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Trypanosoma cruzi trans-Sialidase in Complex with a Neutralizing Antibody: Structure/Function Studies towards the Rational Design of Inhibitors

机译:带有中和抗体的克氏锥虫反唾液酸酶复合物:针对抑制剂合理设计的结构/功能研究

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摘要

Trans-sialidase (TS), a virulence factor from Trypanosoma cruzi, is an enzyme playing key roles in the biology of this protozoan parasite. Absent from the mammalian host, it constitutes a potential target for the development of novel chemotherapeutic drugs, an urgent need to combat Chagas' disease. TS is involved in host cell invasion and parasite survival in the bloodstream. However, TS is also actively shed by the parasite to the bloodstream, inducing systemic effects readily detected during the acute phase of the disease, in particular, hematological alterations and triggering of immune cells apoptosis, until specific neutralizing antibodies are elicited. These antibodies constitute the only known submicromolar inhibitor of TS's catalytic activity. We now report the identification and detailed characterization of a neutralizing mouse monoclonal antibody (mAb 13G9), recognizing T. cruzi TS with high specificity and subnanomolar affinity. This mAb displays undetectable association with the T. cruzi superfamily of TS-like proteins or yet with the TS-related enzymes from Trypanosoma brucei or Trypanosoma rangeli. In immunofluorescence assays, mAb 13G9 labeled 100% of the parasites from the infective trypomastigote stage. This mAb also reduces parasite invasion of cultured cells and strongly inhibits parasite surface sialylation. The crystal structure of the mAb 13G9 antigen-binding fragment in complex with the globular region of T. cruzi TS was determined, revealing detailed molecular insights of the inhibition mechanism. Not occluding the enzyme's catalytic site, the antibody performs a subtle action by inhibiting the movement of an assisting tyrosine (Y119), whose mobility is known to play a key role in the trans-glycosidase mechanism. As an example of enzymatic inhibition involving non-catalytic residues that occupy sites distal from the substrate-binding pocket, this first near atomic characterization of a high affinity inhibitory molecule for TS provides a rational framework for novel strategies in the design of chemotherapeutic compounds.
机译:转唾液酸酶(TS)是克鲁斯锥虫的一种致病因子,是一种在这种原生动物寄生虫的生物学中起关键作用的酶。由于没有哺乳动物宿主,它构成了开发新型化学治疗药物的潜在目标,这是与南美锥虫病抗争的迫切需要。 TS参与宿主细胞入侵和血液中的寄生虫存活。但是,TS也被寄生虫主动释放到血液中,诱导在疾病的急性期容易检测到全身作用,特别是血液学改变和免疫细胞凋亡的触发,直到引起特定的中和抗体。这些抗体构成了TS催化活性的唯一已知的亚微摩尔抑制剂。现在,我们报告中和的小鼠单克隆抗体(mAb 13G9)的鉴定和详细表征,以高特异性和亚纳摩尔亲和力识别克鲁氏梭菌TS。该单克隆抗体显示出与TS样蛋白的克氏锥虫超家族或与布鲁氏锥虫或兰氏锥虫的TS相关酶的不可检测的关联。在免疫荧光测定中,mAb 13G9标记了感染性锥虫病阶段的100%寄生虫。该mAb还减少了培养细胞的寄生虫入侵,并强烈抑制了寄生虫表面唾液酸化。确定了mAb 13G9抗原结合片段与克鲁维氏锥虫TS球状区域复合物的晶体结构,揭示了抑制机制的详细分子见解。抗体不封闭酶的催化位点,它通过抑制辅助酪氨酸(Y119)的运动而发挥了微妙的作用,该酪氨酸的迁移性在糖苷酶的机制中起着关键作用。作为涉及非催化残基的酶抑制实例,该残基占据了底物结合口袋的远端,TS的高亲和力抑制分子的第一个近原子表征为化学疗法化合物设计中的新策略提供了合理的框架。

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