Vemulapalli Sridhar, Hashemi Mohtadin, Lyubchenko Yuri L
Department of Pharmaceutical Sciences, College of Pharmacy, University of Nebraska Medical Center, Omaha, NE 68198-6025, USA.
Int J Mol Sci. 2021 Dec 25;23(1):212. doi: 10.3390/ijms23010212.
The assembly of synaptic protein-DNA complexes by specialized proteins is critical for bringing together two distant sites within a DNA molecule or bridging two DNA molecules. The assembly of such synaptosomes is needed in numerous genetic processes requiring the interactions of two or more sites. The molecular mechanisms by which the protein brings the sites together, enabling the assembly of synaptosomes, remain unknown. Such proteins can utilize sliding, jumping, and segmental transfer pathways proposed for the single-site search process, but none of these pathways explains how the synaptosome assembles. Here we used restriction enzyme SfiI, that requires the assembly of synaptosome for DNA cleavage, as our experimental system and applied time-lapse, high-speed AFM to directly visualize the site search process accomplished by the SfiI enzyme. For the single-site SfiI-DNA complexes, we were able to directly visualize such pathways as sliding, jumping, and segmental site transfer. However, within the synaptic looped complexes, we visualized the threading and site-bound segment transfer as the synaptosome-specific search pathways for SfiI. In addition, we visualized sliding and jumping pathways for the loop dissociated complexes. Based on our data, we propose the site-search model for synaptic protein-DNA systems.
由特殊蛋白质组装突触蛋白-DNA复合物对于将DNA分子内两个远距离位点聚集在一起或连接两个DNA分子至关重要。在众多需要两个或更多位点相互作用的遗传过程中都需要组装这样的突触小体。蛋白质将这些位点聚集在一起从而实现突触小体组装的分子机制仍然未知。这类蛋白质可以利用为单一位点搜索过程提出的滑动、跳跃和片段转移途径,但这些途径都无法解释突触小体是如何组装的。在这里,我们使用需要组装突触小体才能进行DNA切割的限制性内切酶SfiI作为我们的实验系统,并应用延时、高速原子力显微镜直接观察SfiI酶完成的位点搜索过程。对于单一位点的SfiI-DNA复合物,我们能够直接观察到滑动、跳跃和片段位点转移等途径。然而,在突触环状复合物中,我们观察到穿线和位点结合的片段转移是SfiI特异性的突触小体搜索途径。此外,我们还观察到环状解离复合物的滑动和跳跃途径。基于我们的数据,我们提出了突触蛋白-DNA系统的位点搜索模型。