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Winer BY, Ploss A. Breaking the species barrier for hepatitis delta virus. Hepatology. 2016 ;63(1):334-6.
C
Kaletsky R, Lakhina V, Arey R, Williams A, Landis J, Ashraf J, et al. The C. elegans adult neuronal IIS/FOXO transcriptome reveals adult phenotype regulators. Nature. 2016 ;529(7584):92-6.
Jaffe KM, Grimes DT, Schottenfeld-Roames J, Werner ME, Ku T-SJ, Kim SK, et al. c21orf59/kurly Controls Both Cilia Motility and Polarization. Cell Rep. 2016 ;14(8):1841-9.
Werner KM, Perez LJ, Ghosh R, Semmelhack MF, Bassler BL. Caenorhabditis elegans recognizes a bacterial quorum-sensing signal molecule through the AWCON neuron. J Biol Chem. 2014 ;289(38):26566-73.
Waldron L, Steimle JD, Greco TM, Gomez NC, Dorr KM, Kweon J, et al. The Cardiac TBX5 Interactome Reveals a Chromatin Remodeling Network Essential for Cardiac Septation. Dev Cell. 2016 ;36(3):262-75.
Waldron L, Steimle JD, Greco TM, Gomez NC, Dorr KM, Kweon J, et al. The Cardiac TBX5 Interactome Reveals a Chromatin Remodeling Network Essential for Cardiac Septation. Dev Cell. 2016 ;36(3):262-75.
Wong S, Hepowit NL, Port SA, Yau RG, Peng Y, Azad N, et al. Cargo Release from Myosin V Requires the Convergence of Parallel Pathways that Phosphorylate and Ubiquitylate the Cargo Adaptor. Curr Biol. 2020 ;30(22):4399-4412.e7.
Wong S, Hepowit NL, Port SA, Yau RG, Peng Y, Azad N, et al. Cargo Release from Myosin V Requires the Convergence of Parallel Pathways that Phosphorylate and Ubiquitylate the Cargo Adaptor. Curr Biol. 2020 ;30(22):4399-4412.e7.
Hjeij R, Onoufriadis A, Watson CM, Slagle CE, Klena NT, Dougherty GW, et al. CCDC151 mutations cause primary ciliary dyskinesia by disruption of the outer dynein arm docking complex formation. Am J Hum Genet. 2014 ;95(3):257-74.
Hjeij R, Onoufriadis A, Watson CM, Slagle CE, Klena NT, Dougherty GW, et al. CCDC151 mutations cause primary ciliary dyskinesia by disruption of the outer dynein arm docking complex formation. Am J Hum Genet. 2014 ;95(3):257-74.
Hjeij R, Onoufriadis A, Watson CM, Slagle CE, Klena NT, Dougherty GW, et al. CCDC151 mutations cause primary ciliary dyskinesia by disruption of the outer dynein arm docking complex formation. Am J Hum Genet. 2014 ;95(3):257-74.
Chini CCS, Peclat TR, Warner GM, Kashyap S, Espindola-Netto JMachado, de Oliveira GC, et al. CD38 ecto-enzyme in immune cells is induced during aging and regulates NAD and NMN levels. Nat Metab. 2020 ;2(11):1284-1304.
Chini CCS, Peclat TR, Warner GM, Kashyap S, Espindola-Netto JMachado, de Oliveira GC, et al. CD38 ecto-enzyme in immune cells is induced during aging and regulates NAD and NMN levels. Nat Metab. 2020 ;2(11):1284-1304.
Zhang H, Brown RL, Wei Y, Zhao P, Liu S, Liu X, et al. CD44 splice isoform switching determines breast cancer stem cell state. Genes Dev. 2019 ;33(3-4):166-179.
Zhao P, Xu Y, Wei Y, Qiu Q, Chew T-L, Kang Y, et al. The CD44s splice isoform is a central mediator for invadopodia activity. J Cell Sci. 2016 ;129(7):1355-65.
Wang D, Zhang Y, Kleiner RE. Cell- and Polymerase-Selective Metabolic Labeling of Cellular RNA with 2'-Azidocytidine. J Am Chem Soc. 2020 ;142(34):14417-14421.
Ali MZulfikar, Huang KCasey, Wingreen NS, Mukhopadhyay R. Cell geometry and leaflet bilayer asymmetry regulate domain formation in plasma membranes. Phys Rev E. 2019 ;99(1-1):012401.
Qin B, Fei C, Bridges AA, Mashruwala AA, Stone HA, Wingreen NS, et al. Cell position fates and collective fountain flow in bacterial biofilms revealed by light-sheet microscopy. Science. 2020 ;369(6499):71-77.
Wang J, Kaletsky R, Silva M, Williams A, Haas LA, Androwski RJ, et al. Cell-Specific Transcriptional Profiling of Ciliated Sensory Neurons Reveals Regulators of Behavior and Extracellular Vesicle Biogenesis. Curr Biol. 2015 ;25(24):3232-8.
Wang J, Kaletsky R, Silva M, Williams A, Haas LA, Androwski RJ, et al. Cell-Specific Transcriptional Profiling of Ciliated Sensory Neurons Reveals Regulators of Behavior and Extracellular Vesicle Biogenesis. Curr Biol. 2015 ;25(24):3232-8.
Bai X-C, Yan Z, Wu J, Li Z, Yan N. The Central domain of RyR1 is the transducer for long-range allosteric gating of channel opening. Cell Res. 2016 ;26(9):995-1006.
Kloth AD, Badura A, Li A, Cherskov A, Connolly SG, Giovannucci A, et al. Cerebellar associative sensory learning defects in five mouse autism models. Elife. 2015 ;4:e06085.
Kloth AD, Badura A, Li A, Cherskov A, Connolly SG, Giovannucci A, et al. Cerebellar associative sensory learning defects in five mouse autism models. Elife. 2015 ;4:e06085.
Deverett B, Kislin M, Tank DW, Wang SS-H. Cerebellar disruption impairs working memory during evidence accumulation. Nat Commun. 2019 ;10(1):3128.
Giovannucci A, Badura A, Deverett B, Najafi F, Pereira TD, Gao Z, et al. Cerebellar granule cells acquire a widespread predictive feedback signal during motor learning. Nat Neurosci. 2017 ;20(5):727-734.