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分泌型绦虫Kunitz蛋白的功能多样性:丝氨酸肽酶的抑制作用和阳离子通道的阻断作用。

Functional diversity of secreted cestode Kunitz proteins: Inhibition of serine peptidases and blockade of cation channels.

作者信息

Fló Martín, Margenat Mariana, Pellizza Leonardo, Graña Martín, Durán Rosario, Báez Adriana, Salceda Emilio, Soto Enrique, Alvarez Beatriz, Fernández Cecilia

机构信息

Cátedra de Inmunología, Facultad de Química, Universidad de la República, Montevideo, Uruguay.

Laboratorio de Enzimología, Facultad de Ciencias, Universidad de la República, Montevideo, Uruguay.

出版信息

PLoS Pathog. 2017 Feb 13;13(2):e1006169. doi: 10.1371/journal.ppat.1006169. eCollection 2017 Feb.

Abstract

We previously reported a multigene family of monodomain Kunitz proteins from Echinococcus granulosus (EgKU-1-EgKU-8), and provided evidence that some EgKUs are secreted by larval worms to the host interface. In addition, functional studies and homology modeling suggested that, similar to monodomain Kunitz families present in animal venoms, the E. granulosus family could include peptidase inhibitors as well as channel blockers. Using enzyme kinetics and whole-cell patch-clamp, we now demonstrate that the EgKUs are indeed functionally diverse. In fact, most of them behaved as high affinity inhibitors of either chymotrypsin (EgKU-2-EgKU-3) or trypsin (EgKU-5-EgKU-8). In contrast, the close paralogs EgKU-1 and EgKU-4 blocked voltage-dependent potassium channels (Kv); and also pH-dependent sodium channels (ASICs), while showing null (EgKU-1) or marginal (EgKU-4) peptidase inhibitory activity. We also confirmed the presence of EgKUs in secretions from other parasite stages, notably from adult worms and metacestodes. Interestingly, data from genome projects reveal that at least eight additional monodomain Kunitz proteins are encoded in the genome; that particular EgKUs are up-regulated in various stages; and that analogous Kunitz families exist in other medically important cestodes, but not in trematodes. Members of this expanded family of secreted cestode proteins thus have the potential to block, through high affinity interactions, the function of host counterparts (either peptidases or cation channels) and contribute to the establishment and persistence of infection. From a more general perspective, our results confirm that multigene families of Kunitz inhibitors from parasite secretions and animal venoms display a similar functional diversity and thus, that host-parasite co-evolution may also drive the emergence of a new function associated with the Kunitz scaffold.

摘要

我们之前报道过来自细粒棘球绦虫的单结构域库尼茨蛋白多基因家族(EgKU-1 - EgKU-8),并提供了证据表明一些EgKU蛋白由幼虫分泌至宿主界面。此外,功能研究和同源建模表明,与动物毒液中的单结构域库尼茨家族类似,细粒棘球绦虫家族可能包括肽酶抑制剂以及通道阻滞剂。通过酶动力学和全细胞膜片钳技术,我们现在证明EgKU蛋白确实具有功能多样性。事实上,它们中的大多数表现为胰凝乳蛋白酶(EgKU-2 - EgKU-3)或胰蛋白酶(EgKU-5 - EgKU-8)的高亲和力抑制剂。相比之下,紧密的旁系同源物EgKU-1和EgKU-4可阻断电压依赖性钾通道(Kv)以及pH依赖性钠通道(ASICs),同时显示出无(EgKU-1)或微弱(EgKU-4)的肽酶抑制活性。我们还证实了在其他寄生虫阶段的分泌物中存在EgKU蛋白,特别是成虫和中绦期幼虫。有趣的是,基因组计划的数据显示基因组中至少还编码了另外八种单结构域库尼茨蛋白;特定的EgKU蛋白在不同阶段上调表达;并且在其他医学上重要的绦虫中存在类似的库尼茨家族,但吸虫中不存在。因此,这个扩展的绦虫分泌蛋白家族的成员有可能通过高亲和力相互作用阻断宿主对应物(肽酶或阳离子通道)的功能,并有助于感染的建立和持续存在。从更普遍的角度来看,我们的结果证实了来自寄生虫分泌物和动物毒液的库尼茨抑制剂多基因家族表现出类似的功能多样性,因此,宿主 - 寄生虫的共同进化也可能推动与库尼茨支架相关的新功能的出现。

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