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钠/脯氨酸转运蛋白PutP外环4中的Glu-311对外部门控关闭至关重要。

Glu-311 in External Loop 4 of the Sodium/Proline Transporter PutP Is Crucial for External Gate Closure.

作者信息

Bracher Susanne, Guérin Kamila, Polyhach Yevhen, Jeschke Gunnar, Dittmer Sophie, Frey Sabine, Böhm Maret, Jung Heinrich

机构信息

From the Department of Biology 1, Division of Microbiology, Ludwig Maximilians University Munich, Grosshaderner Strasse 2-4, 82152 Martinsried, Germany and.

the ETH Zurich, Laboratory of Physical Chemistry, Vladimir-Prelog-Weg 2, 8093 Zurich, Switzerland.

出版信息

J Biol Chem. 2016 Mar 4;291(10):4998-5008. doi: 10.1074/jbc.M115.675306. Epub 2016 Jan 4.

Abstract

The available structural information on LeuT and structurally related transporters suggests that external loop 4 (eL4) and the outer end of transmembrane domain (TM) 10' participate in the reversible occlusion of the outer pathway to the solute binding sites. Here, the functional significance of eL4 and the outer region of TM10' are explored using the sodium/proline symporter PutP as a model. Glu-311 at the tip of eL4, and various amino acids around the outer end of TM10' are identified as particularly crucial for function. Substitutions at these sites inhibit the transport cycle, and affect in part ligand binding. In addition, changes at selected sites induce a global structural alteration in the direction of an outward-open conformation. It is suggested that interactions between the tip of eL4 and the peptide backbone at the end of TM10' participate in coordinating conformational alterations underlying the alternating access mechanism of transport. Together with the structural information on LeuT-like transporters, the results further specify the idea that common design and functional principles are maintained across different transport families.

摘要

关于亮氨酸转运蛋白(LeuT)及结构相关转运体的现有结构信息表明,外环4(eL4)和跨膜结构域10'(TM10')的外端参与溶质结合位点外部通路的可逆封闭。在此,以钠/脯氨酸同向转运体PutP为模型,探究eL4和TM10'外部区域的功能意义。确定eL4末端的Glu-311以及TM10'外端周围的各种氨基酸对功能尤为关键。这些位点的取代会抑制转运循环,并部分影响配体结合。此外,选定位点的变化会诱导整体结构向向外开放构象方向改变。有人提出,eL4末端与TM10'末端的肽主链之间的相互作用参与协调转运交替通路机制背后的构象变化。结合LeuT样转运体的结构信息,这些结果进一步明确了不同转运家族维持共同设计和功能原则的观点。

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