Laboratory of Cell Migration and Signaling, Division of Biological and Environmental Sciences and Engineering Division, King Abdullah University of Science and Technology, 4700 KAUST, Thuwal, Jeddah 23955, Saudi Arabia.
Laboratory of Insect Genome Science, Kyushu University Graduate School of Bioresource and Bioenvironmental Sciences, Motooka 744, Nishi-ku, Fukuoka 819-0395, Japan.
Biochemistry. 2020 Oct 6;59(39):3757-3771. doi: 10.1021/acs.biochem.0c00523. Epub 2020 Sep 22.
Recruitment of circulating cells toward target sites is primarily dependent on selectin/ligand adhesive interactions. Glycosyltransferases are involved in the creation of selectin ligands on proteins and lipids. α1,3-Fucosylation is imperative for the creation of selectin ligands, and a number of fucosyltransferases (FTs) can modify terminal lactosamines on cells to create these ligands. One FT, fucosyltransferase VI (FTVI), adds a fucose in an α1,3 configuration to -acetylglucosamine to generate sialyl Lewis X (sLe) epitopes on proteins of live cells and enhances their ability to bind E-selectin. Although a number of recombinant human FTVIs have been purified, apart from limited commercial enzymes, they were not characterized for their activity on live cells. Here we focused on establishing a robust method for producing FTVI that is active on living cells (hematopoietic cells and mesenchymal stromal cells). To this end, we used two expression systems, (silkworm) and (yeast), to produce significant amounts of N-terminally tagged FTVI and demonstrated that these enzymes have superior activity when compared to currently available commercial enzymes that are produced from various expression systems. Overall, we outline a scheme for obtaining large amounts of highly active FTVI that can be used for the application of FTVI in enhancing the engraftment of cells lacking the sLe epitopes.
循环细胞向靶部位的募集主要依赖于选择素/配体黏附相互作用。糖基转移酶参与蛋白质和脂质上选择素配体的形成。α1,3-岩藻糖基化对于选择素配体的形成至关重要,许多岩藻糖基转移酶(FTs)可以修饰细胞上的末端乳糖胺,以产生这些配体。一种 FT,即岩藻糖基转移酶 VI(FTVI),以α1,3 构型将岩藻糖添加到 N-乙酰葡萄糖胺上,在活细胞的蛋白质上生成唾液酸化路易斯 X(sLe)表位,并增强其与 E-选择素的结合能力。尽管已经纯化了许多重组人 FTVI,但除了有限的商业酶外,它们在活细胞上的活性尚未得到表征。在这里,我们专注于建立一种生产在活细胞(造血细胞和间充质基质细胞)上具有活性的 FTVI 的稳健方法。为此,我们使用了两种表达系统,(家蚕)和(酵母),来大量生产 N 端标记的 FTVI,并证明与目前从各种表达系统生产的商业酶相比,这些酶具有更高的活性。总的来说,我们概述了一种获得大量高活性 FTVI 的方案,该方案可用于应用 FTVI 增强缺乏 sLe 表位的细胞的植入。