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Yoram Groner

Researcher at Weizmann Institute of Science

Publications -  181
Citations -  13820

Yoram Groner is an academic researcher from Weizmann Institute of Science. The author has contributed to research in topics: Gene & RNA. The author has an hindex of 63, co-authored 181 publications receiving 13165 citations. Previous affiliations of Yoram Groner include University of California, Los Angeles & Massachusetts Institute of Technology.

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Transcription factors T-bet and Runx3 cooperate to activate Ifng and silence Il4 in T helper type 1 cells

TL;DR: The data indicate that cytokine gene expression in TH1 cells may be controlled by a feed-forward regulatory circuit in which T-bet induces Runx3 and then 'partners' with Runx 3 to direct lineage-specific gene activation and silencing.
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Transcriptional repression by AML1 and LEF-1 is mediated by the TLE/Groucho corepressors

TL;DR: It is shown that AML1 and LEF-1 can act, through recruitment of the corepressor TLE1, as transcriptional repressors in TCR regulation and Wnt/Wg signaling.
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Transgenic mice with increased Cu/Zn-superoxide dismutase activity: animal model of dosage effects in Down syndrome.

TL;DR: These animals provide a unique system for studying the consequences of increased dosage of the Cu/Zn-superoxide dismutase gene in Down syndrome and the role of this enzyme in a variety of other pathological processes.
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Runx3 and T-box proteins cooperate to establish the transcriptional program of effector CTLs

TL;DR: It is shown that effector CTL differentiation occurs in two sequential phases in vitro, characterized by early induction of T-bet and late induction of Eomesodermin (Eomes), T-box transcription factors that regulate the early and late phases of interferon γ expression, respectively.
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The Runx3 transcription factor regulates development and survival of TrkC dorsal root ganglia neurons

TL;DR: It is shown that Runx3‐deficient mice develop severe limb ataxia due to disruption of monosynaptic connectivity between intra spinal afferents and motoneurons, and the underlying cause is a loss of DRG proprioceptive neurons.