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唾液酸酶作为生物工程细胞表面的调节剂。

Sialidases as regulators of bioengineered cellular surfaces.

作者信息

Zamora Cristina Y, Ryan Matthew J, d'Alarcao Marc, Kumar Krishna

机构信息

Department of Chemistry, Tufts University, Medford, MA, USA.

Department of Chemistry, San José State University, San José, CA, USA.

出版信息

Glycobiology. 2015 Jul;25(7):784-91. doi: 10.1093/glycob/cwv019. Epub 2015 Mar 20.

Abstract

Human sialidases (NEUs) catalyze the removal of N-acetyl neuraminic acids from the glycome of the cell and regulate a diverse repertoire of nominal cellular functions, such as cell signaling and adhesion. A greater understanding of their substrate permissivity is of interest in order to discern their physiological functions in disease states and in the design of specific and effective small molecule inhibitors. Towards this, we have synthesized soluble fluorogenic reporters of mammalian sialidase activity bearing unnatural sialic acids commonly incorporated into the cellular glycocalyx via metabolic glycoengineering. We found cell-surface sialidases in Jurkat capable of cleaving unnatural sialic acids with differential activities toward a variety of R groups on neuraminic acid. In addition, we observed modulated structure-activity relationships when cell-surface sialidases were presented glycans with unnatural bulky, hydrophobic or fluorinated moieties incorporated directly via glycoengineering. Our results confirm the importance of cell-surface sialidases in glycoengineering incorporation data. We demonstrate the flexibility of human NEUs toward derivatized sugars and highlight the importance of native glycan presentation to sialidase binding and activity. These results stand to inform not only metabolic glycoengineering efforts but also inhibitor design.

摘要

人类唾液酸酶(NEUs)催化从细胞糖组中去除N-乙酰神经氨酸,并调节多种重要的细胞功能,如细胞信号传导和黏附。为了在疾病状态下识别它们的生理功能以及设计特异性和有效的小分子抑制剂,深入了解它们的底物允许性很有意义。为此,我们合成了携带通过代谢糖工程通常掺入细胞糖萼中的非天然唾液酸的哺乳动物唾液酸酶活性的可溶性荧光报告分子。我们发现Jurkat细胞表面的唾液酸酶能够切割非天然唾液酸,对神经氨酸上的各种R基团具有不同的活性。此外,当通过糖工程直接掺入具有非天然庞大、疏水或氟化部分的聚糖时,我们观察到细胞表面唾液酸酶的结构-活性关系受到调节。我们的结果证实了细胞表面唾液酸酶在糖工程掺入数据中的重要性。我们证明了人类NEUs对衍生化糖的灵活性,并强调了天然聚糖呈递给唾液酸酶结合和活性的重要性。这些结果不仅有助于代谢糖工程研究,也有助于抑制剂设计。

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本文引用的文献

1
Structural basis for substrate specificity of mammalian neuraminidases.哺乳动物神经氨酸酶底物特异性的结构基础。
PLoS One. 2014 Sep 15;9(9):e106320. doi: 10.1371/journal.pone.0106320. eCollection 2014.
2
Cross-platform comparison of glycan microarray formats.聚糖微阵列格式的跨平台比较。
Glycobiology. 2014 Jun;24(6):507-17. doi: 10.1093/glycob/cwu019. Epub 2014 Mar 22.

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