Matthews Jacqueline M, Sunde Margaret
School of Molecular and Microbial Biosciences, University of Sydney, NSW 2006, Australia.
IUBMB Life. 2002 Dec;54(6):351-5. doi: 10.1080/15216540216035.
Zinc finger domains (ZnFs) are common, relatively small protein motifs that fold around one or more zinc ions. In addition to their role as a DNA-binding module, ZnFs have recently been shown to mediate protein:protein and protein:lipid interactions. This small zinc-ligating domain, often found in clusters containing fingers with different binding specificities, can facilitate multiple, often independent intermolecular interactions between nucleic acids and proteins. Classical ZnFs, typified by TFIIIA, ligate zinc via pairs of cysteine and histidine residues but there are at least 14 different classes of Zn fingers, which differ in the nature and arrangement of their zinc-binding residues. Some GATA-type ZnFs can bind to both DNA and a variety of other proteins. Thus proteins with multiple GATA-type fingers can play a complex role in regulating transcription through the interplay of these different binding selectivities and affinities. Other ZnFs have more specific functions, such as DNA-binding ZnFs in the nuclear hormone receptor proteins and small-molecule-binding ZnFs in protein kinase C. Some classes of ZnFs appear to act exclusively in protein-only interactions. These include the RING family of ZnFs that are involved in ubiquitination processes and in the assembly of large protein complexes, LIM, TAZ, and PHD domains. We review the similarities and differences in structure and functions of different ZnF classes and highlight the versatility of this fold.
锌指结构域(ZnFs)是常见的、相对较小的蛋白质基序,围绕一个或多个锌离子折叠。除了作为DNA结合模块的作用外,最近还发现ZnFs介导蛋白质:蛋白质和蛋白质:脂质相互作用。这种小的锌结合结构域,通常存在于包含具有不同结合特异性的锌指的簇中,可以促进核酸与蛋白质之间的多种、通常是独立的分子间相互作用。以TFIIIA为代表的经典ZnFs通过半胱氨酸和组氨酸残基对连接锌,但至少有14种不同类别的锌指,它们在锌结合残基的性质和排列上有所不同。一些GATA型ZnFs可以与DNA和多种其他蛋白质结合。因此,具有多个GATA型锌指的蛋白质可以通过这些不同结合选择性和亲和力的相互作用在调节转录中发挥复杂作用。其他ZnFs具有更特定的功能,例如核激素受体蛋白中的DNA结合ZnFs和蛋白激酶C中的小分子结合ZnFs。某些类别的ZnFs似乎仅在蛋白质间相互作用中起作用。这些包括参与泛素化过程和大型蛋白质复合物组装的RING家族ZnFs、LIM、TAZ和PHD结构域。我们综述了不同ZnF类别的结构和功能的异同,并强调了这种折叠的多功能性。