Linderstrøm-Lang Centre for Protein Science, University of Copenhagen, Ole Maaløes Vej 5, 2200, Copenhagen N, Denmark.
Structural Biology and NMR Laboratory, University of Copenhagen, Ole Maaløes Vej 5, 2200, Copenhagen N, Denmark.
Cell Mol Life Sci. 2024 May 30;81(1):245. doi: 10.1007/s00018-024-05252-w.
DNA replication is a tightly coordinated event carried out by a multiprotein replication complex. An essential factor in the bacterial replication complex is the ring-shaped DNA sliding clamp, β-clamp, ensuring processive DNA replication and DNA repair through tethering of polymerases and DNA repair proteins to DNA. β -clamp is a hub protein with multiple interaction partners all binding through a conserved clamp binding sequence motif. Due to its central role as a DNA scaffold protein, β-clamp is an interesting target for antimicrobial drugs, yet little effort has been put into understanding the functional interactions of β-clamp. In this review, we scrutinize the β-clamp structure and dynamics, examine how its interactions with a plethora of binding partners are regulated through short linear binding motifs and discuss how contexts play into selection. We describe the dynamic process of clamp loading onto DNA and cover the recent advances in drug development targeting β-clamp. Despite decades of research in β-clamps and recent landmark structural insight, much remains undisclosed fostering an increased focus on this very central protein.
DNA 复制是一个由多蛋白复制复合物紧密协调的事件。细菌复制复合物中的一个重要因素是环形 DNA 滑动夹,β-夹,通过将聚合酶和 DNA 修复蛋白固定在 DNA 上,确保了连续的 DNA 复制和 DNA 修复。β-夹是一种具有多个相互作用伙伴的中心蛋白,所有相互作用伙伴都通过一个保守的夹结合序列基序结合。由于其作为 DNA 支架蛋白的核心作用,β-夹是抗菌药物的一个有趣的靶点,但在理解 β-夹的功能相互作用方面几乎没有付出努力。在这篇综述中,我们仔细研究了 β-夹的结构和动态,研究了其与众多结合伙伴的相互作用如何通过短线性结合基序进行调节,并讨论了上下文如何在选择中发挥作用。我们描述了夹加载到 DNA 上的动态过程,并涵盖了针对 β-夹的药物开发的最新进展。尽管对 β-夹进行了几十年的研究,并取得了最近具有里程碑意义的结构见解,但仍有许多未解之谜,这促使人们更加关注这个非常核心的蛋白质。