Difference between revisions of "Main Page"
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+ | * 06/26/2024. We are one of the four teams winning the 2024 [http://www.precisionmedicine.columbia.edu/content/funding-opportunities Columbia Precision Medicine Joint Pilot grant]. Thank Roy and Diana Vagelos for the generous support! | ||
* 06/21/2024. Preprint release - Dan Moakley (recent graduate)'s PhD work to infer neuron type-specific splicing-regulatory networks from single-cell RNA-seq transcriptome: http://doi.org/10.1101/2024.06.13.597128. | * 06/21/2024. Preprint release - Dan Moakley (recent graduate)'s PhD work to infer neuron type-specific splicing-regulatory networks from single-cell RNA-seq transcriptome: http://doi.org/10.1101/2024.06.13.597128. | ||
* 06/21/2024. Our MAPT/tau spllcing evolutoin paper is officially out in Cell Genomics. http://www.cell.com/cell-genomics/fulltext/S2666-979X(24)00129-0 | * 06/21/2024. Our MAPT/tau spllcing evolutoin paper is officially out in Cell Genomics. http://www.cell.com/cell-genomics/fulltext/S2666-979X(24)00129-0 | ||
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* 11/22/2023. Congrats Dan Moakley for successfully defending the PhD thesis on neuron type-specific alternative splicing regulation! | * 11/22/2023. Congrats Dan Moakley for successfully defending the PhD thesis on neuron type-specific alternative splicing regulation! | ||
* 10/17/2023. Congrats Yocelyn Recinos for winning the poster award at Systems Biology department retreat! | * 10/17/2023. Congrats Yocelyn Recinos for winning the poster award at Systems Biology department retreat! | ||
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Revision as of 14:50, 26 June 2024
Introduction of the Zhang Laboratory
We are part of the Department of Systems Biology, the Department of Biochemistry and Molecular Biophysics, and the Motor Neuron Center at Columbia University Medical Center. We are fascinated by the complexity of the mammalian nervous system and its underlying molecular mechanisms. While mammals have a similar number of genes compared to phenotypically simpler organisms (such as worms), one apparent feature of mammalian genes is their more complicated gene structures, providing an opportunity for sophisticated regulation at the RNA level. The focus of the Zhang lab is to dissect RNA regulatory networks in the nervous system as a way to understand the mammalian complexity manifested in evolutionary-developmental (evo-devo) processes and in several neuronal disorders. The lab has a mixed dry and wet setup, and takes a multidisciplinary approach that tightly integrates high-throughput biochemistry, genomics and computational approaches applied to mouse models and in vitro neuronal differentiation systems from pluripotent stem cells. On the mechanistic side, the Zhang lab focuses on fundamental understanding of the targeting specificity of RNA-binding proteins (RBPs), how they regulate alternative splicing in various cellular contexts, especially in the nervous system, and how such regulation can be disrupted by mutations and genetic variations. On the functional side, the lab aims to uncover the roles of RBPs in determining the neuronal cell fate, morphological and functional properties during neural differentiation and maturation. The lab has also been working on translating fundamental knowledge on RNA regulation to precision genetic medicine, with a particular focus on multiple devastating monogenic diseases affecting the central nervous system.
2023 Systems Biology Department Retreat (Woodloch Pines Resort, PA) |
Lab News
Chaolin Zhang will co-organize the 2024 Cold Spring Harbor Asia meeting "Computational Biology of the Genome", held in Suzhou China on Oct 21-25. |
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Where We Are
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Columbia University Irving Medical Center (image credit: internet) |
Washington Height, NYC (image credit: @KellyrKopp/twitter) |