4.6 Article

Interactions of CCCH zinc finger proteins with mRNA - Binding of tristetraprolin-related zinc finger proteins to Au-rich elements and destabilization of mRNA

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 275, Issue 23, Pages 17827-17837

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M001696200

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Macrophages derived from tristetraprolin (TTP)-deficient mice exhibited increased tumor necrosis factor alpha (TNF alpha) release as a consequence of increased stability of TNF alpha mRNA, TTP was then shown to destabilize TNF alpha mRNA after binding directly to the AU-rich region (ARE) of the 3'-untranslated region of the TNF alpha mRNA In mammals and in Xenopus, TTP is the prototype of a small family of three known zinc finger proteins containing two CCCH zinc fingers spaced 18 amino acids apart; a fourth more distantly related family member has been identified in Xenopus and fish. We show here that representatives of all four family members were able to bind to the TNF alpha ARE in a cell-free system and, in most cases, promote the breakdown of TNF alpha mRNA in intact cells. Because the primary sequences of these CCCH proteins are most closely related in their tandem zinc finger domains, we tested whether various fragments of TTP that contained both zinc fingers resembled the intact protein in these assays. We found that amino- and carboxyl-terminal truncated forms of TTP, as well as a 77 amino acid fragment that contained both zinc fingers, could bind to the TNF alpha ARE in cell-free cross-linking and gel shift assays. In addition, these truncated forms of TTP could also stimulate the apparent deadenylation and/or breakdown of TNF alpha mRNA in intact cells. Alignments of the tandem zinc finger domains from all four groups of homologous proteins have identified invariant residues as well as group-specific signature amino acids that presumably contribute to ARE binding and protein-specific activities, respectively.

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