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Journal of Cell Science|April 23, 2009
A germline-specific isoform of eIF4E (IFE-1) is required for efficient translation of stored mRNAs and maturation of both oocytes and spermMelissa A Henderson, Elizabeth Cronland, Steve Dunkelbarger, et al.Molecular and Cellular Biology|December 17, 2004
Translation of a small subset of Caenorhabditis elegans mRNAs is dependent on a specific eukaryotic translation initiation factor 4E isoformTzvetanka D Dinkova, Brett D Keiper, Nadejda L Korneeva, et al.The FEBS Journal|May 19, 2018
Subunits of the DNA polymerase alpha-primase complex promote Notch-mediated proliferation with discrete and shared functions in C. elegans germlineDong Suk Yoon, Dong Seok Cha, Mohammad A Alfhili, et al.Developmental Biology|August 10, 2015
Mammalian target of rapamycin complex 1 (mTORC1) Is required for mouse spermatogonial differentiation in vivoJonathan T Busada, Bryan A Niedenberger, Ellen K Velte, et al.Pharmacological Reviews|July 19, 2025
Cell and tissue reprogramming: Unlocking a new era in medical drug discoveryChandan K Sen, Andrew J Friday, Sashwati RoyThe EMBO Journal|August 29, 2002
Discrimination between mono- and trimethylated cap structures by two isoforms of Caenorhabditis elegans eIF4EHiroshi Miyoshi, Donard S Dwyer, Brett D Keiper, et al.Journal of Cell Science|June 10, 2010
A C. elegans eIF4E-family member upregulates translation at elevated temperatures of mRNAs encoding MSH-5 and other meiotic crossover proteinsAnren Song, Sara Labella, Nadejda L Korneeva, et al.Genetics|March 22, 2025
Two eIF4E paralogs occupy separate germ granule messenger ribonucleoproteins that mediate mRNA repression and translational activationGita Gajjar, Hayden P Huggins, Eun Suk Kim, et al.Biorxiv : the Preprint Server for Biology|June 3, 2024
Two germ granule eIF4E isoforms reside in different mRNPs to hand off <i>C elegans</i> mRNAs from translational repression to activationGita Gajjar, Hayden P Huggins, Eun Suk Kim, et al.Nucleic Acids Research|April 21, 2016
Poly(A)-binding proteins are required for microRNA-mediated silencing and to promote target deadenylation in C. elegansMathieu N Flamand, Edlyn Wu, Ajay Vashisht, et al.Pageof 3