首页> 外文OA文献 >A L-Lysine Transporter of High Stereoselectivity of the Amino Acid-Polyamine-Organocation (APC) Superfamily PRODUCTION, FUNCTIONAL CHARACTERIZATION, AND STRUCTURE MODELING
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A L-Lysine Transporter of High Stereoselectivity of the Amino Acid-Polyamine-Organocation (APC) Superfamily PRODUCTION, FUNCTIONAL CHARACTERIZATION, AND STRUCTURE MODELING

机译:具有高立体选择性的氨基酸 - 多胺配位(apC)超家族生产,功能表征和结构建模的L-赖氨酸转运蛋白

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摘要

Membrane proteins of the amino acid-polyamine-organocation (APC) superfamily transport amino acids and amines across membranes and play an important role in the regulation of cellular processes. We report the heterologous production of the LysP-related transporter STM2200 from Salmonella typhimurium in Escherichia coli, its purification, and functional characterization. STM2200 is assumed to be a proton-dependent APC transporter of L-lysine. The functional interaction between basic amino acids and STM2200 was investigated by thermoanalytical methods, i.e. differential scanning and isothermal titration calorimetry. Binding of L-lysine to STM2200 in its solubilized monomer form is entropy-driven. It is characterized by a dissociation constant of 40μM at pH 5.9 and is highly selective; no evidence was found for the binding of L-arginine, L-ornithine, L-2,4-diaminobutyric acid, and L-alanine. D-Lysine is bound 45 times more weakly than its L-chiral form. We thus postulate that STM2200 functions as a specific transport protein. Based on the crystal structure of ApcT (Shaffer, P. L., Goehring, A., Shankaranarayanan, A., and Gouaux, E. (2009) Science 325, 1010–1014), a proton-dependent amino acid transporter of the APC superfamily, a homology model of STM2200 was created. Docking studies allowed identification of possible ligand binding sites. The resulting predictions indicated that Glu-222 and Arg-395 of STM2200 are markedly involved in ligand binding, whereas Lys-163 is suggested to be of structural and functional relevance. Selected variants of STM2200 where these three amino acid residues were substituted using single site-directed mutagenesis showed no evidence for L-lysine binding by isothermal titration calorimetry, which confirmed the predictions. Molecular aspects of the observed ligand specificity are discussed.
机译:氨基酸-多胺-组织(APC)超家族的膜蛋白将氨基酸和胺跨膜运输,并在调节细胞过程中发挥重要作用。我们报告从鼠伤寒沙门氏菌在大肠杆菌中的LysP相关转运蛋白STM2200的异源生产,纯化和功能表征。假定STM2200是L-赖氨酸的质子依赖性APC转运蛋白。碱性氨基酸与STM2200之间的功能相互作用是通过热分析方法,即差示扫描和等温滴定量热法进行研究的。 L-赖氨酸以其可溶单体形式与STM2200的结合是由熵驱动的。它的特点是在pH 5.9时的解离常数为40μM,具有很高的选择性。没有发现L-精氨酸,L-鸟氨酸,L-2,4-二氨基丁酸和L-丙氨酸结合的证据。 D-赖氨酸的结合力是L-手性形式的45倍。因此,我们假设STM2200作为一种特定的转运蛋白。基于ApcT的晶体结构(Shaffer,PL,Goehring,A.,Shankaranarayanan,A.和Gouaux,E.(2009)Science 325,1010-1014),它是APC超家族的质子依赖性氨基酸转运蛋白,创建了STM2200的同源性模型。对接研究允许鉴定可能的配体结合位点。所得预测表明,STM2200的Glu-222和Arg-395显着参与配体结合,而Lys-163被认为具有结构和功能相关性。 STM2200的选定变体,其中使用单个定点诱变替换了这三个氨基酸残基,没有显示出通过等温滴定量热法证明L-赖氨酸结合的证据,这证实了这一预测。讨论了观察到的配体特异性的分子方面。

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