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Mutational Analysis of the Connector Segment in the HAMP Domain of Tsr, the Escherichia coli Serine Chemoreceptor▿

机译:大肠杆菌丝氨酸化学受体Tsr的HAMP结构域中连接子片段的突变分析

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摘要

HAMP domains are ∼50-residue motifs, found in many bacterial signaling proteins, that consist of two amphiphilic helices joined by a nonhelical connector segment. The HAMP domain of Tsr, the serine chemoreceptor of Escherichia coli, receives transmembrane input signals from the periplasmic serine binding domain and in turn modulates output signals from the Tsr kinase control domain to elicit chemotactic responses. We created random amino acid replacements at each of the 14 connector residues of Tsr-HAMP to identify those that are critical for Tsr function. In all, we surveyed 179 connector missense mutants and identified three critical residues (G235, L237, and I241) at which most replacements destroyed Tsr function and another important residue (G245) at which most replacements impaired Tsr function. The region surrounding G245 tolerated 1-residue deletions and insertions of up to 10 glycines, suggesting a role as a relatively nonspecific, flexible linker. The critical connector residues are consistent with a structural model of the Tsr-HAMP domain based on the solution structure of an isolated thermophile HAMP domain (M. Hulko, F. Berndt, M. Gruber, J. U. Linder, V. Truffault, A. Schultz, J. Martin, J. E. Schultz, A. N. Lupas, and M. Coles, Cell 126:929-940, 2006) in which G235 defines a critical turn at the C terminus of the first helix and L237 and I241 pack against the helices, perhaps to stabilize alternative HAMP signaling conformations. Most I241 lesions locked Tsr signal output in the kinase-on mode, implying that this residue is responsible mainly for stabilizing the kinase-off signaling state. In contrast, lesions at L237 resulted in a variety of aberrant output patterns, suggesting a role in toggling output between signaling states.
机译:HAMP结构域是在许多细菌信号蛋白中发现的约50个残基基序,由两个通过非螺旋连接段连接的两亲性螺旋组成。 Tsr的HAMP结构域(大肠杆菌的丝氨酸化学感受器)从周质丝氨酸结合结构域接收跨膜输入信号,进而调节Tsr激酶控制结构域的输出信号以引发趋化反应。我们在Tsr-HAMP的14个连接子残基中的每个残基上创建了随机氨基酸置换,以鉴定对Tsr功能至关重要的残基。总之,我们调查了179个连接器错义突变体,确定了三个关键残基(G235,L237和I241),其中大多数替换物破坏了Tsr功能,另一个重要残基(G245),其中大多数替换物破坏了Tsr功能。 G245周围的区域可耐受1个残基的缺失和多达10个甘氨酸的插入,这表明它是相对非特异性的柔性连接基。关键的连接子残基与基于分离的嗜热HAMP域的溶液结构的Tsr-HAMP域的结构模型一致(M.Hulko,F.Berndt,M.Gruber,JU Linder,V.Truffault,A.Schultz ,J。Martin,JE Schultz,AN Lupas和M. Coles,Cell 126:929-940,2006),其中G235定义了第一个螺旋的C末端的关键转角,L237和I241紧靠螺旋稳定其他HAMP信号构象。大多数I241病变将Tsr信号输出锁定在激酶开启模式,这表明该残基主要负责稳定激酶关闭信号状态。相反,L237处的病变导致多种异常输出模式,提示在信号状态之间切换输出中的作用。

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