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绵羊布鲁氏菌亮氨酸、异亮氨酸、缬氨酸、苏氨酸和丙氨酸结合蛋白的结构揭示了一个构象灵活的肽结合腔。

Structures of Brucella ovis leucine-, isoleucine-, valine-, threonine- and alanine-binding protein reveal a conformationally flexible peptide-binding cavity.

机构信息

Department of Chemistry and Biochemistry, Hampton University, Hampton, VA 23668, USA.

Center for Global Infectious Disease Research, Seattle Children's Research Institute, 307 Westlake Avenue North Suite 500, Seattle, WA 98109, USA.

出版信息

Acta Crystallogr F Struct Biol Commun. 2024 Sep 1;80(Pt 9):193-199. doi: 10.1107/S2053230X24007027. Epub 2024 Aug 23.

Abstract

Brucella ovis is an etiologic agent of ovine epididymitis and brucellosis that causes global devastation in sheep, rams, goats, small ruminants and deer. There are no cost-effective methods for the worldwide eradication of ovine brucellosis. B. ovis and other protein targets from various Brucella species are currently in the pipeline for high-throughput structural analysis at the Seattle Structural Genomics Center for Infectious Disease (SSGCID), with the aim of identifying new therapeutic targets. Furthermore, the wealth of structures generated are effective tools for teaching scientific communication, structural science and biochemistry. One of these structures, B. ovis leucine-, isoleucine-, valine-, threonine- and alanine-binding protein (BoLBP), is a putative periplasmic amino acid-binding protein. BoLBP shares less than 29% sequence identity with any other structure in the Protein Data Bank. The production, crystallization and high-resolution structures of BoLBP are reported. BoLBP is a prototypical bacterial periplasmic amino acid-binding protein with the characteristic Venus flytrap topology of two globular domains encapsulating a large central cavity containing the peptide-binding region. The central cavity contains small molecules usurped from the crystallization milieu. The reported structures reveal the conformational flexibility of the central cavity in the absence of bound peptides. The structural similarity to other LBPs can be exploited to accelerate drug repurposing.

摘要

绵羊附睾布鲁氏菌是引起绵羊、公羊、山羊、小反刍动物和鹿附睾炎和布鲁氏菌病的病原体,给全球畜牧业造成了严重的损失。目前,尚无有效的方法可以在全球范围内根除绵羊布鲁氏菌病。B.ovis 和来自不同布鲁氏菌属的其他蛋白质靶标目前正在西雅图传染病结构基因组学中心(SSGCID)进行高通量结构分析,目的是确定新的治疗靶标。此外,大量生成的结构是教授科学交流、结构科学和生物化学的有效工具。其中一种结构,即绵羊亮氨酸、异亮氨酸、缬氨酸、苏氨酸和丙氨酸结合蛋白(BoLBP),是一种假定的周质氨基酸结合蛋白。BoLBP 与蛋白质数据库中任何其他结构的序列同一性都小于 29%。本文报道了 BoLBP 的生产、结晶和高分辨率结构。BoLBP 是一种典型的细菌周质氨基酸结合蛋白,具有两个球状结构域的 Venus flytrap 拓扑结构,封装了一个包含肽结合区域的大中央腔。中央腔内包含了从结晶环境中篡夺而来的小分子。报告的结构揭示了在没有结合肽的情况下中央腔的构象灵活性。与其他 LBPs 的结构相似,可以加速药物再利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8c9/11376275/d79befe4a527/f-80-00193-fig1.jpg

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