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结核分枝杆菌肽结合蛋白 DppA 的生物物理分析揭示了一个严格的肽结合口袋。

Biophysical analysis of the Mycobacteria tuberculosis peptide binding protein DppA reveals a stringent peptide binding pocket.

机构信息

Department of Chemical Biology and Therapeutics, St. Jude Children's Research Hospital, Memphis, TN 38105, USA.

Department of Structural Biology, St. Jude Children's Research Hospital, Memphis, TN, 38105, USA.

出版信息

Tuberculosis (Edinb). 2022 Jan;132:102157. doi: 10.1016/j.tube.2021.102157. Epub 2021 Nov 29.

Abstract

The peptide binding protein DppA is an ABC transporter found in prokaryotes that has the potential to be used as drug delivery tool for hybrid antibiotic compounds. Understanding the motifs and structures that bind to DppA is critical to the development of these bivalent compounds. This study focused on the biophysical analysis of the MtDppA from M. tuberculosis. Analysis of the crystal structure revealed a SVA tripeptide was co-crystallized with the protein. Further peptide analysis demonstrated MtDppA shows very little affinity for dipeptides but rather preferentially binds to peptides that are 3-4 amino acids in length. The structure-activity relationships (SAR) between MtDppA and tripeptides with varied amino acid substitutions were evaluated using thermal shift, SPR, and molecular dynamics simulations. Efforts to identify novel ligands for use as alternative scaffolds through the thermal shift screening of 35,000 compounds against MtDppA were unsuccessful, indicating that the MtDppA binding pocket is highly specialized for uptake of peptides. Future development of compounds that seek to utilize MtDppA as a drug delivery mechanism, will likely require a tri- or tetrapeptide component with a hydrophobic -non-acidic peptide sequence.

摘要

肽结合蛋白 DppA 是一种在原核生物中发现的 ABC 转运蛋白,具有作为用于杂合抗生素化合物的药物递送工具的潜力。了解与 DppA 结合的基序和结构对于这些二价化合物的开发至关重要。本研究专注于结核分枝杆菌 MtDppA 的生物物理分析。晶体结构分析表明,一种 SVA 三肽与该蛋白共结晶。进一步的肽分析表明,MtDppA 对二肽几乎没有亲和力,而是更倾向于结合长度为 3-4 个氨基酸的肽。使用热移位、SPR 和分子动力学模拟评估了 MtDppA 与具有不同氨基酸取代的三肽之间的结构-活性关系 (SAR)。通过针对 MtDppA 对 35000 种化合物进行热移位筛选,努力寻找新的配体作为替代支架,但没有成功,这表明 MtDppA 的结合口袋非常专门用于摄取肽。未来开发试图利用 MtDppA 作为药物递送机制的化合物,可能需要具有疏水性-非酸性肽序列的三肽或四肽成分。

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