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FEBS Letters|May 4, 2010
p53-dependent transcriptional regulation of EDA2R and its involvement in chemotherapy-induced hair lossRan Brosh, Rachel Sarig, Elad Bar Natan, et al.Journal of Molecular Biology|November 11, 2008
Structural basis of restoring sequence-specific DNA binding and transactivation to mutant p53 by suppressor mutationsOded Suad, Haim Rozenberg, Ran Brosh, et al.Molecular and Cellular Biology|February 9, 2011
SPATA18, a spermatogenesis-associated gene, is a novel transcriptional target of p53 and p63Chamutal Bornstein, Ran Brosh, Alina Molchadsky, et al.Biorxiv : the Preprint Server for Biology|March 27, 2026
Improved vector toolkit for genome writing in mammalian cellsKelly Barriball, Brianna Berrios, Camilla Coelho, et al.Iscience|June 13, 2022
A conditional counterselectable Piga knockout in mouse embryonic stem cells for advanced genome writing applicationsWeimin Zhang, Ran Brosh, Laura H McCulloch, et al.Journal of Cell Science|March 20, 2012
Various p53 mutant proteins differently regulate the Ras circuit to induce a cancer-related gene signatureHilla Solomon, Yosef Buganim, Ira Kogan-Sakin, et al.Carcinogenesis|February 24, 2009
Prostate stromal cells produce CXCL-1, CXCL-2, CXCL-3 and IL-8 in response to epithelia-secreted IL-1Ira Kogan-Sakin, Merav Cohen, Nicole Paland, et al.Cancer Research|November 17, 2006
Mutant p53 protects cells from 12-O-tetradecanoylphorbol-13-acetate-induced death by attenuating activating transcription factor 3 inductionYosef Buganim, Eyal Kalo, Ran Brosh, et al.Stem Cell Reports|April 4, 2020
Memory of Divisional History Directs the Continuous Process of Primitive Hematopoietic Lineage CommitmentJeffrey M Bernitz, Katrina Rapp, Michael G Daniel, et al.Biorxiv : the Preprint Server for Biology|July 9, 2025
Assemblatron: An Automated Workflow for High-Throughput Assembly of Big-DNA LibrariesAntonio Vela Gartner, Luisa F Quispe, Klaus-Peter Rühmann, et al.Pageof 5