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Kinetics and Thermodynamics of DbpA Protein’s C-Terminal Domain Interaction with RNA

机译:DbpA蛋白C末端域与RNA相互作用的动力学和热力学

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摘要

DbpA is an Escherichia coli DEAD-box RNA helicase implicated in RNA structural isomerization in the peptide bond formation site. In addition to the RecA-like catalytic core conserved in all of the members of DEAD-box family, DbpA contains a structured C-terminal domain, which is responsible for anchoring DbpA to hairpin 92 of 23S ribosomal RNA during the ribosome assembly process. Here, surface plasmon resonance was used to determine the equilibrium dissociation constant and the microscopic rate constants of the DbpA C-terminal domain association and dissociation to a fragment of 23S ribosomal RNA containing hairpin 92. Our results show that the DbpA protein’s residence time on the RNA is 10 times longer than the time DbpA requires to hydrolyze one ATP. Thus, our data suggest that once bound to the intermediate ribosomal particles via its RNA-binding domain, DbpA could unwind a number of double-helix substrates before its dissociation from the ribosomal particles.
机译:DbpA是一种大肠杆菌DEAD-box RNA解旋酶,在肽键形成位点涉及RNA结构异构化。除了在DEAD-box家族的所有成员中都保守的类似RecA的催化核心外,DbpA还包含一个结构化的C末端结构域,该结构域负责在核糖体组装过程中将DbpA锚定在23S核糖体RNA的发夹92上。在这里,表面等离振子共振被用来确定平衡解离常数和DbpA C末端域缔合和解离与包含发夹92的23S核糖体RNA片段的微观速率常数。 RNA比DbpA水解一种ATP所需的时间长10倍。因此,我们的数据表明,一旦DbpA通过其RNA结合结构域与中间核糖体颗粒结合,DbpA可能会在其与核糖体颗粒解离之前解开许多双螺旋底物。

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