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Human eukaryotic translation initiation factor 4G (eIF4G) recruits Mnk1 to phosphorylate eIF4E

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TLDR
It is shown that Mnk1 interacts with the C‐terminal region of the translational inhibitor p97, an eIF4G‐related protein that does not bind eif4E, raising the possibility that p97 can block phosphorylation of eIF2E by sequestering Mnk2, the recently cloned MAPK‐activated protein kinase.
Abstract
Human eukaryotic translation initiation factor 4E (eIF4E) binds to the mRNA cap structure and interacts with eIF4G, which serves as a scaffold protein for the assembly of eIF4E and eIF4A to form the eIF4F complex. eIF4E is an important modulator of cell growth and proliferation. It is the least abundant component of the translation initiation machinery and its activity is modulated by phosphorylation and interaction with eIF4E-binding proteins (4E-BPs). One strong candidate for the eIF4E kinase is the recently cloned MAPK-activated protein kinase, Mnk1, which phosphorylates eIF4E on its physiological site Ser209 in vitro. Here we report that Mnk1 is associated with the eIF4F complex via its interaction with the C-terminal region of eIF4G. Moreover, the phosphorylation of an eIF4E mutant lacking eIF4G-binding capability is severely impaired in cells. We propose a model whereby, in addition to its role in eIF4F assembly, eIF4G provides a docking site for Mnk1 to phosphorylate eIF4E. We also show that Mnk1 interacts with the C-terminal region of the translational inhibitor p97, an eIF4G-related protein that does not bind eIF4E, raising the possibility that p97 can block phosphorylation of eIF4E by sequestering Mnk1.

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References
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Journal ArticleDOI

Direct repeats as selective response elements for the thyroid hormone, retinoic acid, and vitamin D3 receptors.

TL;DR: This study points to the general importance of tandem repeat hormone response elements and suggests a simple physiologic code exists in which half-site spacing plays a critical role in achieving selective hormonal response.
Journal ArticleDOI

Insulin-dependent stimulation of protein synthesis by phosphorylation of a regulator of 5'-cap function

TL;DR: The cloning is described of two related human complementary DNAs encoding polypeptides that interact specifically with the translation initiation factor elF-4E, which binds to the messenger RNA 5'-cap structure, thereby relieving the translational inhibition.
Book ChapterDOI

Protein kinase phosphorylation site sequences and consensus specificity motifs: tabulations.

TL;DR: This chapter presents a table of phosphorylation site sequences for protein-serine/threonine and protein-tyrosine kinases, containing consensus phosphorylated site motifs for each enzyme.
Journal ArticleDOI

Mitogen-activated protein kinases activate the serine/threonine kinases Mnk1 and Mnk2

TL;DR: Mnk1 may define a convergence point between the growth factor‐activated and one of the stress‐activated protein kinase cascades and is a candidate to phosphorylate eIF‐4E in cells.
Journal ArticleDOI

The mRNA 5' cap-binding protein eIF4E and control of cell growth.

TL;DR: In this article, a review of recent findings on the MAP kinase signalling pathway that leads to phosphorylation of eIF4E and on pathways that regulate repression of eif4E function is presented.
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