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MNK2 deficiency potentiates β-cell regeneration via translational regulation

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

PDF) MNK2 deficiency potentiates β-cell regeneration via translational regulation

Deletion of carboxypeptidase E in beta cells disrupts proinsulin processing and alters beta cell identity in mice

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

Regulation of Mnk1 and Mnk2 activity. (A) eIF4E kinase activity of over

Volume 18 Issue 9, September 2022

Restored UBE2C expression in islets promotes β-cell regeneration in mice by ubiquitinating PER1

MNK2 deficiency potentiates β-cell regeneration via translational regulation

Analysis of β cells after injuries by inducible Ins2-DreER;H11-rox-tdT

R26-iCre efficiently labels most of cell lineages in pancreatic

Reinforcing one-carbon metabolism via folic acid/Folr1 promotes β-cell differentiation

In vitro phosphorylation and activation of Mnk2. (A) Mnk1 and Mnk2 are