Standout Papers

Peptide tag forming a rapid covalent bond to a protein, through... 2005 2026 2012 2019 1.2k
  1. Peptide tag forming a rapid covalent bond to a protein, through engineering a bacterial adhesin (2012)
    Bijan Zakeri, Jacob O. Fierer et al. Proceedings of the National Academy of Sciences
  2. Site-specific labeling of cell surface proteins with biophysical probes using biotin ligase (2005)
    Irwin Chen, Mark Howarth et al. Nature Methods
  3. Compact Biocompatible Quantum Dots Functionalized for Cellular Imaging (2008)
    Wenhao Liu, Mark Howarth et al. Journal of the American Chemical Society
  4. Monovalent, reduced-size quantum dots for imaging receptors on living cells (2008)
    Mark Howarth, Wenhao Liu et al. Nature Methods
  5. Mosaic nanoparticles elicit cross-reactive immune responses to zoonotic coronaviruses in mice (2021)
    Alexander A. Cohen, Priyanthi N.P. Gnanapragasam et al. Science

Immediate Impact

58 by Nobel laureates 30 from Science/Nature 105 standout
Sub-graph 1 of 17

Citing Papers

De novo design of allosterically switchable protein assemblies
2024 StandoutNatureNobel
De novo design of modular protein hydrogels with programmable intra- and extracellular viscoelasticity
2024 StandoutNobel
3 intermediate papers

Works of Mark Howarth being referenced

Peptide tag forming a rapid covalent bond to a protein, through engineering a bacterial adhesin
2012 Standout
Monovalent, reduced-size quantum dots for imaging receptors on living cells
2008 StandoutNobel
and 1 more

Author Peers

Author Last Decade Papers Cites
Mark Howarth 5923 1978 1020 1050 91 8.5k
Remy Loris 5242 1446 1012 684 169 7.4k
Thilo Stehle 5328 1066 720 465 190 11.7k
James R. Swartz 5476 1234 206 449 123 7.4k
David G. Myszka 8999 2902 485 378 130 13.0k
E.A. Stura 5192 2021 613 1022 169 10.3k
Keelung Hong 6906 1723 460 556 99 10.7k
Jean‐Paul Briand 5387 962 1537 2528 216 11.3k
Laura L. Kiessling 10833 1892 7183 897 191 15.3k
Keiichi Itakura 8580 497 563 583 107 10.8k
François Baneyx 5071 638 231 1360 111 7.3k

All Works

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2026