BIOCEV, Institute of Biotechnology of the Czech Academy of Sciences, Vestec, Czechia.
BIOCEV, 1st Faculty of Medicine, Charles University, Vestec, Czechia.
PLoS One. 2024 Oct 7;19(10):e0309134. doi: 10.1371/journal.pone.0309134. eCollection 2024.
The ISWI family protein SMARCA5 contains the ATP-binding pocket that coordinates the catalytic Mg2+ ion and water molecules for ATP hydrolysis. In this study, we demonstrate that SMARCA5 can also possess an alternative metal-binding ability. First, we isolated SMARCA5 on the cobalt column (IMAC) to near homogeneity. Examination of the interactions of SMARCA5 with metal-chelating supports showed that, apart from Co2+, it binds to Cu2+, Zn2+ and Ni2+. The efficiency of the binding to the last-listed metal was influenced by the chelating ligand, resulting in a strong preference for Ni-NTA over the Ni-CM-Asp equivalent. To gain insight in the preferential affinity for the Ni-NTA ligand, QM calculations were performed on model systems and metal-ligand complexes with a limited protein fragment of SMARCA5 containing the double-histidine (dHis) motif. The calculations correlated the observed affinity with the relative stability of the d-block metals to tetradentate ligand coordination over tridentate, as well as their overall octahedral coordination capacity. Likewise, binding free energies derived from model imidazole complexes mirrored the observed Ni-NTA/Ni-CM-Asp preferential affinity. Finally, similar calculations on complexes with a SMARCA5 peptide fragment derived from the AlphaFold structural prediction, captured almost accurately the expected relative stability of the TM complexes, and produced a large energetic separation (~10 kcal∙mol-1) between Ni-NTA and Ni-CM-Asp in favour of the former.
ISWI 家族蛋白 SMARCA5 含有与 ATP 水解相关的结合口袋,能协调催化 Mg2+离子和水分子。在本研究中,我们证明 SMARCA5 还具有替代金属结合能力。首先,我们通过钴柱(IMAC)将 SMARCA5 分离至近均相。对 SMARCA5 与金属螯合支持物相互作用的研究表明,除 Co2+外,它还与 Cu2+、Zn2+和 Ni2+结合。与最后一种列出的金属的结合效率受到螯合剂配体的影响,导致 Ni-NTA 比 Ni-CM-Asp 更具优势。为了深入了解对 Ni-NTA 配体的优先亲和力,我们对模型体系和包含双组氨酸(dHis)基序的 SMARCA5 有限蛋白片段的金属-配体复合物进行了 QM 计算。计算结果将观察到的亲和力与 d 区金属对四配位体的相对稳定性以及它们的整体八配位体能力相关联。同样,来自模型咪唑复合物的结合自由能反映了观察到的 Ni-NTA/Ni-CM-Asp 优先亲和力。最后,对源自 AlphaFold 结构预测的 SMARCA5 肽片段复合物的类似计算,几乎准确地捕捉到 TM 复合物的预期相对稳定性,并产生了 Ni-NTA 和 Ni-CM-Asp 之间的大能量分离(~10 kcal·mol-1),有利于前者。