Nuclear Pore Complexes and Nucleocytoplasmic Transport - Methods

- Volume 122

Forfatter: info mangler
Bog
  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

Volume 122 of Methods in Cell Biology describes modern tools and techniques used to study nuclear pore complexes and nucleocytoplasmic transport in diverse eukaryotic model systems (including mammalian cells, Xenopus, C. elegans, yeast). The volume enables investigators to analyze nuclear pore complex structure, assembly, and dynamics; to evaluate protein and RNA trafficking through the nuclear envelope; and to design in vivo or in vitro assays appropriate to their research needs. Beyond the study of nuclear pores and transport as such, these protocols will also be helpful to scientists characterizing gene regulation, signal transduction, cell cycle, viral infections, or aging. The NPC being one of the largest multiprotein complexes in the cell, some protocols will also be of interest for people currently characterizing other macromolecular assemblies. This book is thus designed for laboratory use by graduate students, technicians, and researchers in many molecular and cellular disciplines.

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Detaljer
  • SprogEngelsk
  • Sidetal554
  • Udgivelsesdato29-05-2014
  • ISBN139780124171602
  • Forlag Academic Press Inc
  • FormatHardback
Størrelse og vægt
  • Vægt1380 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,4 cm

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    Scanning Storm Transmission Mass spectrometry Ribosomes. Confocal microscopy Fluorescence in situ hybridization Caenorhabditis elegans Scanning electron microscopy Yeast Nuclear structure Saccharomyces cerevisiae Permeability Cell Fusion Cell cycle Chromatin Microscopy Electron microscopy Immunofluorescence Immunogold labeling Mitosis HeLa cells Label Nanopores Chromosome Nuclear Transport CRISPR/CAS9 Posttranslational Modifications Budding yeast Live cell imaging Nucleocytoplasmic transport DID Super-resolution microscopy Mammalian cells Nuclear body Nuclei isolation CRISPR-Cas9 Negative stain NPP RNAi Interphase RNA processing Membrane integrity Nuclear architecture Heat Shock Nuclear pore complexes Ribosome biogenesis PEG Immunoprecipitation Nuclear pore complex Microinjection Nuclear envelope NPC Flux measurements Live imaging SILAC Immunolabeling 70kDa rhodamine dextran Anchored nuclei BAPTA Epitope pulse-chase labeling Dynein2 FG-Nups FG repeats Hydrophobic interactions Heterokaryons Iridium coating Immunodepletion Digitonin Importins In vitro import assay Leptomycin B In vitro system Karyopherins Exportin Membrane reconstitution Nuclear/cytoplasmic fractionation Nuclear reconstitution assay Nuclear reformation mAb414 Nuclear envelope breakdown Nuclear envelope isolation Nuclear membrane assembly Nups Nuclear import Nuclear pores Nuclear tRNA export factors Particle averaging NPC mimics NTPase-driven remodeling Nuclear Membrane Importin photoswitching Ribosome export Integral membrane protein Protein complex stoichiometry Separation of aminoacylated and nonaminoacylated tRNA RNA-FISH Heterokaryon assay Sucrose sedimentation SRM assays Semipermeabilized cells In vitro assay In vivo nuclear tRNA export assay Transport kinetics Vesicle-vesicle fusion Targeted proteomics Nuclear pore complex assembly Nuclear pore-free intermediates Nucleoporin Nuclear transport factors RNA export Sacharomyces cerevisiae Nuclear Export Proteoliposomes Transport channel Xenopus egg extract Xenopus Oocytes Xenopus egg extracts tRNA three-hybrid interaction TAP purification

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