From the Laboratories of Signal Transduction and.
J Biol Chem. 2014 Jan 3;289(1):565-80. doi: 10.1074/jbc.M113.466326. Epub 2013 Nov 19.
Tristetraprolin (TTP), the best known member of a class of tandem (R/K)YKTELCX8CX5CX3H zinc finger proteins, can destabilize target mRNAs by first binding to AU-rich elements (AREs) in their 3'-untranslated regions (UTRs) and subsequently promoting deadenylation and ultimate destruction of those mRNAs. This study sought to determine the roles of selected amino acids in the RNA binding domain, known as the tandem zinc finger (TZF) domain, in the ability of the full-length protein to bind to AREs within the tumor necrosis factor α (TNF) mRNA 3'-UTR. Within the CX8C region of the TZF domain, mutation of some of the residues specific to TTP, not found in other members of the TTP protein family, resulted in decreased binding to RNA as well as inhibited mRNA deadenylation and decay. Evaluation of simulation solution models revealed a distinct structure in the second zinc finger of TTP that was induced by the presence of these TTP-specific residues. In addition, mutations within the lead-in sequences preceding the first C of highly conserved residues within the CX5C or CX3H regions or within the linker region between the two fingers also perturbed both RNA binding and the simulation model of the TZF domain in complex with RNA. We conclude that, although the majority of conserved residues within the TZF domain of TTP are required for productive binding, not all residues at sequence-equivalent positions in the two zinc fingers of the TZF domain of TTP are functionally equivalent.
Tristetraprolin (TTP),串联 (R/K)YKTELCX8CX5CX3H 锌指蛋白家族中最知名的成员之一,能够通过首先结合其 3'非翻译区 (UTR) 中的 AU 丰富元件 (ARE),随后促进这些 mRNA 的脱腺苷酸化和最终降解,从而使靶 mRNA 不稳定。本研究旨在确定 RNA 结合结构域(称为串联锌指 (TZF) 结构域)中选定氨基酸在全长蛋白与肿瘤坏死因子 α (TNF) mRNA 3'UTR 内的 ARE 结合能力中的作用。在 TZF 结构域的 CX8C 区域中,突变一些特定于 TTP 而在 TTP 蛋白家族其他成员中未发现的残基,导致与 RNA 的结合减少,并抑制 mRNA 的脱腺苷酸化和降解。模拟溶液模型的评估揭示了 TTP 第二个锌指中存在这些 TTP 特异性残基所诱导的独特结构。此外,在高度保守的 CX5C 或 CX3H 区域内的第一个 C 之前的先导序列内或两个手指之间的连接区域内的突变,也会干扰 RNA 结合以及 TZF 结构域与 RNA 结合的模拟模型。我们得出结论,尽管 TTP 的 TZF 结构域内的大多数保守残基对于有效结合是必需的,但 TTP 的 TZF 结构域的两个锌指中并非所有序列等效位置的残基在功能上都是等效的。