Kimberley Gibson, MSc, BAS
Research Associate 2, MSCards
About
Research
Publications
Featured Publications
An asymmetric sheath controls flagellar supercoiling and motility in the leptospira spirochete
Gibson KH, Trajtenberg F, Wunder EA, Brady MR, San Martin F, Mechaly A, Shang Z, Liu J, Picardeau M, Ko A, Buschiazzo A, Sindelar CV. An asymmetric sheath controls flagellar supercoiling and motility in the leptospira spirochete. ELife 2020, 9: e53672. PMID: 32157997, PMCID: PMC7065911, DOI: 10.7554/elife.53672.Peer-Reviewed Original Research
2022
Ndc1 drives nuclear pore complex assembly independent of membrane biogenesis to promote nuclear formation and growth
Mauro MS, Celma G, Zimyanin V, Magaj MM, Gibson KH, Redemann S, Bahmanyar S. Ndc1 drives nuclear pore complex assembly independent of membrane biogenesis to promote nuclear formation and growth. ELife 2022, 11: e75513. PMID: 35852146, PMCID: PMC9296133, DOI: 10.7554/elife.75513.Peer-Reviewed Original Research
2021
Epigallocatechin gallate facilitates extracellular elastin fiber formation in induced pluripotent stem cell derived vascular smooth muscle cells for tissue engineering
Ellis MW, Riaz M, Huang Y, Anderson CW, Luo J, Park J, Lopez CA, Gibson KH, Qyang Y. Epigallocatechin gallate facilitates extracellular elastin fiber formation in induced pluripotent stem cell derived vascular smooth muscle cells for tissue engineering. Journal Of Molecular And Cellular Cardiology 2021, 163: 167-174. PMID: 34979103, PMCID: PMC8920537, DOI: 10.1016/j.yjmcc.2021.12.014.Peer-Reviewed Original ResearchAn asymmetric structure of the filament is key to inducing flagellar curvature and enabling motility in the Leptospira spirochete
San Martin F, Gibson K, Trajtenberg F, Brady M, Wunder E, Picardeau M, Mechaly A, Ko A, Sindelar C, Buschiazzo A. An asymmetric structure of the filament is key to inducing flagellar curvature and enabling motility in the Leptospira spirochete. Acta Crystallographica Section A: Foundations And Advances 2021, 77: c291-c291. DOI: 10.1107/s0108767321093910.Peer-Reviewed Original Research
2018
FcpB Is a Surface Filament Protein of the Endoflagellum Required for the Motility of the Spirochete Leptospira
Slamti L, Suwondo DN, Gibson KH, Shang Z, Sindelar CV, Trajtenberg F, Buschiazzo A, Ko AI, Picardeau M. FcpB Is a Surface Filament Protein of the Endoflagellum Required for the Motility of the Spirochete Leptospira. Frontiers In Cellular And Infection Microbiology 2018, 8: 130. PMID: 29868490, PMCID: PMC5953323, DOI: 10.3389/fcimb.2018.00130.Peer-Reviewed Original Research
2015
Dictyostelium discoideum has a highly Q/N-rich proteome and shows an unusual resilience to protein aggregation
Malinovska L, Palm S, Gibson K, Verbavatz J, Alberti S. Dictyostelium discoideum has a highly Q/N-rich proteome and shows an unusual resilience to protein aggregation. Proceedings Of The National Academy Of Sciences Of The United States Of America 2015, 112: e2620-e2629. PMID: 25941378, PMCID: PMC4443358, DOI: 10.1073/pnas.1504459112.Peer-Reviewed Original ResearchDictyosteliumElectrophoresis, Polyacrylamide GelFluorescence Recovery After PhotobleachingHumansHuntingtin ProteinMicroscopy, ElectronMicroscopy, FluorescenceNerve Tissue ProteinsPeptide Termination FactorsPrionsProtein Aggregation, PathologicalProteomeProteostasis DeficienciesSaccharomyces cerevisiaeSaccharomyces cerevisiae Proteins
2014
Filament formation by metabolic enzymes is a specific adaptation to an advanced state of cellular starvation
Petrovska I, Nüske E, Munder M, Kulasegaran G, Malinovska L, Kroschwald S, Richter D, Fahmy K, Gibson K, Verbavatz J, Alberti S. Filament formation by metabolic enzymes is a specific adaptation to an advanced state of cellular starvation. ELife 2014, 3: e02409. PMID: 24771766, PMCID: PMC4011332, DOI: 10.7554/elife.02409.Peer-Reviewed Original ResearchChapter 2 Fluorescing the Electron Strategies in Correlative Experimental Design
Gibson K, Vorkel D, Meissner J, Verbavatz J. Chapter 2 Fluorescing the Electron Strategies in Correlative Experimental Design. Methods In Cell Biology 2014, 124: 23-54. PMID: 25287835, DOI: 10.1016/b978-0-12-801075-4.00002-1.Chapters
2011
α-Synuclein and ALPS motifs are membrane curvature sensors whose contrasting chemistry mediates selective vesicle binding
Pranke I, Morello V, Bigay J, Gibson K, Verbavatz J, Antonny B, Jackson C. α-Synuclein and ALPS motifs are membrane curvature sensors whose contrasting chemistry mediates selective vesicle binding. Journal Of Cell Biology 2011, 194: 89-103. PMID: 21746853, PMCID: PMC3135411, DOI: 10.1083/jcb.201011118.Peer-Reviewed Original ResearchThe RabGAP Proteins Gyp5p and Gyl1p Recruit the BAR Domain Protein Rvs167p for Polarized Exocytosis
Prigent M, Boy‐Marcotte E, Chesneau L, Gibson K, Dupré‐Crochet S, Tisserand H, Verbavatz J, Cuif M. The RabGAP Proteins Gyp5p and Gyl1p Recruit the BAR Domain Protein Rvs167p for Polarized Exocytosis. Traffic 2011, 12: 1084-1097. PMID: 21554509, DOI: 10.1111/j.1600-0854.2011.01218.x.Peer-Reviewed Original ResearchExocytosisGlucan Endo-1,3-beta-D-GlucosidaseGTPase-Activating ProteinsMicrofilament ProteinsMutationNerve Tissue ProteinsProlineProtein BindingProtein Interaction Domains and Motifsrab GTP-Binding ProteinsSaccharomyces cerevisiaeSaccharomyces cerevisiae ProteinsSecretory Vesiclessrc Homology Domains
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Contacts
Academic Office Number
Lab Number
Mailing Address
Yale School of Medicine
Center for Cellular and Molecular Imaging - Yale University School of Medicine, PO Box 208002 (Dept of Cell Biology)
New Haven, United States 06520-8002
United States