Department of Chemistry, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA, USA.
Department of Biology, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA, USA.
Metallomics. 2022 Jun 3;14(6). doi: 10.1093/mtomcs/mfac030.
Metalloenzymes catalyze a diverse set of challenging chemical reactions that are essential for life. These metalloenzymes rely on a wide range of metallocofactors, from single metal ions to complicated metallic clusters. Incorporation of metal ions and metallocofactors into apo-proteins often requires the assistance of proteins known as metallochaperones. Nucleoside triphosphate hydrolases (NTPases) are one important class of metallochaperones and are found widely distributed throughout the domains of life. These proteins use the binding and hydrolysis of nucleoside triphosphates, either adenosine triphosphate or guanosine triphosphate, to carry out highly specific and regulated roles in the process of metalloenzyme maturation. Here, we review recent literature on NTPase metallochaperones and describe the current mechanistic proposals and available structural data. By using representative examples from each type of NTPase, we also illustrate the challenges in studying these complicated systems. We highlight open questions in the field and suggest future directions. This minireview is part of a special collection of articles in memory of Professor Deborah Zamble, a leader in the field of nickel biochemistry.
金属酶催化了一系列具有挑战性的化学反应,这些反应对生命至关重要。这些金属酶依赖于广泛的金属辅因子,从单一的金属离子到复杂的金属簇。金属离子和金属辅因子掺入脱辅基蛋白通常需要称为金属伴侣蛋白的蛋白质的帮助。核苷三磷酸水解酶 (NTPase) 是一类重要的金属伴侣蛋白,广泛分布于生命领域。这些蛋白质利用核苷三磷酸(即三磷酸腺苷或三磷酸鸟苷)的结合和水解,在金属酶成熟过程中发挥高度特异性和调节作用。在这里,我们回顾了关于 NTPase 金属伴侣蛋白的最新文献,并描述了当前的机制建议和可用的结构数据。通过使用每种 NTPase 的代表性例子,我们还说明了研究这些复杂系统的挑战。我们强调了该领域的悬而未决的问题,并提出了未来的方向。这篇小综述是为纪念镍生物化学领域的领军人物 Deborah Zamble 教授而特别收录的一系列文章的一部分。