Department of Physics and Astronomy and LaserLab, Vrije Universiteit Amsterdam, De Boelelaan 1081, 1081 HV Amsterdam, The Netherlands.
Int J Mol Sci. 2023 Feb 1;24(3):2806. doi: 10.3390/ijms24032806.
Single-stranded DNA-binding proteins (SSBs) play vital roles in DNA metabolism. Proteins of the SSB family exclusively and transiently bind to ssDNA, preventing the DNA double helix from re-annealing and maintaining genome integrity. In the meantime, they interact and coordinate with various proteins vital for DNA replication, recombination, and repair. Although SSB is essential for DNA metabolism, proteins of the SSB family have been long described as accessory players, primarily due to their unclear dynamics and mechanistic interaction with DNA and its partners. Recently-developed single-molecule tools, together with biochemical ensemble techniques and structural methods, have enhanced our understanding of the different coordination roles that SSB plays during DNA metabolism. In this review, we discuss how single-molecule assays, such as optical tweezers, magnetic tweezers, Förster resonance energy transfer, and their combinations, have advanced our understanding of the binding dynamics of SSBs to ssDNA and their interaction with other proteins partners. We highlight the central coordination role that the SSB protein plays by directly modulating other proteins' activities, rather than as an accessory player. Many possible modes of SSB interaction with protein partners are discussed, which together provide a bigger picture of the interaction network shaped by SSB.
单链 DNA 结合蛋白(SSBs)在 DNA 代谢中发挥着至关重要的作用。SSB 家族的蛋白专门且短暂地与单链 DNA 结合,防止 DNA 双链重新退火并维持基因组的完整性。同时,它们与各种对 DNA 复制、重组和修复至关重要的蛋白质相互作用和协调。尽管 SSB 对 DNA 代谢至关重要,但 SSB 家族的蛋白长期以来一直被描述为辅助因子,主要是因为它们与 DNA 及其伴侣的动态和机械相互作用不明确。最近开发的单分子工具,以及生化整体技术和结构方法,增强了我们对 SSB 在 DNA 代谢过程中发挥的不同协调作用的理解。在这篇综述中,我们讨论了单分子测定,如光学镊子、磁镊、荧光共振能量转移及其组合,如何提高我们对 SSB 与 ssDNA 结合动力学及其与其他蛋白质伴侣相互作用的理解。我们强调了 SSB 通过直接调节其他蛋白质的活性而不是作为辅助因子发挥的核心协调作用。讨论了 SSB 与蛋白质伴侣相互作用的许多可能模式,这些模式共同提供了由 SSB 形成的相互作用网络的更全面的图景。