Department of Chemistry, Functional Glycobiology Program, University of California Davis. One Shields Ave, Davis, California 95616, USA.
Mol Cell Proteomics. 2012 Jun;11(6):M111.015248. doi: 10.1074/mcp.M111.015248. Epub 2012 Jan 19.
Human milk lactoferrin (hmLF) is the most abundant glycoprotein present in human milk and displays a broad range of protective functions in the gut of newborn infants. hmLF is N-glycosylated, but little is known about the lactation stage-related development of the glycosylation phenotype. hmLF glycosylation from milk samples from five donors during the first 10 weeks of lactation was assessed and observed to be more diverse than previously reported. During this period dynamic changes in glycosylation were observed corresponding to a decrease in glycosylation in the second week followed by an increase in total glycosylation as well as higher order fucosylation thereafter. Gene expression analysis was performed in milk somatic cells from a sixth subject. It was found that fucosyltransferase expression increased during entire period, whereas expression of genes for the oligosaccharyl transferase complex decreased in the second week. The effect of hmLF glycosylation was examined for the protein's ability to affect bacterial binding to epithelial cells. hmLF significantly inhibited pathogen adhesion and purified hmLF glycans significantly reduced Salmonella invasion of colonic epithelial cells to levels associated with non-invasive deletion mutants. This study indicates that hmLF glycosylation is tightly regulated by gene expression and that glyco-variation is involved in modulating pathogen association.
人乳乳铁蛋白(hmLF)是母乳中含量最丰富的糖蛋白,在新生儿肠道中显示出广泛的保护功能。hmLF 是 N-糖基化的,但关于与泌乳阶段相关的糖基化表型的发展知之甚少。对 5 位供体在泌乳的前 10 周的乳样中的 hmLF 糖基化进行评估,发现其比之前报道的更为多样化。在此期间,观察到糖基化的动态变化,第二周的糖基化减少,随后总糖基化增加,随后出现更高阶的岩藻糖基化。对第六位供体的乳体细胞进行基因表达分析。结果发现,岩藻糖基转移酶的表达在整个时期增加,而寡糖基转移酶复合物的基因表达在第二周减少。研究了 hmLF 糖基化对其影响细菌与上皮细胞结合的能力。hmLF 显著抑制病原体的黏附,并且纯化的 hmLF 聚糖显著降低了沙门氏菌对结肠上皮细胞的侵袭,使其与非侵袭性缺失突变体相关的水平降低。本研究表明,hmLF 糖基化受基因表达的严格调控,而糖基化的变化参与调节病原体的关联。