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首页> 外文期刊>The Journal of biological chemistry >Cystathionine β-Synthase (CBS) Domains 1 and 2 Fulfill Different Roles in Ionic Strength Sensing of the ATP-binding Cassette (ABC) Transporter OpuA
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Cystathionine β-Synthase (CBS) Domains 1 and 2 Fulfill Different Roles in Ionic Strength Sensing of the ATP-binding Cassette (ABC) Transporter OpuA

机译:半胱氨酸氨基氨酰β-合酶(CBS)结构域1和2在ATP结合盒(ABC)转运蛋白的离子强度感测中满足不同的作用

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The cystathionine β-synthase module of OpuA in conjunction with an anionic membrane surface acts as a sensor of internal ionic strength, which allows the protein to respond to osmotic stress. We now show by chemical modification and cross-linking studies that CBS2-CBS2 interface residues are critical for transport activity and/or ionic regulation of transport, whereas CBS1 serves no functional role. We establish that Cys residues in CBS1, CBS2, and the nucleotide-binding domain are more accessible for cross-linking at high than low ionic strength, indicating that these domains undergo conformational changes when transiting between the active and inactive state. Structural analyses suggest that the cystathionine β-synthase module is largely unstructured. Moreover, we could substitute CBS1 by a linker and preserve ionic regulation of transport. These data suggest that CBS1 serves as a linker and the structured CBS2-CBS2 interface forms a hinge point for ionic strength-dependent rearrangements that are transmitted to the nucleotide-binding domain and thereby affect translocation activity.
机译:OPUA与阴离子膜表面结合的胱天硫氨酸β-合成酶模块用作内部离子强度的传感器,这允许蛋白质响应渗透胁迫。我们现在通过化学改性和交联研究表明,CBS2-CBS2界面残留对运输活性和/或离子调节的转运至关重要,而CBS1没有功能性作用。我们建立了CBS1,CBS2和核苷酸结合结构域中的Cys残基可以高于低离子强度的交联,表明这些域在激活和无活性状态之间经过一致性变化。结构分析表明,胱硫氨酸氨基氨酸β-合酶模块主要是非结构化的。此外,我们可以通过接头替代CBS1并保持运输的离子调节。这些数据表明CBS1用作连接器,结构化的CBS2-CBS2界面形成用于离子强度依赖性重排的铰链点,其传递到核苷酸结合结构域,从而影响易位活动。

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