Nandakumar Jayakrishnan, Nair Pravin A, Shuman Stewart
Molecular Biology Program, Sloan-Kettering Institute, New York, NY 10021, USA.
Mol Cell. 2007 Apr 27;26(2):257-71. doi: 10.1016/j.molcel.2007.02.026.
NAD(+)-dependent DNA ligases (LigA) are ubiquitous in bacteria and essential for growth. Their distinctive substrate specificity and domain organization vis-a-vis human ATP-dependent ligases make them outstanding targets for anti-infective drug discovery. We report here the 2.3 A crystal structure of Escherichia coli LigA bound to an adenylylated nick, which captures LigA in a state poised for strand closure and reveals the basis for nick recognition. LigA envelopes the DNA within a protein clamp. Large protein domain movements and remodeling of the active site orchestrate progression through the three chemical steps of the ligation reaction. The structure inspires a strategy for inhibitor design.
烟酰胺腺嘌呤二核苷酸(NAD⁺)依赖性DNA连接酶(LigA)在细菌中普遍存在且对生长至关重要。与人类ATP依赖性连接酶相比,它们独特的底物特异性和结构域组织使其成为抗感染药物发现的突出靶点。我们在此报告了与腺苷酸化切口结合的大肠杆菌LigA的2.3埃晶体结构,该结构捕获了处于准备进行链封闭状态的LigA,并揭示了切口识别的基础。LigA在蛋白质夹中将DNA包裹起来。大的蛋白质结构域运动和活性位点的重塑协调了连接反应三个化学步骤的进行。该结构为抑制剂设计提供了一种策略。