World's Best Scientists 2026 revealed!

D-Index & Metrics

Molecular Biology

D-Index
67
Citations
24842
World Ranking
1546
National Ranking
10

Research.com Recognitions

  • 2011 - Member of Academia Europaea
  • 2007 - Fellow of the Royal Society, United Kingdom

Overview

Daniela Rhodes is affiliated with Nanyang Technological University in Singapore and specializes in Biochemistry, Genetics, and Molecular Biology. Their research primarily focuses on Molecular Biology, with significant contributions to related subfields such as Physiology, Cell Biology, Immunology, and Oncology.

The main topics of their work include:

  • Genomics and Chromatin Dynamics
  • Telomeres, Telomerase, and Senescence
  • DNA Repair Mechanisms
  • DNA and Nucleic Acid Chemistry
  • Nuclear Structure and Function
  • Advanced biosensing and bioanalysis techniques
  • RNA and protein synthesis mechanisms

The following recent publications illustrate the scope of their research:

  • Columnar structure of human telomeric chromatin, 2022, Nature
  • Structural basis of G-quadruplex DNA recognition by the yeast telomeric protein Rap1, 2020, Nucleic Acids Research
  • The human telomeric nucleosome displays distinct structural and dynamic properties, 2020, Nucleic Acids Research
  • AKTIP interacts with ESCRT I and is needed for the recruitment of ESCRT III subunits to the midbody, 2021, PLoS Genetics
  • Insights into POT1 structural dynamics revealed by cryo-EM, 2022, PLoS ONE

Daniela Rhodes has collaborated with several frequent co-authors, including:

  • Hsiangling Teo
  • Chong Wai Liew
  • Aghil Soman
  • Nikolay Korolev
  • Vinod K. Vogirala

The scientist's work has been published in various venues, with multiple papers appearing in:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Nucleic Acids Research
  • Nature
  • PLoS Genetics
  • PLoS ONE

Recognized for their contributions to science, Daniela Rhodes holds the following awards:

  • Member of Academia Europaea, 2011
  • Fellow of the Royal Society, United Kingdom, 2007

Best Publications

  • G-quadruplexes and their regulatory roles in biology.

    Daniela Rhodes;Hans J. Lipps

  • Structure of yeast phenylalanine tRNA at 3 A resolution.

    J. D. Robertus;Jane E. Ladner;J. T. Finch;Daniela Rhodes

  • Structure of the nucleosome core particle at 7 Å resolution

    T. J. Richmond;J. T. Finch;B. Rushton;D. Rhodes

  • Zinc fingers: a novel protein fold for nucleic acid recognition.

    Aaron Klug;Daniela Rhodes

  • The crystal structure of the estrogen receptor DNA-binding domain bound to DNA: How receptors discriminate between their response elements

    John W.R. Schwabe;Lynda Chapman;John T. Finch;Daniela Rhodes

  • Structure of nucleosome core particles of chromatin

    J. T. Finch;L. C. Lutter;D. Rhodes;R. S. Brown

  • G-quadruplex structures: in vivo evidence and function

    Hans J. Lipps;Daniela Rhodes

  • ‘Zinc fingers’: a novel protein motif for nucleic acid recognition

    Aaron Klug;Daniela Rhodes

  • Telomere end-binding proteins control the formation of G-quadruplex DNA structures in vivo

    Katrin Paeschke;Tomas Simonsson;Jan Postberg;Daniela Rhodes

  • EM measurements define the dimensions of the "30-nm" chromatin fiber: evidence for a compact, interdigitated structure.

    Philip J. J. Robinson;Louise Fairall;Van A. T. Huynh;Daniela Rhodes

  • Solution structure of the DNA-binding domain of the oestrogen receptor.

    John W. R. Schwabe;David Neuhaus;Daniela Rhodes

  • A Method for Genetically Installing Site-Specific Acetylation in Recombinant Histones Defines the Effects of H3 K56 Acetylation

    Heinz Neumann;Susan M. Hancock;Ruth Buning;Andrew Routh

  • Helical periodicity of DNA determined by enzyme digestion

    D. Rhodes;A. Klug

  • The crystal structure of a two zinc-finger peptide reveals an extension to the rules for zinc-finger/DNA recognition.

    Louise Fairall;John W. R. Schwabe;Lynda Chapman;John T. Finch

  • Structure of the '30 nm' chromatin fibre: a key role for the linker histone.

    Philip J J Robinson;Daniela Rhodes

  • ATR-X Syndrome Protein Targets Tandem Repeats and Influences Allele-Specific Expression in a Size-Dependent Manner

    Martin J. Law;Karen M. Lower;Hsiao P.J. Voon;Jim R. Hughes

  • Nucleosome repeat length and linker histone stoichiometry determine chromatin fiber structure

    Andrew Routh;Sara Sandin;Daniela Rhodes

  • A low resolution structure for the histone core of the nucleosome

    A Klug;D Rhodes;J Smith;J T Finch

  • The Crystal Structure of the DNA-Binding Domain of Yeast RAP1 in Complex with Telomeric DNA

    Peter König;Rafael Giraldo;Lynda Chapman;Daniela Rhodes

  • 30 nm Chromatin Fibre Decompaction Requires both H4-K16 Acetylation and Linker Histone Eviction

    Philip J.J. Robinson;Woojin An;Andrew Routh;Fabrizio Martino

Frequent Co-Authors

Aaron Klug
Aaron Klug MRC Laboratory of Molecular Biology
John W. R. Schwabe
John W. R. Schwabe University of Leicester
Philip C. Robinson
Philip C. Robinson University of Queensland
Douglas R. Higgs
Douglas R. Higgs University of Oxford
Richard J. Gibbons
Richard J. Gibbons University of Oxford
Jon D. Robertus
Jon D. Robertus The University of Texas at Austin
Andrew Travers
Andrew Travers MRC Laboratory of Molecular Biology
Titia de Lange
Titia de Lange Rockefeller University
Stephen J. Elledge
Stephen J. Elledge Harvard University

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