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首页> 外文期刊>Biophysical Journal >Stability and Conformation of a Chemoreceptor HAMP Domain Chimera Correlates with Signaling Properties
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Stability and Conformation of a Chemoreceptor HAMP Domain Chimera Correlates with Signaling Properties

机译:化学聚合物恒温域嵌合体的稳定性和构象与信号性质相关

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HAMP domains are dimeric, four-helix bundles that transduce conformational signals in bacterial receptors. Genetic studies of the Escherichia coli serine receptor (Tsr) provide an opportunity to understand HAMP conformational behavior in terms of functional output. To increase its stability, the Tsr HAMP domain was spliced into a poly-HAMP unit from the Pseudomonas aeruginosa Aer2 receptor. Within the chimera, the Tsr HAMP undergoes a thermal melting transition at a temperature much lower than that of the Aer2 HAMP domains. Pulse-dipolar electron spin resonance spectroscopy and site-specific spin-labeling confirm that the Tsr HAMP maintains a four-helix bundle. Pulse-dipolar electron spin resonance spectroscopy was also used to study three well-characterized HAMP mutational phenotypes: those that cause flagella rotation that is counterclockwise (CCW) A and kinase-off; CCW B and also kinase-off; and, clockwise (CW) and kinase-on. Conformational properties of the three HAMP variants support a biphasic model of dynamic bundle stability, but also indicate distinct conformational changes within the helix bundle. Functional kinase-on (CW) and kinase-off (CCW A) states differ by concerted changes in the positions of spin-label sites at the base of the bundle. Opposite shifts in the subunit separation distances of neighboring residues at the C-termini of the alpha 1 and alpha 2 helices are consistent with a helix scissors motion or a gearbox rotational model of HAMP activation. In the drastic kinase-off lesion of CCW B, the alpha 1 helices unfold and the alpha 2 helices form a tight two-helix coiled-coil. The substitution of a critical residue in the Tsr N-terminal linker or control cable reduces conformational heterogeneity at the N-terminus of alpha 1 but does not affect structure at the C-terminus of alpha 2. Overall, the data suggest that transitions from on-to off-states involve decreased motional amplitudes of the Tsr HAMP coupled with helix rotations and movements toward a two-helix packing mode.
机译:Hamp域是二聚体,四螺旋束,其在细菌受体中转换构象信号。大肠杆菌丝氨酸受体(TSR)的遗传研究提供了在功能输出方面理解汉普构象行为的机会。为了提高其稳定性,将TSR HAMP结构域拼接到来自假单胞菌Aeruginosa Aer2受体的多堵塞单元中。在嵌合体内,TSR Hamp在远低于AER2 HAMP结构域的温度下进行热熔过转变。脉冲 - 偶极电子自旋共振光谱和现场特定的旋转标签确认TSR HAMP保持了四螺旋束。脉冲 - 偶极电子旋转共振光谱还用于研究三种特征良好的蛇形突变表型:导致壁球旋转的那些逆时针(CCW)A和激酶OFF; CCW B和Kinase-Off;并且,顺时针(CW)和激酶ON。三个隆起变体的构象性能支持动态束稳定性的双相模型,但也表示螺旋束内的不同构象变化。功能性激酶接通(CW)和激酶 - 截止(CCW A)各种各种通过束底部旋转标签部位的位置的齐节变化而不同。相邻的偏移在α1和α2螺旋的C-Termini的相邻残留物的相邻残留的距离与螺旋剪刀运动或跳跃激活的齿轮箱旋转模型一致。在CCW B的激烈激酶OFF病变中,α1螺旋展开,α2螺旋形成紧密的双螺旋卷线圈。在TSR N-末端接头或控制电缆中取代临界残留物在α1的N-末端降低了构象异质性,但不会影响α2的C末端的结构。总体而言,数据表明转型 - 偏离状态涉及TSR HAMP的动机振幅,与螺旋旋转和朝向双螺旋填料模式的移动。

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