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首页> 外文期刊>Molecular Microbiology >Variable small protein (Vsp)-dependent and Vsp-independent pathways for glycosaminoglycan recognition by relapsing fever spirochaetes.
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Variable small protein (Vsp)-dependent and Vsp-independent pathways for glycosaminoglycan recognition by relapsing fever spirochaetes.

机译:可变的小螺旋藻(Vsp)依赖性和Vsp依赖性途径通过复发性螺旋体对糖胺聚糖的识别。

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摘要

Tick-borne relapsing fever, caused by pathogenic Borrelia such as B. hermsii and B. turicatae, features recurrent episodes of bacteraemia, each of which is caused by a population of spirochaetes that expresses a different variable major protein. Relapsing fever is also associated with the infection of a variety of tissues, such as the central nervous system. In this study, we show that glycosaminoglycans (GAGs) mediate the attachment of relapsing fever spirochaetes to mammalian cells. B. hermsii strain DAH bound to immobilized heparin, and heparin and dermatan sulphate blocked bacterial binding to host cells. Bacterial binding was diminished by inhibition of host cell GAG synthesis or sulphation, or by the enzymatic removal of GAGs. GAGs mediated the attachment of relapsing fever spirochaetes to potentially relevant target cells, such as endothelial and glial cells. B. hermsii was able to attach to GAGs independently of variable major proteins, because strains expressing the variable major proteins Vsp33, Vlp7 or no variable major protein at all each recognized GAGs. Nevertheless, we found that a variable major protein of B. turicatae directly promoted GAG binding by this relapsing fever spirochaete. B. turicatae strain Oz1 serotype B, which expresses the variable major protein VspB, bound to GAGs more efficiently than did B. turicatae Oz1 serotype A, which expresses VspA. Recombinant VspB, but not VspA, bound to heparin and dermatan sulphate. Previous studies have shown that strain Oz1 serotype B grows to higher concentrations in the blood than does Oz1 serotype A. Thus, relapsing fever spirochaetes have the potential to express Vsp-dependent and Vsp-independent GAG-binding activities and, for one pair of highly related B. turicatae strains, differences in GAG binding correlate with differences in tissue tropism.
机译:由致病性疏螺旋体(如B. hermsii和B. turicatae)引起的传传播热特征是反复发生菌血症,每种细菌菌血症都是由表达不同可变主要蛋白的螺旋体引起的。复发性发烧还与多种组织(例如中枢神经系统)的感染有关。在这项研究中,我们表明糖胺聚糖(GAGs)介导了复发性发热螺旋体对哺乳动物细胞的附着。 B. hermsii菌株DAH与固定化的肝素结合,而肝素和硫酸皮肤素阻止细菌与宿主细胞结合。通过抑制宿主细胞GAG的合成或硫酸化,或通过酶促去除GAG,可以减少细菌结合。 GAG介导复发性发热螺旋体附着于潜在相关的靶细胞,例如内皮细胞和神经胶质细胞。疱疹双歧杆菌能够独立于可变主要蛋白而附着于GAG,因为菌株在所有公认的GAG上均表达可变主要蛋白Vsp33,Vlp7或不表达可变主要蛋白。然而,我们发现这种复发性发热螺旋体直接改变了变种Turicatae的主要蛋白,从而直接促进了GAG的结合。表达可变主要蛋白VspB的B. turicatae菌株Oz1血清型B比表达VspA的B. turicatae Oz1血清型A更有效地与GAG结合。与肝素和硫酸皮肤素结合的重组VspB但不是VspA。以前的研究表明,菌株Oz1血清型B在血液中的浓度要比Oz1血清型A高。因此,复发性发热螺旋体具有表达Vsp依赖性和Vsp依赖性GAG结合活性的潜力,并且对于一对高度相关的turicatae菌株,GAG结合的差异与组织向性的差异相关。

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