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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Biophysical characterization of the domain association between cytosolic A and B domains of the mannitol transporter enzymes IIMtl in the presence and absence of a connecting linker
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Biophysical characterization of the domain association between cytosolic A and B domains of the mannitol transporter enzymes IIMtl in the presence and absence of a connecting linker

机译:在存在和不存在连接接头的情况下,甘露醇转运酶IIMtl的胞质A和B结构域之间的结构域关联的生物物理表征

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摘要

The mannitol transporter enzyme IIMtl of the bacterial phosphotransferase system is a multi-domain protein that catalyzes mannitol uptake and phosphorylation. Here we investigated the domain association between cytosolic A and B domains of enzyme IIMtl, which are natively connected in Escherichia coli, but separated in Thermoanaerobacter tengcongensis. NMR backbone assignment and residual dipolar couplings indicated that backbone folds were well conserved between the homologous domains. The equilibrium binding of separately expressed domains, however, exhibited approximate to 28-fold higher affinity compared to the natively linked ones. Phosphorylation of the active site loop significantly contributed to the binding by reducing conformational dynamics at the binding interface, and a few key mutations at the interface were critical to further stabilize the complex by hydrogen bonding and hydrophobic interactions. The affinity increase implicated that domain associations in cell could be maintained at an optimal level regardless of the linker.
机译:细菌磷酸转移酶系统的甘露醇转运酶IIMT1是催化甘露醇摄取和磷酸化的多结构域蛋白。在这里,我们研究了酶IIMt1的胞质A和B结构域之间的结构域关联,这些结构域天然连接在大肠杆菌中,但在腾格热厌氧杆菌中分离。 NMR骨架分配和残留的偶极偶合表明,同源域之间骨架折叠非常保守。但是,与天然连接的结构域相比,单独表达的结构域的平衡结合表现出大约高出28倍的亲和力。活性位点环的磷酸化通过减少结合界面的构象动力学而显着促进了结合,并且界面上的一些关键突变对于通过氢键和疏水相互作用进一步稳定复合物至关重要。亲和力的增加暗示细胞中的域关联可以保持在最佳水平,而与接头无关。

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