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一种高通量糖基转移酶抑制分析方法,用于鉴定靶向癌细胞表面修饰中岩藻糖基化的分子。

A High-Throughput Glycosyltransferase Inhibition Assay for Identifying Molecules Targeting Fucosylation in Cancer Cell-Surface Modification.

机构信息

Department of Chemistry and Biochemistry , National Chung-Cheng University , 168 University Road , Min-Hsiung , Chiayi 62102 , Taiwan.

出版信息

ACS Chem Biol. 2019 Apr 19;14(4):715-724. doi: 10.1021/acschembio.8b01123. Epub 2019 Mar 14.

Abstract

In cancers, increased fucosylation (attachment of fucose sugar residues) on cell-surface glycans, resulting from the abnormal upregulation of the expression of specific fucosyltransferase enzymes (FUTs), is one of the most important types of glycan modifications associated with malignancy. Fucosylated glycans on cell surfaces are involved in a multitude of cellular interactions and signal regulation in normal biological processes, as well as in disease. For example, sialyl Lewis is a fucosylated cell-surface glycan that is abnormally abundant in some cancers where it has been implicated in facilitating metastasis, allowing circulating tumor cells to bind to the epithelial tissue within blood vessels and invade into secondary sites by taking advantage of glycan-mediated interactions. To identify inhibitors of FUT enzymes as potential cancer therapeutics, we have developed a novel high-throughput assay that makes use of a fluorogenically labeled oligosaccharide as a probe of fucosylation. This probe, which consists of a 4-methylumbelliferyl glycoside, is recognized and hydrolyzed by specific glycoside hydrolase enzymes to release fluorescent 4-methylumbelliferone, yet when the probe is fucosylated prior to treatment with the glycoside hydrolases, hydrolysis does not occur and no fluorescent signal is produced. We have demonstrated that this assay can be used to measure the inhibition of FUT enzymes by small molecules, because blocking fucosylation will allow glycosidase-catalyzed hydrolysis of the labeled oligosaccharide to produce a fluorescent signal. Employing this assay, we have screened a focused library of small molecules for inhibitors of a human FUT enzyme involved in the synthesis of sialyl Lewis and demonstrated that our approach can be used to identify potent FUT inhibitors from compound libraries in microtiter plate format.

摘要

在癌症中,由于特定岩藻糖基转移酶(FUT)的异常上调表达导致细胞表面聚糖的岩藻糖基化(岩藻糖残基的附着)增加,是与恶性肿瘤相关的最重要的聚糖修饰类型之一。细胞表面的岩藻糖化聚糖参与正常生物学过程以及疾病中多种细胞相互作用和信号调节。例如,唾液酸化路易斯是一种异常丰富的细胞表面糖基化聚糖,在一些癌症中,它被认为有助于促进转移,使循环肿瘤细胞能够利用糖基介导的相互作用与血管内的上皮组织结合并侵入次级部位。为了鉴定 FUT 酶的抑制剂作为潜在的癌症治疗药物,我们开发了一种新颖的高通量测定法,该方法利用荧光标记的寡糖作为岩藻糖基化的探针。该探针由 4-甲基伞形酮糖苷组成,被特定的糖苷水解酶识别和水解,以释放荧光 4-甲基伞形酮,但当探针在与糖苷水解酶处理之前被岩藻糖化时,水解不会发生,并且不会产生荧光信号。我们已经证明,该测定法可用于测量小分子对 FUT 酶的抑制作用,因为阻断岩藻糖基化将允许糖苷酶催化水解标记的寡糖以产生荧光信号。我们使用该测定法筛选了参与合成唾液酸化路易斯的人 FUT 酶的小分子的焦点文库,证明了我们的方法可用于从微量滴定板格式的化合物文库中鉴定出有效的 FUT 抑制剂。

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