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Characterization of GA mRNA turnover using an in vitro degradation assay
Author(s) -
Lee Yeon Jean,
Curthoys Norman P.
Publication year - 2006
Publication title -
the faseb journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.709
H-Index - 277
eISSN - 1530-6860
pISSN - 0892-6638
DOI - 10.1096/fasebj.20.5.a956-a
Subject(s) - messenger rna , microbiology and biotechnology , chemistry , in vitro , biochemistry , biology , gene
During metabolic acidosis, the level of renal glutaminase (GA) is significantly increased. This adaptation contributes to the increased synthesis of NH 4 + and HCO 3 − ions from glutamine to partially restore acid‐base balance. The increased expression results from an increased stability of the GA mRNA that is mediated by two 8‐base AU‐sequences that function as a pH‐response element (pHRE). This sequence binds ζ‐crystallin/NADPH:quinone reductase (ζ‐cryst) and AUF1 with high affinity and specificity. An in vitro mRNA decay assay was developed using a cytosolic extract of WKPT cells, an established line of rat renal proximal tubule cells. A 29‐nt segment containing the pHRE of the GA mRNA was cloned into the pGemA 0 and pGemA 60 vectors. The two plasmids were transcribed in the presence of [α‐ 32 P]UTP and 500 μM 7met GpppG to produce mRNAs that either lack or contain a 60‐nt poly(A) tail. As a control, the in vitro decay of pGemA 60 and pGemTNF α ARE‐A 60 were also analyzed. The turnover of the pGemGA‐A 60 mRNA was initiated by deadenylation or shortening of the poly‐A tail. After deadenylation, the body of the transcript was rapidly degraded. In contrast, the pGem‐A 60 and the pGemTNF α ARE‐A 60 mRNAs were relatively stable when incubated with the WKPT extract. Deadenylation and subsequent decay of the pGemGA‐A 60 mRNA was stimulated by addition of purified recombinant tristetraprolin (TTP) and was inhibited by addition of purified rat renal ζ‐cryst. The addition of TTP also greatly enhanced deadenylation and degradation of the pGemTNF α ARE‐A 60 mRNA, but not the pGem‐A 60 mRNA. The addition of ζ‐cryst had little effect on the turnover of either of the control mRNAs. These data indicated that specific binding of ζ‐cryst to the pHRE contributes to the enhanced stability of the GA mRNA during acidosis. Support: National Institute of Health Minority Supplement to Grant DK 37124