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作为细菌RNA聚合酶(RNAP)的组成型辅助因子,sigma70和sigma54分别参与了原核细胞不同类型基因的转录起始调控。sigma70负责管家基因的自发转录起始;而sigma54负责应激信号相关的基因转录起始。sigma54与RNAP形成复合物后,会通过空间阻滞的方式阻碍DNA进入RNAP中,抑制基因转录起始。当细胞环境变化后,特定应激信号会通过细菌增强子结合蛋白(bEBP)诱发sigma54的构象发生变化,解除sigma54对RNAP的抑制,启动sigma54依赖的基因转录。最近的结构生物学研究揭示了sigma54依赖性转录起始的若干复合物结构,包括全酶、封闭式复合物、2个中间状态复合物及开放式复合物。通过分析这些转录起始复合物的结构,本文阐述了转录起始过程中复合物的结构变化。描述并分析了sigma54和bEBP在转录起始过程中所发挥的功能。本文有助于了解转录起始分子水平的变化,为深入理解sigma54和bEBP促进转录起始的分子机制提供了参考。  相似文献   

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The motions of large systems such as the ribosome are not fully accessible with conventional molecular simulations. A coarse-grained, less-than-atomic-detail model such as the anisotropic network model (ANM) is a convenient informative tool to study the cooperative motions of the ribosome. The motions of the small 30S subunit, the larger 50S subunit, and the entire 70S assembly of the two subunits have been analyzed using ANM. The lowest frequency collective modes predicted by ANM show that the 50S subunit and 30S subunit are strongly anti-correlated in the motion of the 70S assembly. A ratchet-like motion is observed that corresponds well to the experimentally reported ratchet motion. Other slow modes are also examined because of their potential links to the translocation steps in the ribosome. We identify several modes that may facilitate the E-tRNA exiting from the assembly. The A-site t-RNA and P-site t-RNA are found to be strongly coupled and positively correlated in these slow modes, suggesting that the translocations of these two t-RNAs occur simultaneously, while the motions of the E-site t-RNA are less correlated, and thus less likely to occur simultaneously. Overall the t-RNAs exhibit relatively large deformations. Animations of these slow modes of motion can be viewed at.  相似文献   

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