间日疟原虫枯草杆菌样药物靶点SUB1的三维结构揭示了构象变化,以适应底物衍生的α-酮酰胺抑制剂。

IF 2.6 4区 生物学 Q2 BIOCHEMICAL RESEARCH METHODS
Mariano Martinez, Fernando A Batista, Manon Maurel, Anthony Bouillon, Laura Ortega Varga, Anne Marie Wehenkel, Lucile Le Chevalier-Sontag, Arnaud Blondel, Ahmed Haouz, Jean François Hernandez, Pedro M Alzari, Jean Christophe Barale
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引用次数: 0

摘要

多重耐药疟原虫寄生虫的不断选择和繁殖需要鉴定新的抗疟候选药物,这些候选药物涉及尚未靶向的代谢途径。枯草杆菌样蛋白酶1 (SUB1)属于新一代药物靶点,因为它在寄生虫生命周期的不同阶段从被感染的宿主细胞出口时起着至关重要的作用。SUB1的特征是一个不寻常的前区与其同源催化结构域紧密相互作用,因此排除了酶抑制剂复合物的3D结构分析。在本研究中,为了克服这一限制,利用严格的离子条件和控制重组全长间日疟原虫SUB1的蛋白水解,获得了一个活性和稳定的催化结构域(PvS1Cat)的晶体,没有前区。PvS1Cat的高分辨率3D结构,单独和与α-酮酰胺底物衍生抑制剂(MAM-117)的配合,表明,如预期的那样,SUB1的催化丝氨酸与抑制剂的α-酮基形成共价键。氢键网络和疏水相互作用稳定了复合物,包括抑制剂的P1'和P2'位置,尽管P'残基通常在定义枯草菌素的底物特异性方面不太重要。此外,当与底物衍生的拟肽抑制剂结合时,SUB1的催化槽发生了显著的结构变化,特别是在S4口袋中。这些发现为未来设计优化的sub1特异性抑制剂铺平了道路,这些抑制剂可能定义一类新的抗疟疾候选药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D structures of the Plasmodium vivax subtilisin-like drug target SUB1 reveal conformational changes to accommodate a substrate-derived α-ketoamide inhibitor.

The constant selection and propagation of multi-resistant Plasmodium sp. parasites require the identification of new antimalarial candidates involved in as-yet untargeted metabolic pathways. Subtilisin-like protease 1 (SUB1) belongs to a new generation of drug targets because it plays a crucial role during egress of the parasite from infected host cells at different stages of its life cycle. SUB1 is characterized by an unusual pro-region that tightly interacts with its cognate catalytic domain, thus precluding 3D structural analysis of enzyme-inhibitor complexes. In the present study, to overcome this limitation, stringent ionic conditions and controlled proteolysis of recombinant full-length P. vivax SUB1 were used to obtain crystals of an active and stable catalytic domain (PvS1Cat) without a pro-region. High-resolution 3D structures of PvS1Cat, alone and in complex with an α-ketoamide substrate-derived inhibitor (MAM-117), showed that, as expected, the catalytic serine of SUB1 formed a covalent bond with the α-keto group of the inhibitor. A network of hydrogen bonds and hydrophobic interactions stabilized the complex, including at the P1' and P2' positions of the inhibitor, although P' residues are usually less important in defining the substrate specificity of subtilisins. Moreover, when associated with a substrate-derived peptidomimetic inhibitor, the catalytic groove of SUB1 underwent significant structural changes, particularly in its S4 pocket. These findings pave the way for future strategies for the design of optimized SUB1-specific inhibitors that may define a novel class of antimalarial candidates.

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来源期刊
Acta Crystallographica. Section D, Structural Biology
Acta Crystallographica. Section D, Structural Biology BIOCHEMICAL RESEARCH METHODSBIOCHEMISTRY &-BIOCHEMISTRY & MOLECULAR BIOLOGY
CiteScore
4.50
自引率
13.60%
发文量
216
期刊介绍: Acta Crystallographica Section D welcomes the submission of articles covering any aspect of structural biology, with a particular emphasis on the structures of biological macromolecules or the methods used to determine them. Reports on new structures of biological importance may address the smallest macromolecules to the largest complex molecular machines. These structures may have been determined using any structural biology technique including crystallography, NMR, cryoEM and/or other techniques. The key criterion is that such articles must present significant new insights into biological, chemical or medical sciences. The inclusion of complementary data that support the conclusions drawn from the structural studies (such as binding studies, mass spectrometry, enzyme assays, or analysis of mutants or other modified forms of biological macromolecule) is encouraged. Methods articles may include new approaches to any aspect of biological structure determination or structure analysis but will only be accepted where they focus on new methods that are demonstrated to be of general applicability and importance to structural biology. Articles describing particularly difficult problems in structural biology are also welcomed, if the analysis would provide useful insights to others facing similar problems.
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