Nathan Shaner
Nathan Shaner
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Cited by
Improved monomeric red, orange and yellow fluorescent proteins derived from Discosoma sp. red fluorescent protein
NC Shaner, RE Campbell, PA Steinbach, BNG Giepmans, AE Palmer, ...
Nature biotechnology 22 (12), 1567-1572, 2004
A guide to choosing fluorescent proteins
NC Shaner, PA Steinbach, RY Tsien
Nature methods 2 (12), 905-909, 2005
Improving the photostability of bright monomeric orange and red fluorescent proteins
NC Shaner, MZ Lin, MR McKeown, PA Steinbach, KL Hazelwood, ...
Nature methods 5 (6), 545-551, 2008
Advances in fluorescent protein technology
NC Shaner, GH Patterson, MW Davidson
Journal of cell science 120 (24), 4247-4260, 2007
A bright monomeric green fluorescent protein derived from Branchiostoma lanceolatum
NC Shaner, GG Lambert, A Chammas, Y Ni, PJ Cranfill, MA Baird, BR Sell, ...
Nature methods 10 (5), 407-409, 2013
Novel Chromophores and Buried Charges Control Color in mFruits,
X Shu, NC Shaner, CA Yarbrough, RY Tsien, SJ Remington
Biochemistry 45 (32), 9639-9647, 2006
Exploration of new chromophore structures leads to the identification of improved blue fluorescent proteins
H Ai, NC Shaner, Z Cheng, RY Tsien, RE Campbell
Biochemistry 46 (20), 5904-5910, 2007
Autofluorescent proteins with excitation in the optical window for intravital imaging in mammals
MZ Lin, MR McKeown, HL Ng, TA Aguilera, NC Shaner, RE Campbell, ...
Chemistry & biology 16 (11), 1169-1179, 2009
Dynamics of Z‐band based proteins in developing skeletal muscle cells
J Wang, N Shaner, B Mittal, Q Zhou, J Chen, JM Sanger, JW Sanger
Cell motility and the cytoskeleton 61 (1), 34-48, 2005
Myofibrillogenesis in skeletal muscle cells
JW Sanger, P Chowrashi, NC Shaner, S Spalthoff, J Wang, NL Freeman, ...
Clinical Orthopaedics and Related Research® 403, S153-S162, 2002
The maternal and early embryonic transcriptome of the milkweed bug Oncopeltus fasciatus
B Ewen-Campen, N Shaner, KA Panfilio, Y Suzuki, S Roth, CG Extavour
BMC genomics 12 (1), 1-22, 2011
Simultaneous visualization of protumorigenic Src and MT1-MMP activities with fluorescence resonance energy transfer
M Ouyang, H Huang, NC Shaner, AG Remacle, SA Shiryaev, AY Strongin, ...
Cancer research 70 (6), 2204-2212, 2010
A comparison across non-model animals suggests an optimal sequencing depth for de novo transcriptome assembly
WR Francis, LM Christianson, R Kiko, ML Powers, NC Shaner, ...
BMC genomics 14 (1), 1-12, 2013
A monomeric photoconvertible fluorescent protein for imaging of dynamic protein localization
H Hoi, NC Shaner, MW Davidson, CW Cairo, J Wang, RE Campbell
Journal of molecular biology 401 (5), 776-791, 2010
Concurrent imaging of synaptic vesicle recycling and calcium dynamics.
H Li, SM Foss, Y Dobryy, CK Park, SA Hires, NC Shaner, RY Tsien, ...
Frontiers in molecular neuroscience 4, 34, 2011
Characterization of a spectrally diverse set of fluorescent proteins as FRET acceptors for mTurquoise2
M Mastop, DS Bindels, NC Shaner, M Postma, TWJ Gadella, J Goedhart
Scientific reports 7 (1), 1-18, 2017
Monomeric and dimeric fluorescent protein variants and methods for making same
RY Tsien, RE Campbell, NC Shaner
New DAG and cAMP sensors optimized for live-cell assays in automated laboratories
PH Tewson, S Martinka, NC Shaner, TE Hughes, AM Quinn
Journal of biomolecular screening 21 (3), 298-305, 2016
Differential gene expression in the siphonophore Nanomia bijuga (Cnidaria) assessed with multiple next-generation sequencing workflows
S Siebert, MD Robinson, SC Tintori, F Goetz, RR Helm, SA Smith, ...
PloS one 6 (7), e22953, 2011
Engineering of mCherry variants with long Stokes shift, red-shifted fluorescence, and low cytotoxicity
Y Shen, Y Chen, J Wu, NC Shaner, RE Campbell
PLoS One 12 (2), e0171257, 2017
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