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气单胞菌鞭毛蛋白的不均一糖基化和甲基化。

Heterogeneous glycosylation and methylation of the Aeromonas caviae flagellin.

机构信息

Department of Infection Immunity and Cardiovascular Disease, University of Sheffield Medical School, Sheffield, UK.

Chemical and Biological Engineering, University of Sheffield, Sheffield, UK.

出版信息

Microbiologyopen. 2022 Aug;11(4):e1306. doi: 10.1002/mbo3.1306.

Abstract

Bacterial swimming is mediated by the rotation of a flagellar filament. Many bacteria are now known to be able to O-glycosylate their flagellins, the proteins that make up the flagellar filament. For bacteria that use nonulosonic acid sugars such as pseudaminic acid, this glycosylation process is essential for the formation of a functional flagellum. However, the specific role of glycosylation remains elusive. Aeromonas caviae is a model for this process as it has a genetically simple glycosylation system. Here, we investigated the localization of the glycans on the A. caviae flagellum filament. Using mass spectrometry it was revealed that pseudaminic acid O-glycosylation was heterogeneous with no serine or threonine sites that were constantly glycosylated. Site-directed mutagenesis of particular glycosylation sites in most cases resulted in strains that had reduced motility and produced less detectable flagellin on Western blots. For flagellin O-linked glycosylation, there is no known consensus sequence, although hydrophobic amino acids have been suggested to play a role. We, therefore, performed site-directed mutagenesis of isoleucine or leucine residues flanking the sites of glycosylation and demonstrated a reduction in motility and the amount of flagellin present in the cells, indicating a role for these hydrophobic amino acids in the flagellin glycosylation process.

摘要

细菌的游动是通过鞭毛丝的旋转来介导的。现在已经知道,许多细菌能够对其鞭毛蛋白进行 O-糖基化,鞭毛蛋白是构成鞭毛丝的蛋白质。对于使用非己酮糖酸糖(如 pseudaminic 酸)的细菌来说,这个糖基化过程对于形成功能性鞭毛至关重要。然而,糖基化的具体作用仍然难以捉摸。豚鼠气单胞菌是这个过程的一个模型,因为它有一个遗传上简单的糖基化系统。在这里,我们研究了 A. caviae 鞭毛丝上聚糖的定位。通过质谱分析,发现 pseudaminic 酸 O-糖基化是异质的,没有丝氨酸或苏氨酸位点是恒定糖基化的。在大多数情况下,对特定糖基化位点进行定点突变会导致菌株的运动能力降低,Western blot 检测到的鞭毛蛋白减少。对于鞭毛蛋白 O 连接的糖基化,虽然已经提出了疏水性氨基酸可能发挥作用,但没有已知的共识序列。因此,我们对糖基化位点周围的异亮氨酸或亮氨酸残基进行了定点突变,并证明了运动能力的降低和细胞中存在的鞭毛蛋白减少,表明这些疏水性氨基酸在鞭毛蛋白糖基化过程中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45ac/9290775/5623d7fd05b1/MBO3-11-e1306-g001.jpg

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