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Structure of the aliphatic sulfonate-binding protein SsuA from Escherichia coli

机译:大肠杆菌的脂族磺酸盐结合蛋白SsuA的结构

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摘要

Sulfur is an essential component for the biosynthesis of the sulfur-containing amino acids l-methionine and l-cysteine. Under sulfur-starvation conditions, bacteria are capable of scavenging sulfur from sulfur-containing compounds and transporting it across membranes. Here, the crystal structure of the periplasmic aliphatic sulfonate-binding protein SsuA from Escherichia coli is reported at 1.75 Å resolution in the substrate-free state. The overall structure of SsuA resembles the structures of other periplasmic binding proteins and contains two globular domains that form a cleft. Comparison with other periplasmic binding proteins revealed that one of the domains has been displaced by a rigid movement of 17°. Interestingly, the tight crystal packing appears to be mediated by a 13-­amino-acid tail from the cloning that folds within the cleft of the next monomer.
机译:硫是生物合成含硫氨基酸l-蛋氨酸和l-半胱氨酸的重要成分。在硫缺乏的条件下,细菌能够清除含硫化合物中的硫并将其跨膜运输。在此,据报道,来自大肠杆菌的周质脂肪族磺酸盐结合蛋白SsuA的晶体结构在无底物状态下的分辨率为1.75。 SsuA的总体结构类似于其他周质结合蛋白的结构,并包含两个形成裂口的球形结构域。与其他周质结合蛋白的比较显示,其中一个结构域已被17°的刚性移动所取代。有趣的是,紧密的晶体堆积似乎是由来自在下一个单体的裂缝内折叠的克隆的13-α-氨基酸尾巴介导的。

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