Gong Sha, Wang Yujie, Zhang Wenbing
Department of Physics, Wuhan University, Wuhan, Hubei 430072, People's Republic of China.
J Chem Phys. 2015 Jul 28;143(4):045103. doi: 10.1063/1.4927390.
Riboswitches which function at the transcriptional level are sensitive to cotranscriptional folding. Based on the recently proposed theory of cotranscriptional folding, we developed a transition node approximation method to effectively decrease the conformation space of long RNA chains. Our results indicate that this approximation is reliable for calculating the cotranscriptional folding kinetics of long mRNA chains. We theoretically studied the cotranscriptional folding behavior of the yitJ and metF riboswitches in the absence/presence of S-adenosylmethionine. Although the two S-box riboswitches have similar OFF-state structures and share common features of riboswitches operated at the transcriptional level, their regulation mechanisms are different. The yitJ riboswitch is regulated by a combination of thermodynamic and kinetic mechanisms, while the metF riboswitch is solely kinetically controlled. For the yitJ riboswitch, transcriptional pausing at the U-stretch directly following the terminator decreases the amount of ligand required to trigger the switch. The different regulation mechanisms and binding affinities of the two riboswitches result from the different lengths of the anti-terminator helix, which in yitJ is short and only disrupts helix P1 of the riboswitch aptamer, but in metF is long and breaks both the helices P1 and P4.
在转录水平起作用的核糖开关对共转录折叠敏感。基于最近提出的共转录折叠理论,我们开发了一种过渡节点近似方法,以有效减少长RNA链的构象空间。我们的结果表明,这种近似方法对于计算长mRNA链的共转录折叠动力学是可靠的。我们从理论上研究了在有无S-腺苷甲硫氨酸的情况下yitJ和metF核糖开关的共转录折叠行为。尽管这两个S-盒核糖开关具有相似的关闭状态结构,并具有在转录水平起作用的核糖开关的共同特征,但它们的调控机制不同。yitJ核糖开关受热力学和动力学机制的共同调控,而metF核糖开关仅受动力学控制。对于yitJ核糖开关,在终止子之后的U序列处的转录暂停减少了触发开关所需的配体数量。这两个核糖开关不同的调控机制和结合亲和力源于抗终止子螺旋的不同长度,在yitJ中抗终止子螺旋较短,仅破坏核糖开关适体的螺旋P1,但在metF中抗终止子螺旋较长,会破坏螺旋P1和P4。