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Interdomain Interactions within the Two-Component Heme-Based Sensor DevS from Mycobacterium tuberculosis

机译:结核分枝杆菌两成分基于血红素的传感器DevS中的域间相互作用。

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DevS is the sensor of the DevS-DevR two-component regulatory system of Mycobacterium tuberculosis.This system is thought to be responsible for initiating entrance of this bacterium into the nonreplicating persistent state in response to NO and anaerobiosis.DevS is modular in nature and consists of two N-terminal GAF domains and C-terminal histidine kinase and ATPase domains.The first GAF domain (GAF A) binds heme,and this cofactor is thought to be responsible for sensing environmental stimuli,but the function of the second GAF domain (GAF B) is unknown.Here we report the RR characterization of full-length DevS (FL DevS) as well as truncated proteins consisting of the single GAF A domain (GAF A DevS) and both GAF domains (GAF A/B) in both oxidation states and bound to the exogenous ligands CO,NO,and O_2.The results indicate that the GAF B domain increases the specificity with which the distal heme pocket of the GAF A domain interacts with CO and NO as opposed to O2.Specifically,while two comparable populations of CO and NO adducts are observed in GAF A DevS,only one of these two conformers is present in significant concentration in the GAF A/B and FL DevS proteins.In contrast,hydrogen bond interactions at the bound oxygen in the oxy complexes are conserved in all DevS constructs.The comparison of the data obtained with the O_2 complexes with those of the CO and NO complexes suggests a model for ligand discrimination which relies on a specific hydrogen-bonding network with bound O_2.It also suggests that interactions between the two GAF domains are responsible for transduction of structural changes at the heme domain that accompany ligand binding/ dissociation to modulate activity at the kinase domain.
机译:DevS是结核分枝杆菌DevS-DevR两组分调节系统的传感器,该系统被认为负责响应NO和厌氧菌而使细菌进入非复制性持久状态.DevS本质上是模块化的,由两个N末端GAF结构域和C末端组氨酸激酶和ATPase结构域。第一个GAF结构域(GAFA)结合血红素,该辅因子被认为负责感知环境刺激,但第二个GAF结构域的功能( GAF B)未知,这里我们报道了全长DevS(FL DevS)以及由单个GAF A结构域(GAF A DevS)和两个GAF结构域(GAF A / B)组成的截短蛋白的RR特征氧化态与外源配体CO,NO和O_2结合。结果表明,GAF B结构域增加了GAF A结构域远端血红素口袋与CO和NO相互作用的特异性,而与O2相反。 tw o在GAF A DevS中观察到相当数量的CO和NO加合物,GAF A / B和FL DevS蛋白中只有这两个构象异构体中的浓度很高。相反,氧中结合氧的氢键相互作用在所有的DevS构造中,复合物都是保守的.O_2络合物与CO和NO络合物的数据比较表明,配体识别模型依赖于具有结合的O_2的特定氢键网络,也表明相互作用两个GAF结构域之间的相互作用负责在血红素结构域的结构变化的传导,该结构变化伴随配体结合/解离来调节激酶结构域的活性。

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