Susan Dymecki

Susan M. Dymecki, M.D., Ph.D.

Professor of Genetics, Harvard Medical School
George Fabyan Professor of Genetics in the Field of Comparative Pathology

The Dymecki lab studies how functional modularity arises within the brain serotonergic neuronal system and dynamically controls diverse processes ranging from respiration and thermal balance to emotional mood state to coping behaviors.

Understanding how this fundamental system develops at the molecular, cellular, and functional levels will help illuminate root causes of many brain disorders, paving the way for more targeted therapeutics and effective approaches to clinical conditions such as sudden infant death, major depression, and post-traumatic stress.

Using novel genetic tools for precision neural cell mapping in the mouse brain coupled with genomic, transcriptional, electrophysiological, and behavioral analyses, we examine the developmental specialization of subtypes of serotonin-producing neurons together with their network architecture, circuitry modulation, and selective roles in behavior. We probe how such neuronal diversity is generated and maintained, exploring the extent to which it is genetically programmed versus shaped by experience. Emerging is a neuronal structure-function map of substantial heterogeneity that suggests new ways to conceptualize and design treatments for serotonin-related disorders.

Origin of the precerebellar system.
Authors: Authors: Rodriguez CI, Dymecki SM.
Neuron
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High-efficiency deleter mice show that FLPe is an alternative to Cre-loxP.
Authors: Authors: Rodríguez CI, Buchholz F, Galloway J, Sequerra R, Kasper J, Ayala R, Stewart AF, Dymecki SM.
Nat Genet
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Combinatorial signaling through BMP receptor IB and GDF5: shaping of the distal mouse limb and the genetics of distal limb diversity.
Authors: Authors: Baur ST, Mai JJ, Dymecki SM.
Development
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Widespread recombinase expression using FLPeR (flipper) mice.
Authors: Authors: Farley FW, Soriano P, Steffen LS, Dymecki SM.
Genesis
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Using Flp-recombinase to characterize expansion of Wnt1-expressing neural progenitors in the mouse.
Authors: Authors: Dymecki SM, Tomasiewicz H.
Dev Biol
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Flp recombinase promotes site-specific DNA recombination in embryonic stem cells and transgenic mice.
Authors: Authors: Dymecki SM.
Proc Natl Acad Sci U S A
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A modular set of Flp, FRT and lacZ fusion vectors for manipulating genes by site-specific recombination.
Authors: Authors: Dymecki SM.
Gene
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Molecular cloning and analysis of cDNA encoding the murine c-yes tyrosine protein kinase.
Authors: Authors: Klages S, Adam D, Eiseman E, Fargnoli J, Dymecki SM, Desiderio SV, Bolen JB.
Oncogene
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Structure and developmental regulation of the B-lymphoid tyrosine kinase gene blk.
Authors: Authors: Dymecki SM, Zwollo P, Zeller K, Kuhajda FP, Desiderio SV.
J Biol Chem
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Repression of immunoglobulin enhancers by the helix-loop-helix protein Id: implications for B-lymphoid-cell development.
Authors: Authors: Wilson RB, Kiledjian M, Shen CP, Benezra R, Zwollo P, Dymecki SM, Desiderio SV, Kadesch T.
Mol Cell Biol
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