首页> 外文期刊>The Journal of biological chemistry >Ligand Specificity Determined by Differentially Arranged Common Ligand-binding Residues in Bacterial Amino Acid Chemoreceptors Tsr and Tar
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Ligand Specificity Determined by Differentially Arranged Common Ligand-binding Residues in Bacterial Amino Acid Chemoreceptors Tsr and Tar

机译:通过差异排列的常见配体结合残基测定的配体特异性在细菌氨基酸化学感受器TSR和焦油中

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Escherichia coli has closely related amino acid chemoreceptors with distinct ligand specificity, Tar for l-aspartate and Tsr for l-serine. Crystallography of the ligand-binding domain of Tar identified the residues interacting with aspartate, most of which are conserved in Tsr. However, swapping of the nonconserved residues between Tsr and Tar did not change ligand specificity. Analyses with chimeric receptors led us to hypothesize that distinct three-dimensional arrangements of the conserved ligand-binding residues are responsible for ligand specificity. To test this hypothesis, the structures of the apo- and serine-binding forms of the ligand-binding domain of Tsr were determined at 1.95 and 2.5 ? resolutions, respectively. Some of the Tsr residues are arranged differently from the corresponding aspartate-binding residues of Tar to form a high affinity serine-binding pocket. The ligand-binding pocket of Tsr was surrounded by negatively charged residues, which presumably exclude negatively charged aspartate molecules. We propose that all these Tsr- and Tar-specific features contribute to specific recognition of serine and aspartate with the arrangement of the side chain of residue 68 (Asn in Tsr and Ser in Tar) being the most critical.
机译:大肠杆菌具有密切相关的氨基酸化学感受器,具有明显的配体特异性,用于L-天冬氨酸的焦油和L-丝氨酸的TSR。焦油配体结合结构域的结晶术鉴定了与天冬氨酸相互作用的残基,其中大部分在TSR中保守。然而,在TSR和焦油之间交换非经受处理残留物并未改变配体特异性。用嵌合受体的分析使我们假设保守配体结合残基的不同的三维布置是配体特异性的原因。为了测试该假设,在1.95和2.5时测定TSR的配体结合结构域的APO-和丝氨酸结合形式的结构。分别决议。一些TSR残基与焦油的相应天冬氨酸结合残基不同,以形成高亲和力丝氨酸粘合剂袋。 TSR的配体结合袋被带负电荷的残基包围,其可能排除带负电荷的天冬氨酸分子。我们建议所有这些TSR和焦油和焦油特征的特征有助于特异性识别丝氨酸和天冬氨酸,其中残留物68的侧链(TSR和Ser中的ASR和Ser)是最关键的侧链。

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