Research Article
Tania Nikolcheva, Stephane Pyronnet, Szu-yi Chou, Nahum Sonenberg, An Song, Carol Clayberger, Alan M. Krensky
Title and authors | Publication | Year |
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PPM1G dephosphorylates eIF4E in control of mRNA translation and cell proliferation.
Wang P, Li Z, Kim SH, Xu H, Huang H, Yang C, Snape A, Choi JH, Bermudez S, Boivin MN, Ferry N, Karamchandani J, Nagar B, Sonenberg N |
Life science alliance | 2024 |
KLF13 promotes SLE pathogenesis by modifying chromatin accessibility of key proinflammatory cytokine genes.
Wang A, Fairhurst AM, Liu K, Wakeland B, Barnes S, Malladi VS, Viswanathan K, Arana C, Dozmorov I, Singhar A, Du Y, Imam M, Moses A, Chen C, Sunkavalli A, Casco J, Rakheja D, Li QZ, Mohan C, Clayberger C, Wakeland EK, Khan S |
Communications biology | 2024 |
The role of eIF4F-driven mRNA translation in regulating the tumour microenvironment.
Bartish M, Abraham MJ, Gonçalves C, Larsson O, Rolny C, Del Rincón SV |
Nature reviews. Cancer | 2023 |
Krüppel-like Factor-9 and Krüppel-like Factor-13: Highly Related, Multi-Functional, Transcriptional Repressors and Activators of Oncogenesis
Simmen FA, Alhallak I, Simmen RC |
Cancers | 2023 |
Neuroimmune Consequences of eIF4E Phosphorylation on Chemotherapy-Induced Peripheral Neuropathy
NM Agalave, PH Mody, TA Szabo-Pardi, HS Jeong, MD Burton |
Frontiers in immunology | 2021 |
The MNK1/2-eIF4E Axis as a Potential Therapeutic Target in Melanoma
SA Prabhu, O Moussa, WH Miller, SV del Rincón |
International journal of molecular sciences | 2020 |
Molecular Mechanisms for Krüppel-Like Factor 13 Actions in Hippocampal Neurons
J Ávila-Mendoza, A Subramani, CJ Sifuentes, RJ Denver |
Molecular Neurobiology | 2020 |
Controlling TIME: How MNK Kinases Function to Shape Tumor Immunity
TN Pham, C Spaulding, HG Munshi |
Cancers | 2020 |
Phosphorylation and Signal Transduction Pathways in Translational Control
CG Proud |
Cold Spring Harbor perspectives in biology | 2018 |
Inhibition of Mitogen-activated Protein Kinase (MAPK)-interacting Kinase (MNK) Preferentially Affects Translation of mRNAs Containing Both a 5′-Terminal Cap and Hairpin
NL Korneeva, A Song, H Gram, MA Edens, RE Rhoads |
The Journal of biological chemistry | 2015 |
Translational control of immune responses: from transcripts to translatomes
CA Piccirillo, E Bjur, I Topisirovic, N Sonenberg, O Larsson |
Nature Immunology | 2014 |
Ribosomal Protein L13a Deficiency in Macrophages Promotes Atherosclerosis by Limiting Translation Control-Dependent Retardation of Inflammation
A Basu, D Poddar, P Robinet, JD Smith, M Febbraio, WM Baldwin, B Mazumder |
Arteriosclerosis, thrombosis, and vascular biology | 2014 |
Distinct translational control in CD4+ T cell subsets
E Bjur, O Larsson, E Yurchenko, L Zheng, V Gandin, I Topisirovic, S Li, CR Wagner, N Sonenberg, CA Piccirillo |
PLoS genetics | 2013 |
miR-125a-5p Regulates Differential Activation of Macrophages and Inflammation
S Banerjee, H Cui, N Xie, Z Tan, S Yang, M Icyuz, VJ Thannickal, E Abraham, G Liu |
The Journal of biological chemistry | 2013 |
Fbw7γ-mediated degradation of KLF13 prevents RANTES expression in resting human but not murine T lymphocytes
DS Kim, W Zhang, SE Millman, BJ Hwang, SJ Kwon, C Clayberger, M Pagano, AM Krensky |
Blood | 2012 |
Mnk Kinases in Cytokine Signaling and Regulation of Cytokine Responses
S Joshi, LC Platanias |
BioMolecular Concepts | 2012 |
Unified translation repression mechanism for microRNAs and upstream AUGs
SS Ajay, BD Athey, I Lee |
BMC Genomics | 2010 |
Mammalian Krüppel-Like Factors in Health and Diseases
BB McConnell, VW Yang |
Physiological reviews | 2010 |
Translation Control: A Multifaceted Regulator of Inflammatory Response
B Mazumder, X Li, S Barik |
Journal of immunology (Baltimore, Md. : 1950) | 2010 |
Kruppel-like factor KLF10 targets transforming growth factor-beta1 to regulate CD4(+)CD25(-) T cells and T regulatory cells
Z Cao, AK Wara, B Icli, X Sun, RR Packard, F Esen, CJ Stapleton, M Subramaniam, K Kretschmer, I Apostolou, H Boehmer, GK Hansson, TC Spelsberg, P Libby, MW Feinberg |
The Journal of biological chemistry | 2009 |
Krüppel-like factor 9 is necessary for late-phase neuronal maturation in the developing dentate gyrus and during adult hippocampal neurogenesis
KN Scobie, BJ Hall, SA Wilke, KC Klemenhagen, Y Fujii-Kuriyama, A Ghosh, R Hen, A Sahay |
The Journal of neuroscience : the official journal of the Society for Neuroscience | 2009 |
Kruppel-like transcription factor 13 regulates T lymphocyte survival in vivo
M Zhou, L McPherson, D Feng, A Song, C Dong, SC Lyu, L Zhou, X Shi, YT Ahn, D Wang, C Clayberger, AM Krensky |
Journal of immunology (Baltimore, Md. : 1950) | 2007 |
Mechanisms of disease: regulation of RANTES (CCL5) in renal disease
AM Krensky, YT Ahn |
Nature clinical practice. Nephrology | 2007 |
Erythroid Krüppel-Like Factor Directly Activates the Basic Krüppel-Like Factor Gene in Erythroid Cells
AP Funnell, CA Maloney, LJ Thompson, J Keys, M Tallack, AC Perkins, M Crossley |
Molecular and cellular biology | 2007 |
Interaction of PRP4 with Krüppel-Like Factor 13 Regulates CCL5 Transcription
Huang B, Ahn YT, McPherson L, Clayberger C, Krensky AM |
Journal of immunology (Baltimore, Md. : 1950) | 2007 |
Mitogen-activated protein kinases interacting kinases are autoinhibited by a reprogrammed activation segment
R Jauch, MK Cho, S Jäkel, C Netter, K Schreiter, B Aicher, M Zweckstetter, H Jäckle, MC Wahl |
The EMBO Journal | 2006 |
Human Vgamma2Vdelta2 T cells contain cytoplasmic RANTES
I Tikhonov, CO Deetz, R Paca, S Berg, V Lukyanenko, JK Lim, CD Pauza |
International Immunology | 2006 |
Mnk2 and Mnk1 are essential for constitutive and inducible phosphorylation of eukaryotic initiation factor 4E but not for cell growth or development
T Ueda, R Watanabe-Fukunaga, H Fukuyama, S Nagata, R Fukunaga |
Molecular and cellular biology | 2004 |