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聚糖组学分析揭示了对不同细菌病原体引起的细菌性败血症的保守反应。

Glycomic Analysis Reveals a Conserved Response to Bacterial Sepsis Induced by Different Bacterial Pathogens.

机构信息

Biomedical Research Institute, Department of Chemistry, New York University, New York, New York 10003, United States.

SBP Medical Discovery Institute, La Jolla, California 92037, United States.

出版信息

ACS Infect Dis. 2022 May 13;8(5):1075-1085. doi: 10.1021/acsinfecdis.2c00082. Epub 2022 Apr 29.

Abstract

Sepsis is an extreme inflammatory response to infection that occurs in the bloodstream and causes damage throughout the body. Glycosylation is known to play a role in immunity and inflammation, but the role of glycans in sepsis is not well-defined. Herein, we profiled the serum glycomes of experimental mouse sepsis models to identify changes induced by 4 different clinical bacterial pathogens (Gram-positive: and , Gram-negative: and Typhimurium) using our lectin microarray technology. We observed global shifts in the blood sera glycome that were conserved across all four species, regardless of whether they were Gram positive or negative. Bisecting GlcNAc was decreased upon sepsis and a strong increase in core 1/3 -glycans was observed. Lectin blot analysis revealed a high molecular weight protein induced in sepsis by all four bacteria as the major cause of the core 1/3 -glycan shift. Analysis of this band by mass spectrometry identified interalpha-trypsin inhibitor heavy chains (ITIHs) and fibronectin, both of which are associated with human sepsis. Shifts in the glycosylation of these proteins were observed. Overall, our work points toward a common mechanism for bacterially induced sepsis, marked by conserved changes in the glycome.

摘要

败血症是一种发生在血液中的严重感染炎症反应,会导致全身受损。糖基化已知在免疫和炎症中发挥作用,但糖链在败血症中的作用尚未明确。在此,我们使用凝集素微阵列技术对实验性小鼠败血症模型的血清糖组进行了分析,以鉴定 4 种不同临床细菌病原体(革兰氏阳性菌: 和 ,革兰氏阴性菌: 和 )引起的变化。我们观察到所有四种细菌的血液血清糖组都发生了全球变化,无论它们是革兰氏阳性菌还是阴性菌。败血症时双分支 GlcNAc 减少,核心 1/3-聚糖强烈增加。凝集素印迹分析显示,所有四种细菌在败血症中诱导的一种高分子量蛋白质是核心 1/3-聚糖转移的主要原因。通过质谱分析对该条带进行分析,鉴定出了与人类败血症相关的抗胰蛋白酶抑制剂重链(ITIHs)和纤连蛋白。这些蛋白质的糖基化发生了变化。总的来说,我们的工作表明,细菌引起的败血症存在共同的机制,其特征是糖组发生了保守的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1cd/9112329/b88de99939d7/id2c00082_0006.jpg

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