransferase from S. cerevisiae, respectively. The intact yeast cells transformed with these two plasmids added mannoses initially with an alpha-1,2 linkage and subsequently with an alpha-1,3 linkage to the alpha-1,2-mannobiose acceptor in the presence of a GDP-mannose donor, demonstrating that Pir1 and Pir2 can be used as anchors to simultaneously immobilize several glycosyltransferases at the yeast cell surface. Based on the high acceptor specificity of glycosyltransferases, we propose a simple in vitro method for oligosaccharide synthesis using the yeast intact cell as a biocatalyst.
一种糖基转移酶与酵母细胞壁蛋白Pir融合,Pir形成Pir1 - 4蛋白家族,并通过未知连接方式整合到细胞壁中,从而展示在酵母细胞表面。我们首先表达了PIR1 - HA - gma12 +融合蛋白,其中gma12 +在酿酒酵母GAPDH启动子控制下编码来自裂殖酵母粟酒裂殖酵母的α - 1,2 - 半乳糖基转移酶。在产生Pir1 - HA - Gma12融合蛋白的完整细胞表面检测到了α - 1,2 - 半乳糖基转移酶活性。为了进一步证明寡糖的顺序合成,构建了两个分别含有PIR1 - HA - KRE2和PIR2 - FLAG - MNN1融合基因的质粒,其中KRE2和MNN1分别编码来自酿酒酵母的α - 1,2 - 甘露糖基转移酶和α - 1,3 - 甘露糖基转移酶。用这两个质粒转化的完整酵母细胞在GDP - 甘露糖供体存在的情况下,首先以α - 1,2连接方式添加甘露糖,随后以α - 1,3连接方式将甘露糖添加到α - 1,2 - 甘露二糖受体上,这表明Pir1和Pir2可以用作锚定物,同时将几种糖基转移酶固定在酵母细胞表面。基于糖基转移酶的高受体特异性,我们提出了一种使用酵母完整细胞作为生物催化剂进行寡糖合成的简单体外方法。