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牛糖巨肽促进长双歧杆菌亚种婴儿生长及其基因表达的调控。

Bovine glycomacropeptide promotes the growth of Bifidobacterium longum ssp. infantis and modulates its gene expression.

机构信息

Teagasc Food Research Centre, Moorepark, Fermoy, P61C996, Co. Cork, Ireland; Advanced Glycoscience Research Cluster, National Centre for Biomedical Engineering Science, National University of Ireland Galway, H91TK33 Galway, Ireland.

Department of Microbiology, University College Cork, T12K8AF Cork, Ireland.

出版信息

J Dairy Sci. 2018 Aug;101(8):6730-6741. doi: 10.3168/jds.2018-14499. Epub 2018 May 24.

Abstract

Bovine milk glycomacropeptide (GMP) is derived from κ-casein, with exclusively o-linked glycosylation. Glycomacropeptide promoted the growth of Bifidobacterium longum ssp. infantis in a concentration-dependent manner, and this activity was lost following periodate treatment of the GMP (GMP-P), which disables biological recognition of the conjugated oligosaccharides. Transcriptional analysis of B. longum ssp. infantis following exposure to GMP revealed a substantial response to GMP relative to bacteria treated with GMP-P, with a greater number of differentially expressed transcripts and larger fold changes versus the control. Therefore, stimulation of B. longum ssp. infantis growth by GMP is intrinsically linked to the peptide's O-linked glycosylation. The pool of differentially expressed transcripts included 2 glycoside hydrolase (family 25) genes, which were substantially upregulated following exposure to GMP, but not GMP-P. These GH25 genes were present in duplicated genomic islands that also contained genes encoding fibronectin type III binding domain proteins and numerous phage-related proteins, all of which were also upregulated. Homologs of this genomic arrangement were present in other Bifidobacterium species, which suggest it may be a conserved domain for the utilization of glycosylated peptides. This study provides insights into the molecular basis for the prebiotic effect of bovine milk GMP on B. longum ssp. infantis.

摘要

牛乳糖巨肽(GMP)源自κ-酪蛋白,具有独特的 O-连接糖基化。糖巨肽以浓度依赖的方式促进长双歧杆菌亚种。婴儿的生长,而该活性在 GMP 的过碘酸盐处理(GMP-P)后丧失,从而使共轭寡糖的生物识别能力丧失。暴露于 GMP 后,长双歧杆菌亚种。婴儿的转录分析显示,与用 GMP-P 处理的细菌相比,细菌对 GMP 有大量反应,差异表达的转录本数量更多,与对照相比倍数变化更大。因此,GMP 对长双歧杆菌亚种的刺激。婴儿的生长与肽的 O-连接糖基化密切相关。差异表达的转录本库包括 2 个糖苷水解酶(家族 25)基因,这些基因在暴露于 GMP 后大量上调,但在 GMP-P 中没有上调。这些 GH25 基因存在于包含纤维连接蛋白 III 结合域蛋白和许多噬菌体相关蛋白编码基因的重复基因组岛中,所有这些基因也都上调。这种基因组排列的同源物存在于其他双歧杆菌属物种中,这表明它可能是利用糖基化肽的保守结构域。本研究为牛乳 GMP 对长双歧杆菌亚种的益生元作用的分子基础提供了见解。。婴儿。

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