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首页> 外文期刊>Journal of Molecular Biology >Crystal structures of two solute receptors for l-cystine and l-cysteine, respectively, of the human pathogen Neisseria gonorrhoeae
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Crystal structures of two solute receptors for l-cystine and l-cysteine, respectively, of the human pathogen Neisseria gonorrhoeae

机译:人类病原体淋病奈瑟氏球菌的l-胱氨酸和l-半胱氨酸的两种溶质受体的晶体结构

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ATP-binding cassette (ABC) transporters are integral membrane proteins that carry a variety of substrates across biological membranes at the expense of ATP. The here considered prokaryotic canonical importers consist of three entities: an extracellular solute receptor, two membrane-intrinsic proteins forming a translocation pathway, and two cytoplasmic ATP-binding subunits. The ngo0372-74 and ngo2011-14 gene clusters from the human pathogen Neisseria gonorrhoeae were predicted by sequence homology as ABC transporters for the uptake of cystine and cysteine, respectively, and chosen for structural characterization. The structure of the receptor component Ngo0372 was obtained in a ligand-free "open" conformation and in a "closed" conformation when co-crystallized with l-cystine. Our data provide the first structural information of an l-cystine ABC transporter. Dissociation constants of 21 and 33 nM for l-cystine and l-selenocystine, respectively, were determined by isothermal titration calorimetry. In contrast, l-cystathionine and l-djenkolic acid are weak binders, while no binding was detectable for S-methyl-l-cysteine. Mutational analysis of two residues from the binding pocket, Trp97 and Tyr59, revealed that the latter is crucial for l-cystine binding. The structure of the Ngo2014 receptor was obtained in closed conformation in complex with co-purified l-cysteine. The protein binds l-cysteine with a K d of 26 nM. Comparison of the structures of both receptors and analysis of the ligand binding sites shed light on the mode of ligand recognition and provides insight into the tight binding of both substrates. Moreover, since l-cystine limitation leads to reduction in virulence of N. gonorrhoeae, Ngo0372 might be suited as target for an antimicrobial vaccine.
机译:ATP结合盒(ABC)转运蛋白是不可或缺的膜蛋白,可在跨生物膜的多种底物上以ATP为代价。这里认为的原核经典进口商由三个实体组成:细胞外溶质受体,形成易位途径的两个膜内在蛋白和两个胞质ATP结合亚基。通过序列同源性将人类病原体淋病奈瑟氏球菌的ngo0372-74和ngo2011-14基因簇分别预测为ABC转运体,用于摄取胱氨酸和半胱氨酸,并选择其进行结构表征。当与1-胱氨酸共结晶时,受体组分Ngo0372的结构以无配体的“开放”构象和“封闭”构象获得。我们的数据提供了l-胱氨酸ABC转运蛋白的第一个结构信息。通过等温滴定量热法分别测定了L-胱氨酸和L-硒代胱氨酸的解离常数分别为21和33 nM。相反,L-半胱氨酸和L-邻苯二甲酸是弱的结合剂,而对于S-甲基-1-半胱氨酸则没有结合。对来自结合口袋的两个残基Trp97和Tyr59的突变分析表明,后者对于L-胱氨酸的结合至关重要。 Ngo2014受体的结构是与共纯化的l-半胱氨酸复合的闭合构型。该蛋白质以26 nM的K d结合l-半胱氨酸。两种受体结构的比较和配体结合位点的分析为配体识别的模式提供了启示,并提供了对两种底物紧密结合的见解。而且,由于l-胱氨酸的限制导致淋病奈瑟氏球菌的毒力降低,因此Ngo0372可能适合作为抗微生物疫苗的靶标。

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