Daniel Kalderon

Affiliations: 
Columbia University, New York, NY 
Area:
Cell Biology, Molecular Biology, Genetics
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"Daniel Kalderon"

Children

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Willis X. Li grad student 1990-1995 Harvard Medical School
Josefa Steinhauer grad student 2006 Columbia
Qianhe Zhou grad student 2011 Columbia
Eva Zadorozny grad student 2014 Columbia
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Publications

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Kim H, Little J, Li J, et al. (2025) Physiological analysis of the mechanism of Ci transcription factor activation through multiple Fused phosphorylation sites in Hedgehog signal transduction. Biorxiv : the Preprint Server For Biology
Little JC, Garcia-Garcia E, Sul A, et al. (2020) Drosophila Hedgehog can act as a morphogen in the absence of regulated Ci processing. Elife. 9
Garcia Garcia E, Little JC, Kalderon D. (2017) The Exon Junction Complex and Srp54 Contribute to Drosophila Hedgehog Signaling via ci RNA Splicing. Genetics
Huang J, Reilein A, Kalderon D. (2017) Yorkie and Hedgehog independently restrict BMP production in Escort cells to permit germline differentiation in the Drosophila ovary. Development (Cambridge, England)
Reilein A, Melamed D, Park KS, et al. (2017) Alternative direct stem cell derivatives defined by stem cell location and graded Wnt signalling. Nature Cell Biology
Zadorozny EV, Little JC, Kalderon D. (2015) Contributions of Costal 2-Fused interactions to Hedgehog signaling in Drosophila. Development (Cambridge, England). 142: 931-42
Huang J, Kalderon D. (2014) Coupling of Hedgehog and Hippo pathways promotes stem cell maintenance by stimulating proliferation. The Journal of Cell Biology. 205: 325-38
Vied C, Reilein A, Field NS, et al. (2012) Regulation of stem cells by intersecting gradients of long-range niche signals. Developmental Cell. 23: 836-48
Zhou Q, Kalderon D. (2011) Hedgehog activates fused through phosphorylation to elicit a full spectrum of pathway responses. Developmental Cell. 20: 802-14
Marks SA, Kalderon D. (2011) Regulation of mammalian Gli proteins by Costal 2 and PKA in Drosophila reveals Hedgehog pathway conservation. Development (Cambridge, England). 138: 2533-42
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