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鉴定钩端螺旋体 OmpA 样蛋白,该蛋白可与细胞外基质分子和纤溶酶原结合。

Characterization of novel OmpA-like protein of Leptospira interrogans that binds extracellular matrix molecules and plasminogen.

机构信息

Centro de Biotecnologia, Instituto Butantan, São Paulo, Brazil.

出版信息

PLoS One. 2011;6(7):e21962. doi: 10.1371/journal.pone.0021962. Epub 2011 Jul 6.

Abstract

Leptospira interrogans is the etiological agent of leptospirosis, a zoonotic disease of human and veterinary concern. The identification of novel proteins that mediate host-pathogen interactions is important for understanding the bacterial pathogenesis as well as to identify protective antigens that would help fight the disease. We describe in this work the cloning, expression, purification and characterization of three predicted leptospiral membrane proteins, LIC10258, LIC12880 (Lp30) and LIC12238. We have employed Escherichia coli BL21 (SI) strain as a host expression system. Recently, we have identified LIC12238 as a plasminogen (PLG)-binding receptor. We show now that Lp30 and rLIC10258 are also PLG-receptors of Leptospira, both exhibiting dose-dependent and saturating binding (K(D), 68.8±25.2 nM and 167.39±60.1 nM, for rLIC10258 and rLIC12880, respectively). In addition, LIC10258, which is a novel OmpA-like protein, binds laminin and plasma fibronectin ECM molecules and hence, it was named Lsa66 (Leptospiral surface adhesin of 66 kDa). Binding of Lsa66 to ECM components was determined to be specific, dose-dependent and saturable, with a K(D) of 55.4±15.9 nM to laminin and of 290.8±11.8 nM to plasma fibronectin. Binding of the recombinant proteins to PLG or ECM components was assessed by using antibodies against each of the recombinant proteins obtained in mice and confirmed by monoclonal anti-polyhistidine antibodies. Lsa66 caused partial inhibition on leptospiral adherence to immobilized ECM and PLG. Moreover, this adhesin and rLIC12238 are recognized by antibodies in serum samples of confirmed leptospirosis cases. Thus, Lsa66 is a novel OmpA-like protein with dual activity that may promote the attachment of Leptospira to host tissues and may contribute to the leptospiral invasion. To our knowledge, this is the first leptospiral protein with ECM and PLG binding properties reported to date.

摘要

问号钩端螺旋体是钩端螺旋体病的病原体,这是一种人畜共患的疾病。鉴定介导宿主-病原体相互作用的新蛋白对于理解细菌发病机制以及鉴定有助于对抗该疾病的保护性抗原非常重要。我们在这项工作中描述了三种预测的钩端螺旋体膜蛋白 LIC10258、LIC12880(Lp30)和 LIC12238 的克隆、表达、纯化和特性。我们使用大肠杆菌 BL21(SI)菌株作为宿主表达系统。最近,我们已经鉴定出 LIC12238 是纤溶酶原(PLG)结合受体。我们现在表明 Lp30 和 rLIC10258 也是钩端螺旋体的 PLG 受体,两者都表现出剂量依赖性和饱和结合(rLIC10258 和 rLIC12880 的 K(D)分别为 68.8±25.2 nM 和 167.39±60.1 nM)。此外,LIC10258 是一种新型的 OmpA 样蛋白,它结合层粘连蛋白和血浆纤维连接蛋白 ECM 分子,因此它被命名为 Lsa66(66 kDa 的钩端螺旋体表面黏附素)。Lsa66 与 ECM 成分的结合被确定为特异性、剂量依赖性和饱和性的,与层粘连蛋白的 K(D)为 55.4±15.9 nM,与血浆纤维连接蛋白的 K(D)为 290.8±11.8 nM。通过使用从小鼠中获得的针对每种重组蛋白的抗体来评估重组蛋白与 PLG 或 ECM 成分的结合,并通过单克隆抗多组氨酸抗体进行确认。Lsa66 导致钩端螺旋体对固定化 ECM 和 PLG 的黏附部分抑制。此外,这种黏附素和 rLIC12238 被确诊为钩端螺旋体病病例的血清样本中的抗体所识别。因此,Lsa66 是一种具有双重活性的新型 OmpA 样蛋白,可能促进钩端螺旋体附着到宿主组织,并可能有助于钩端螺旋体的入侵。据我们所知,这是迄今为止报道的具有 ECM 和 PLG 结合特性的第一种钩端螺旋体蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e87/3130794/a330860f9573/pone.0021962.g001.jpg

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