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MNK2 deficiency potentiates β-cell regeneration via translational

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MNK1 and MNK2 mediate adverse effects of high-fat feeding in distinct ways

MNK1 and MNK2 mediate adverse effects of high-fat feeding in distinct ways

MNK2 deficiency potentiates β-cell regeneration via translational regulation

Habib Rezanejad, PhD. - MacEwan University

A small noncoding RNA links ribosome recovery and translation control to dedifferentiation during salamander limb regeneration - ScienceDirect

MNK2 deficiency potentiates β-cell regeneration via translational regulation

Pre-existing beta cells but not progenitors contribute to new beta cells in the adult pancreas

capCLIP: a new tool to probe translational control in human cells through capture and identification of the eIF4E-mRNA interactome. - Abstract - Europe PMC

Model for the role of MNK1 and MNK2 in mediating the adverse effects of

Non-beta cells do not generate new beta cells during

Genetic modulation of Sik-family members regulates β cell

Adjudin improves beta cell maturation, hepatic glucose uptake and glucose homeostasis

eIF4E Antibody 9742S from Cell Signaling Technology

MKNK2 - Wikipedia

MNK2 deficiency potentiates β-cell regeneration via translational regulation