Greehey Children's Cancer Research Institute, The University of Texas Health Science Center at San Antonio, San Antonio, Texas, 78229, USA.
Department of Biochemistry and Structural Biology, The University of Texas Health Science Center at San Antonio, San Antonio, Texas, 78229, USA.
Biopolymers. 2023 May;114(5):e23536. doi: 10.1002/bip.23536. Epub 2023 Mar 17.
EWS is a member of the FET family of RNA/DNA binding proteins that regulate crucial phases of nucleic acid metabolism. EWS comprises an N-terminal low-complexity domain (LCD) and a C-terminal RNA-binding domain (RBD). The RBD is further divided into three RG-rich regions, which flank an RNA-recognition motif (RRM) and a zinc finger (ZnF) domain. Recently, EWS was shown to regulate R-loops in Ewing sarcoma, a pediatric bone and soft-tissue cancer in which a chromosomal translocation fuses the N-terminal LCD of EWS to the C-terminal DNA binding domain of the transcription factor FLI1. Though EWS was shown to directly bind R-loops, the binding mechanism was not elucidated. In the current study, the RBD of EWS was divided into several constructs, which were subsequently assayed for binding to various nucleic acid structures expected to form at R-loops, including RNA stem-loops, DNA G-quadruplexes, and RNA:DNA hybrids. EWS interacted with all three nucleic acid structures with varying affinities and multiple domains contributed to binding each substrate. The RRM and RG2 region appear to bind nucleic acids promiscuously while the ZnF displayed more selectivity for single-stranded structures. With these results, the structural underpinnings of EWS recognition and binding of R-loops and other nucleic acid structures is better understood.
EWS 是 FET 家族 RNA/DNA 结合蛋白的成员之一,可调节核酸代谢的关键阶段。EWS 由 N 端低复杂度结构域(LCD)和 C 端 RNA 结合结构域(RBD)组成。RBD 进一步分为三个富含 RG 的区域,这些区域侧翼是 RNA 识别基序(RRM)和锌指(ZnF)结构域。最近,研究表明 EWS 在尤文肉瘤中调节 R 环,尤文肉瘤是一种儿科骨和软组织癌,其染色体易位将 EWS 的 N 端 LCD 融合到转录因子 FLI1 的 C 端 DNA 结合域。尽管已经表明 EWS 可以直接结合 R 环,但结合机制尚未阐明。在本研究中,将 EWS 的 RBD 分成几个构建体,随后检测它们与预计在 R 环中形成的各种核酸结构的结合,包括 RNA 茎环、DNA G-四链体和 RNA:DNA 杂交体。EWS 与所有三种核酸结构以不同的亲和力相互作用,并且多个结构域有助于结合每种底物。RRM 和 RG2 区域似乎可以随意结合核酸,而 ZnF 对单链结构显示出更高的选择性。有了这些结果,更好地理解了 EWS 识别和结合 R 环和其他核酸结构的结构基础。