G-quadruplexes and their regulatory roles in biology D Rhodes, HJ Lipps Nucleic acids research 43 (18), 8627-8637, 2015 | 1481 | 2015 |
The structure of the nucleosome core particle TJ Richmond, JT Finch, B Rushton, D Rhodes, A Klug Nature (London) 311, 532-537, 1984 | 1378 | 1984 |
Structure of yeast phenylalanine tRNA at 3 Å resolution JD Robertus, JE Ladner, JT Finch, D Rhodes, RS Brown, BFC Clark, ... Nature 250 (5467), 546-551, 1974 | 1147 | 1974 |
The crystal structure of the estrogen receptor DNA-binding domain bound to DNA: how receptors discriminate between their response elements JWR Schwabe, L Chapman, JT Finch, D Rhodes Cell 75 (3), 567-578, 1993 | 993 | 1993 |
G-quadruplex structures: in vivo evidence and function HJ Lipps, D Rhodes Trends in cell biology 19 (8), 414-422, 2009 | 983 | 2009 |
Structure of nucleosome core particles of chromatin JT Finch, LC Lutter, D Rhodes, RS Brown, B Rushton, M Levitt, A Klug Nature 269 (5623), 29-36, 1977 | 982 | 1977 |
‘Zinc fingers’: a novel protein motif for nucleic acid recognition A Klug, D Rhodes Trends in Biochemical Sciences 12, 464-469, 1987 | 930 | 1987 |
Telomere end-binding proteins control the formation of G-quadruplex DNA structures in vivo K Paeschke, T Simonsson, J Postberg, D Rhodes, HJ Lipps Nature structural & molecular biology 12 (10), 847-854, 2005 | 698 | 2005 |
EM measurements define the dimensions of the “30-nm” chromatin fiber: evidence for a compact, interdigitated structure PJJ Robinson, L Fairall, VAT Huynh, D Rhodes Proceedings of the National Academy of Sciences 103 (17), 6506-6511, 2006 | 676 | 2006 |
Solution structure of the DMA-binding domain of the oestrogen receptor JWR Schwabe, D Neuhaus, D Rhodes Nature 348 (6300), 458-461, 1990 | 586 | 1990 |
A method for genetically installing site-specific acetylation in recombinant histones defines the effects of H3 K56 acetylation H Neumann, SM Hancock, R Buning, A Routh, L Chapman, J Somers, ... Molecular cell 36 (1), 153-163, 2009 | 575 | 2009 |
Helical periodicity of DNA determined by enzyme digestion D Rhodes, A Klug Nature 286 (5773), 573-578, 1980 | 491 | 1980 |
ATR-X syndrome protein targets tandem repeats and influences allele-specific expression in a size-dependent manner MJ Law, KM Lower, HPJ Voon, JR Hughes, D Garrick, V Viprakasit, ... Cell 143 (3), 367-378, 2010 | 467 | 2010 |
Structure of the ‘30 nm’chromatin fibre: a key role for the linker histone PJJ Robinson, D Rhodes Current opinion in structural biology 16 (3), 336-343, 2006 | 464 | 2006 |
The crystal structure of a two zinc-finger peptide reveals an extension to the rules for zinc-finger/DNA recognition L Fairall, JWR Schwabe, L Chapman, JT Finch, D Rhodes Nature 366 (6454), 483-487, 1993 | 448 | 1993 |
Nucleosome repeat length and linker histone stoichiometry determine chromatin fiber structure A Routh, S Sandin, D Rhodes Proceedings of the National Academy of Sciences 105 (26), 8872-8877, 2008 | 427 | 2008 |
The crystal structure of the DNA-binding domain of yeast RAP1 in complex with telomeric DNA P König, R Giraldo, L Chapman, D Rhodes Cell 85 (1), 125-136, 1996 | 399 | 1996 |
A low resolution structure for the histone core of the nucleosome A Klug, D Rhodes, J Smith, JT Finch, JO Thomas Nature 287 (5782), 509-516, 1980 | 397 | 1980 |
30 nm chromatin fibre decompaction requires both H4-K16 acetylation and linker histone eviction PJJ Robinson, W An, A Routh, F Martino, L Chapman, RG Roeder, ... Journal of molecular biology 381 (4), 816-825, 2008 | 389 | 2008 |
Structure of yeast phenylalanine transfer RNA at 2.5 A resolution. JE Ladner, A Jack, JD Robertus, RS Brown, D Rhodes, BFC Clark, A Klug Proceedings of the National Academy of Sciences 72 (11), 4414-4418, 1975 | 362 | 1975 |