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Asp187 和 Gln190 在大肠杆菌 Na+/脯氨酸协同转运蛋白(PutP)中的作用。

Role of Asp187 and Gln190 in the Na+/proline symporter (PutP) of Escherichia coli.

机构信息

Department of Biological Science and Technology, Tokyo University of Science, 2641 Yamazaki, Noda-shi, Chiba 278-8510, Japan.

出版信息

J Biochem. 2011 Oct;150(4):395-402. doi: 10.1093/jb/mvr062. Epub 2011 May 17.

Abstract

Asp187 and Gln190 were predicted as conserved and closely located at the Na(+) binding site in a topology and homology model structure of Na(+)/proline symporter (PutP) of Escherichia coli. The replacement of Asp187 with Ala or Leu did not affect proline transport activity; whereas, change to Gln abolished the active transport. The binding affinity for Na(+) or proline of these mutants was similar to that of wild-type (WT) PutP. This result indicates Asp187 to be responsible for active transport of proline without affecting the binding. Replacement of Gln190 with Ala, Asn, Asp, Leu and Glu had no effect on transport or binding, suggesting that it may not have a role in the transport. However, in the negative D187Q mutant, a second mutation, of Gln190 to Glu or Leu, restored 46 or 7% of the transport activity of WT, respectively, while mutation to Ala, Asn or Asp had no effect. Thus, side chain at position 190 has a crucial role in suppressing the functional defect of the D187Q mutant. We conclude that Asp187 is responsible for transport activity instead of coupling-ion binding by constituting the translocation pathway of the ion and Gln190 provides a suppressing mutation site to regain PutP functional activity.

摘要

Asp187 和 Gln190 被预测为大肠杆菌 Na(+)/脯氨酸同向转运蛋白 (PutP) 的拓扑和同源模型结构中保守且紧密位于 Na(+)结合位点。Asp187 被 Ala 或 Leu 取代不会影响脯氨酸转运活性;而突变为 Gln 则会使主动转运失效。这些突变体对 Na(+)或脯氨酸的结合亲和力与野生型 (WT) PutP 相似。该结果表明 Asp187 负责脯氨酸的主动转运,而不影响结合。用 Ala、Asn、Asp、Leu 和 Glu 取代 Gln190 对转运或结合没有影响,表明它可能在转运中没有作用。然而,在负 D187Q 突变体中,第二个突变,即 Gln190 突变为 Glu 或 Leu,分别恢复了 WT 的 46%或 7%的转运活性,而突变为 Ala、Asn 或 Asp 则没有影响。因此,位置 190 的侧链在抑制 D187Q 突变体的功能缺陷方面起着至关重要的作用。我们得出结论,Asp187 负责转运活性,而不是通过构成离子易位途径来偶联离子结合,Gln190 提供了一个抑制突变位点以恢复 PutP 的功能活性。

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