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The spatial organization of non-homologous end joining: From bridging to end joining

机译:非同源末端连接的空间组织:从桥接到末端连接

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摘要

Non-homologous end joining (NHEJ) repairs DNA double-strand breaks generated by DNA damage and also those occurring in V(D)J recombination in immunoglobulin and T cell receptor production in the immune system. In NHEJ DNA-PKcs assembles with Ku heterodimer on the DNA ends at double-strand breaks, in order to bring the broken ends together and to assemble other proteins, including DNA ligase IV (LigIV), required for DNA repair. Here we focus on structural aspects of the interactions of LigIV with XRCC4, XLF, Artemis and DNA involved in the bridging and end-joining steps of NHEJ. We begin with a discussion of the role of XLF, which interacts with Ku and forms a hetero-filament with XRCC4; this likely forms a scaffold bridging the DNA ends. We then review the well-defined interaction of XRCC4 with LigIV, and discuss the possibility of this complex interrupting the filament formation, so positioning the ligase at the correct positions close to the broken ends. We also describe the interactions of LigIV with Artemis, the nuclease that prepares the ends for ligation and also interacts with DNA-PK. Lastly we review the likely affects of Mendelian mutations on these multiprotein assemblies and their impacts on the form of inherited disease.
机译:非同源末端连接(NHEJ)修复DNA损伤产生的DNA双链断裂,以及免疫系统中免疫球蛋白和T细胞受体产生的V(D)J重组中发生的断裂。在NHEJ中,DNA-PKcs在双链断裂处与Ku异二聚体在DNA末端组装,以使断裂的末端聚集在一起,并组装DNA修复所需的其他蛋白质,包括DNA连接酶IV(LigIV)。在这里,我们专注于LigIV与XRCC4,XLF,Artemis和DNA相互作用的结构方面,这些相互作用涉及NHEJ的桥接和末端连接步骤。我们首先讨论XLF的作用,它与Ku相互作用并与XRCC4形成异丝。这很可能形成桥接DNA末端的支架。然后,我们审查了XRCC4与LigIV的明确定义的相互作用,并讨论了这种复合物中断细丝形成的可能性,因此将连接酶定位在靠近断裂末端的正确位置。我们还描述了LigIV与Artemis的相互作用,Artemis是为连接准备的末端的核酸酶,还与DNA-PK相互作用。最后,我们回顾了孟德尔突变对这些多蛋白装配体的可能影响及其对遗传疾病形式的影响。

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