Harris Rilee E, Rua Antonio J, Alexandrescu Andrei T
Department of Molecular and Cell Biology, University of Connecticut, Storrs, CT 06269, USA.
Biomolecules. 2025 Jul 28;15(8):1091. doi: 10.3390/biom15081091.
The gene is the site of congenital mutations linked to neurodevelopmental and musculoskeletal pathologies collectively termed ZARD (ZC4H2-Associated Rare Disorders). ZC4H2 consists of a coiled coil and a single novel zinc finger with four cysteines and two histidines, from which the protein obtains its name. Alpha Fold 3 confidently predicts a structure for the zinc finger but also for similarly sized random sequences, providing equivocal information on its folding status. We show using synthetic peptide fragments that the zinc finger of ZC4H2 is genuine and folds upon binding a zinc ion with picomolar affinity. NMR pH titration of histidines and UV-Vis of a cobalt complex of the peptide indicate its four cysteines coordinate zinc, while two histidines do not participate in binding. The experimental NMR structure of the zinc finger has a novel structural motif similar to RANBP2 zinc fingers, in which two orthogonal hairpins each contribute two cysteines to coordinate zinc. Most of the nine ZARD mutations that occur in the ZC4H2 zinc finger are likely to perturb this structure. While the ZC4H2 zinc finger shares the folding motif and cysteine-ligand spacing of the RANBP2 family, it is missing key substrate-binding residues. Unlike the NZF branch of the RANBP2 family, the ZC4H2 zinc finger does not bind ubiquitin. Since the ZC4H2 zinc finger occurs in a single copy, it is also unlikely to bind DNA. Based on sequence homology to the VAB-23 protein, the ZC4H2 zinc finger may bind RNA of a currently undetermined sequence or have alternative functions.
该基因是与神经发育和肌肉骨骼疾病相关的先天性突变位点,这些疾病统称为ZARD(ZC4H2相关罕见疾病)。ZC4H2由一个卷曲螺旋和一个带有四个半胱氨酸和两个组氨酸的新型锌指组成,该蛋白质由此得名。Alpha Fold 3自信地预测了锌指的结构,但也预测了大小相似的随机序列的结构,这为其折叠状态提供了模棱两可的信息。我们使用合成肽片段表明,ZC4H2的锌指是真实的,并且在以皮摩尔亲和力结合锌离子时会折叠。肽的组氨酸的NMR pH滴定和钴配合物的UV-Vis表明其四个半胱氨酸与锌配位,而两个组氨酸不参与结合。锌指的实验NMR结构具有与RANBP2锌指相似的新型结构基序,其中两个正交发夹各自贡献两个半胱氨酸来配位锌。ZC4H2锌指中出现的九个ZARD突变中的大多数可能会扰乱这种结构。虽然ZC4H2锌指与RANBP2家族共享折叠基序和半胱氨酸-配体间距,但它缺少关键的底物结合残基。与RANBP2家族的NZF分支不同,ZC4H2锌指不结合泛素。由于ZC4H2锌指以单拷贝形式出现,因此也不太可能结合DNA。基于与VAB-23蛋白的序列同源性,ZC4H2锌指可能结合目前序列未确定的RNA或具有其他功能。