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Characterization of the O-Glycoproteome of FIavobacterium johnsoniae

机译:约翰逊杆菌O-糖蛋白组的表征

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Flavobacterium johnsoniae is a free-living member of the Bacteroidota phylum that is found in soil and water. It is frequently used as a model species for studying a type of gliding motility dependent on the type IX secretion system (T9SS). O-Glycosylation has been reported in several Bacteroidota species, and the O-glycosyla-tion of S-layer proteins in Tannerella forsythia was shown to be important for certain virulence features. In this study, we characterized the O-glycoproteome of F. johnsoniae and identified 325 O-glycosylation sites within 226 glycoproteins. The structure of the major glycan was found to be a hexasaccharide with the sequence Hex-(Me-dHex)-Me-HexA-Pent-HexA-Me-HexNAcA. Bioinformatic localization of the glycoproteins predicted 68 inner membrane proteins, 60 periplasmic proteins, 26 outer membrane proteins, 57 lipoproteins, and 9 proteins secreted by the T9SS. The glycosylated sites were predominantly located in the periplasm, where they are postulated to be beneficial for protein folding/stability. Six proteins associated with gliding motility or the T9SS were demonstrated to be O-glycosylated. IMPORTANCE Flavobacterium johnsoniae is a Gram-negative bacterium that is found in soil and water. It is frequently used as a model species for studying gliding motility and the T9SS. In this study, we characterized the O-glycoproteome of F. johnsoniae and identified 325 O-glycosylation sites within 226 glycoproteins. The glycosylated domains were mainly localized to the periplasm. The function of O-glycosylation is likely related to protein folding and stability; therefore, the finding of the glycosylation sites has relevance for studies involving expression of the proteins. Six proteins associated with gliding motility or the T9SS were demonstrated to be O-glycosylated, which may impact the structure and function of these components.
机译:黄杆菌是拟杆菌门的自由生活成员,存在于土壤和水中。它经常被用作研究依赖于 IX 型分泌系统 (T9SS) 的滑行运动的模式物种。O-糖基化已在几种拟杆菌属物种中报道,坦纳菌连翘中 S 层蛋白的 O-糖基化被证明对某些毒力特征很重要。在这项研究中,我们表征了 F. johnsoniae 的 O-糖蛋白组,并在 226 种糖蛋白中鉴定了 325 个 O-糖基化位点。主要聚糖的结构被发现是六糖,序列为Hex-(Me-dHex)-Me-HexA-Pent-HexA-Me-HexNAcA。糖蛋白的生物信息学定位预测了 68 种内膜蛋白、60 种周质蛋白、26 种外膜蛋白、57 种脂蛋白和 9 种由 T9SS 分泌的蛋白质。糖基化位点主要位于周质中,据推测它们有利于蛋白质折叠/稳定性。六种与滑动运动或 T9SS 相关的蛋白质被证明是 O-糖基化的。重要性 黄杆菌是一种革兰氏阴性细菌,存在于土壤和水中。它经常被用作研究滑翔运动和T9SS的模型物种。在这项研究中,我们表征了 F. johnsoniae 的 O-糖蛋白组,并在 226 种糖蛋白中鉴定了 325 个 O-糖基化位点。糖基化结构域主要定位于周质。O-糖基化的功能可能与蛋白质折叠和稳定性有关;因此,糖基化位点的发现与涉及蛋白质表达的研究有关。六种与滑动运动或T9SS相关的蛋白质被证明是O-糖基化的,这可能会影响这些成分的结构和功能。

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