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哺乳动物唾液酸转移酶和岩藻糖基转移酶的结构见解:我们已经走了很长一段路,但仍有很长的路要走。

Structural Insights in Mammalian Sialyltransferases and Fucosyltransferases: We Have Come a Long Way, but It Is Still a Long Way Down.

机构信息

STEMskills Research and Education Lab Private Limited, Faridabad 121002, Haryana, India.

Kaust Catalysis Center, Physical Sciences and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal 23955-6900, Saudi Arabia.

出版信息

Molecules. 2021 Aug 27;26(17):5203. doi: 10.3390/molecules26175203.

Abstract

Mammalian cell surfaces are modified with complex arrays of glycans that play major roles in health and disease. Abnormal glycosylation is a hallmark of cancer; terminal sialic acid and fucose in particular have high levels in tumor cells, with positive implications for malignancy. Increased sialylation and fucosylation are due to the upregulation of a set of sialyltransferases (STs) and fucosyltransferases (FUTs), which are potential drug targets in cancer. In the past, several advances in glycostructural biology have been made with the determination of crystal structures of several important STs and FUTs in mammals. Additionally, how the independent evolution of STs and FUTs occurred with a limited set of global folds and the diverse modular ability of catalytic domains toward substrates has been elucidated. This review highlights advances in the understanding of the structural architecture, substrate binding interactions, and catalysis of STs and FUTs in mammals. While this general understanding is emerging, use of this information to design inhibitors of STs and FUTs will be helpful in providing further insights into their role in the manifestation of cancer and developing targeted therapeutics in cancer.

摘要

哺乳动物细胞表面的聚糖结构复杂,在健康和疾病中发挥着重要作用。异常的糖基化是癌症的一个标志;特别是肿瘤细胞中末端唾液酸和岩藻糖的含量很高,这对恶性肿瘤有积极的影响。糖基化和岩藻糖化的增加是由于一组唾液酸转移酶 (STs) 和岩藻糖转移酶 (FUTs) 的上调,它们是癌症的潜在药物靶点。过去,随着对哺乳动物中几种重要 STs 和 FUTs 的晶体结构的确定,在糖结构生物学方面取得了几项进展。此外,还阐明了 STs 和 FUTs 如何在有限的全球折叠集和催化结构域对底物的多样化模块化能力的独立进化中发生。这篇综述强调了对哺乳动物中 STs 和 FUTs 的结构架构、底物结合相互作用和催化的理解的进展。虽然这种普遍的理解正在出现,但利用这些信息来设计 STs 和 FUTs 的抑制剂将有助于进一步了解它们在癌症表现和开发癌症靶向治疗中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2680/8433944/f1329b41685c/molecules-26-05203-g001.jpg

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