Department of Biochemistry and Molecular Biology, Rudman Hall, University of New Hampshire, Durham, NH 03824, USA.
J Mol Biol. 2010 Jun 18;399(4):562-75. doi: 10.1016/j.jmb.2010.04.034. Epub 2010 May 8.
The evolutionarily conserved PUF proteins stimulate CCR4 mRNA deadenylation through binding to 3' untranslated region sequences of specific mRNA. We have investigated the mechanisms by which PUF3 in Saccharomyces cerevisiae accelerates deadenylation of the COX17 mRNA. PUF3 was shown to affect PAN2 deadenylation of the COX17 mRNA independent of the presence of CCR4, suggesting that PUF3 acts through a general mechanism to affect deadenylation. Similarly, eIF4E, the cap-binding translation initiation factor known to control CCR4 deadenylation, was shown to affect PAN2 activity in vivo. PUF3 was found to be required for eIF4E effects on COX17 deadenylation. Both eIF4E and PUF3 effects on deadenylation were shown, in turn, to necessitate a functional poly(A)-binding protein (PAB1) in which removal of the RRM1 (RNA recognition motif 1) domain of PAB1 blocked both their effects on deadenylation. While removal of the proline-rich region (P domain) of PAB1 substantially reduces CCR4 deadenylation at non-PUF3-controlled mRNA and correspondingly blocked eIF4E effects on deadenylation, PUF3 essentially bypassed this P domain requirement. These results indicate that the PAB1-mRNP structure is critical for PUF3 action. We also found that multiple components of the CCR4-NOT deadenylase complex, but not PAN2, interacted with PUF3. PUF3 appears, therefore, both to act independently of CCR4 activity, possibly through effects on PAB1-mRNP structure, and to be capable of retaining the CCR4-NOT complex.
进化上保守的 PUF 蛋白通过结合特定 mRNA 的 3'非翻译区序列来刺激 CCR4 mRNA 的脱腺苷酸化。我们研究了酿酒酵母中的 PUF3 如何加速 COX17 mRNA 的脱腺苷酸化。PUF3 被证明可以在没有 CCR4 的情况下影响 PAN2 对 COX17 mRNA 的脱腺苷酸化,这表明 PUF3 通过一种通用机制来影响脱腺苷酸化。同样,eIF4E,即已知控制 CCR4 脱腺苷酸化的帽结合翻译起始因子,也被证明可以在体内影响 PAN2 的活性。发现 PUF3 是 eIF4E 对 COX17 脱腺苷酸化影响所必需的。eIF4E 和 PUF3 对脱腺苷酸化的影响都需要一个功能齐全的多聚(A)结合蛋白(PAB1),其中 PAB1 的 RNA 识别基序 1(RRM1)域的缺失阻止了它们对脱腺苷酸化的影响。虽然 PAB1 的富含脯氨酸区域(P 结构域)的缺失大大减少了非 PUF3 控制的 mRNA 的 CCR4 脱腺苷酸化,相应地阻止了 eIF4E 对脱腺苷酸化的影响,但 PUF3 基本上绕过了这个 P 结构域的需求。这些结果表明,PAB1-mRNP 结构对于 PUF3 至关重要。我们还发现,多个 CCR4-NOT 脱腺苷酸酶复合物的成分,但不是 PAN2,与 PUF3 相互作用。因此,PUF3 似乎既可以独立于 CCR4 活性发挥作用,可能通过对 PAB1-mRNP 结构的影响,也可以保留 CCR4-NOT 复合物。