Houben Klaartje, Wasielewski Emeric, Dominguez Cyril, Kellenberger Esther, Atkinson R Andrew, Timmers H Th Marc, Kieffer Bruno, Boelens Rolf
Department of NMR Spectroscopy, Bijvoet Center for Biomolecular Research, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands.
J Mol Biol. 2005 Jun 10;349(3):621-37. doi: 10.1016/j.jmb.2005.04.007. Epub 2005 Apr 21.
Zinc fingers are small structured protein domains that require the coordination of zinc for a stable tertiary fold. Together with FYVE and PHD, the RING domain forms a distinct class of zinc-binding domains, where two zinc ions are ligated in a cross-braced manner, with the first and third pairs of ligands coordinating one zinc ion, while the second and fourth pairs ligate the other zinc ion. To investigate the relationship between the stability and dynamic behaviour of the domains and the stability of the metal-binding site, we studied metal exchange for the C4C4 RING domains of CNOT4 and the p44 subunit of TFIIH. We found that Zn(2+)-Cd(2+) exchange is different between the two metal-binding sites in the C4C4 RING domains of the two proteins. In order to understand the origins of these distinct exchange rates, we studied the backbone dynamics of both domains in the presence of zinc and of cadmium by NMR spectroscopy. The differential stability of the two metal-binding sites in the RING domains, as reflected by the different metal exchange rates, can be explained by a combination of accessibility and an electrostatic ion interaction model. A greater backbone flexibility for the p44 RING domain as compared to CNOT4 may be related to the distinct types of protein-protein interactions in which the two C4C4 RING domains are involved.
锌指是小的结构化蛋白质结构域,其需要锌的配位以形成稳定的三级折叠。与FYVE和PHD一起,RING结构域形成一类独特的锌结合结构域,其中两个锌离子以交叉支撑的方式连接,第一对和第三对配体配位一个锌离子,而第二对和第四对配体连接另一个锌离子。为了研究这些结构域的稳定性和动态行为与金属结合位点稳定性之间的关系,我们研究了CNOT4的C4C4 RING结构域和TFIIH的p44亚基的金属交换。我们发现,在这两种蛋白质的C4C4 RING结构域中的两个金属结合位点之间,Zn(2+)-Cd(2+)交换是不同的。为了理解这些不同交换速率的起源,我们通过核磁共振光谱研究了在锌和镉存在下这两个结构域的主链动力学。由不同的金属交换速率所反映的RING结构域中两个金属结合位点的差异稳定性,可以通过可及性和静电离子相互作用模型的组合来解释。与CNOT4相比,p44 RING结构域更大的主链灵活性可能与这两个C4C4 RING结构域所参与的不同类型的蛋白质-蛋白质相互作用有关。