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Author Details

Chanjae Lee
University of Texas
2006
34
17
Nevan J Krogan (CM4AI)
PMIDPaper TitleJournal TitlePublished Year
36945534Label-free proteomic comparison reveals ciliary and non-ciliary phenotypes of IFT-A mutants.bioRxiv2023
37781579An amino acid-resolution interactome for motile cilia illuminates the structure and function of ciliopathy protein complexes.bioRxiv2023
35531639Kif9 is an active kinesin motor required for ciliary beating and proximodistal patterning of motile axonemes.J Cell Sci2023
37120964Ordered deployment of distinct ciliary beating machines in growing axonemes of vertebrate multiciliated cells.Differentiation2023
36077162Acquisition of Streptomycin Resistance by Oxidative Stress Induced by Hydrogen Peroxide in Radiation-Resistant Bacterium <i>Deinococcus geothermalis</i>.Int J Mol Sci2022
35476939ARVCF catenin controls force production during vertebrate convergent extension.Dev Cell2022
35469976Transposition of insertion sequences by dielectric barrier discharge plasma and gamma irradiation in the radiation-resistant bacterium Deinococcus geothermalis.J Microbiol Methods2022
34413635Genome Plasticity by Insertion Sequences Learned From a Case of Radiation-Resistant Bacterium <i>Deinococcus geothermalis</i>.Bioinform Biol Insights2021
33500317Neural tube closure requires the endocytic receptor Lrp2 and its functional interaction with intracellular scaffolds.Development2021
34849907Discovery of new vascular disrupting agents based on evolutionarily conserved drug action, pesticide resistance mutations, and humanized yeast.Genetics2021
34679757Influence of Redox Imbalances on the Transposition of Insertion Sequences in <i>Deinococcus geothermalis</i>.Antioxidants (Basel)2021
33263282Functional partitioning of a liquid-like organelle during assembly of axonemal dyneins.Elife2020
31993844Redox potential change by the cystine importer affected on enzymatic antioxidant protection in Deinococcus geothermalis.Antonie Van Leeuwenhoek2020
33224109Active Transposition of Insertion Sequences by Oxidative Stress in <i>Deinococcus geothermalis</i>.Front Microbiol2020
31614796Transposition of Insertion Sequences was Triggered by Oxidative Stress in Radiation-Resistant Bacterium <i>Deinococcus geothermalis</i>.Microorganisms2019
30561330A liquid-like organelle at the root of motile ciliopathy.Elife2018
30475797Mutations in Kinesin family member 6 reveal specific role in ependymal cell ciliogenesis and human neurological development.PLoS Genet2018
28679688Compound heterozygous alterations in intraflagellar transport protein <i>CLUAP1</i> in a child with a novel Joubert and oral-facial-digital overlap syndrome.Cold Spring Harb Mol Case Stud2017
29257953Evolutionary Proteomics Uncovers Ancient Associations of Cilia with Signaling Pathways.Dev Cell2017
28596423Integration of over 9,000 mass spectrometry experiments builds a global map of human protein complexes.Mol Syst Biol2017
27486780TTC25 Deficiency Results in Defects of the Outer Dynein Arm Docking Machinery and Primary Ciliary Dyskinesia with Left-Right Body Asymmetry Randomization.Am J Hum Genet2016
27634568The hyaloid vasculature facilitates basement membrane breakdown during choroid fissure closure in the zebrafish eye.Dev Biol2016
27158779The ciliopathy-associated CPLANE proteins direct basal body recruitment of intraflagellar transport machinery.Nat Genet2016
27463398Corrigendum: The ciliopathy-associated CPLANE proteins direct basal body recruitment of intraflagellar transport machinery.Nat Genet2016
25127995In vivo analysis of hyaloid vasculature morphogenesis in zebrafish: A role for the lens in maturation and maintenance of the hyaloid.Dev Biol2014
24970261Cluap1 is essential for ciliogenesis and photoreceptor maintenance in the vertebrate eye.Invest Ophthalmol Vis Sci2014
23150614An ENU mutagenesis screen in zebrafish for visual system mutants identifies a novel splice-acceptor site mutation in patched2 that results in Colobomas.Invest Ophthalmol Vis Sci2012
20439414High-magnification in vivo imaging of Xenopus embryos for cell and developmental biology.Cold Spring Harb Protoc2010
19554350Changes in localization and expression levels of Shroom2 and spectrin contribute to variation in amphibian egg pigmentation patterns.Dev Genes Evol2009
19384856The shroom family proteins play broad roles in the morphogenesis of thickened epithelial sheets.Dev Dyn2009
19384855Embryogenesis and laboratory maintenance of the foam-nesting túngara frogs, genus Engystomops (= Physalaemus).Dev Dyn2009
21356778Whole-mount fluorescence immunocytochemistry on Xenopus embryos.CSH Protoc2008
17329357Shroom family proteins regulate gamma-tubulin distribution and microtubule architecture during epithelial cell shape change.Development2007
16987870Shroom2 (APXL) regulates melanosome biogenesis and localization in the retinal pigment epithelium.Development2006
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Collaborators

University of Texas
Co-authored papers 24
University of Texas
Co-authored papers 9
University Hospital Muenster
Co-authored papers 2
Stanford University School of Medicine
Co-authored papers 2
Boston Children's Hospital
Co-authored papers 2
University Hospital Muenster
Co-authored papers 2
Universitatsklinikum Munster
Co-authored papers 2
University Hospital Muenster
Co-authored papers 2
Stanford University School of Medicine, Center for Clinical Sciences Research
Co-authored papers 2
University Hospital Muenster
Co-authored papers 2
University of Cambridge
Co-authored papers 1
Cardiovascular Research Institute
Co-authored papers 1
University of Munich, German Center for Lung Research (DZL)
Co-authored papers 1
University of California San Francisco
Co-authored papers 1
National Human Genome Research Institute, National Institutes of Health
Co-authored papers 1
King Chulalongkorn Memorial Hospital, Chulalongkorn University
Co-authored papers 1
Gladstone Institutes
Co-authored papers 1
Center for Precision Health Research, National Human Genome Research Institute
Co-authored papers 1
Lewis-Sigler Institute for Integrative Genomics, Princeton University
Co-authored papers 1
Cardiovascular Research Institute, University of California san francisco
Co-authored papers 1
University of Bergen
Co-authored papers 1
University of Massachusetts Medical School
Co-authored papers 1
University of Pittsburgh School of Medicine
Co-authored papers 1
The Roslin Institute, The University of Edinburgh
Co-authored papers 1
University of Bergen
Co-authored papers 1
University of California berkeley
Co-authored papers 1
Center for Precision Health Research
Co-authored papers 1
University of California, USA Cardiovascular Research Institute san francisco
Co-authored papers 1