skip to content

Yusuf Hamied Department of Chemistry

 

Professor of Biophysics

Our research

In the last 15 years our research has been focused on the development of methods of characterising the structure, dynamics and interactions of proteins in previously inaccessible states. These methods are based on the use of experimental data, in particular from nuclear magnetic resonance spectroscopy, as structural restraints in molecular dynamics simulations. Through this approach it is possible to obtain information about a variety of protein conformations, as for example those populated during the folding process, and about protein interactions in complex environments, including those generating aggregate species that are associated with neurodegenerative disorders such as Alzheimer's and Parkinson's diseases.

Application to neurodegenerative diseases

More recently, these studies have led us to investigate the physico-chemical principles of proteins homeostasis and their application to the development of therapeutic strategies against neurodegenerative diseases. Starting from the observation that proteins are expressed in the cell at levels close to their solubility limits, we are developing approaches to prevent or delay misfolding disorders based on the enhancement of our quality control mechanisms against protein aggregation.

Watch Professor Vendruscolo discuss his research

Take a tour of the Una Finlay Laboratory in the Centre for Misfolding Diseases

Publications

Observation of an α-synuclein liquid droplet state and its maturation into Lewy body-like assemblies.
MC Hardenberg, T Sinnige, S Casford, ST Dada, C Poudel, EA Robinson, M Fuxreiter, CF Kaminksi, GS Kaminski Schierle, EAA Nollen, CM Dobson, M Vendruscolo
– Journal of molecular cell biology
(2021)
13,
282
Generic interactions in the condensed state of proteins
M Fuxreiter, M Vendruscolo
– EUROPEAN BIOPHYSICS JOURNAL WITH BIOPHYSICS LETTERS
(2021)
50,
90
Therapeutics Against Protein Misfolded Oligomers in Neurodegenerative Diseases
R Limbocker, A Wright, RP Kreiser, B Mannini, M Vendruscolo
– BIOPHYSICAL JOURNAL
(2021)
120,
286A
Rational design of oligomer-specific antibodies as diagnostic tools for Alzheimer's and Parkinson's diseases
M Vendruscolo
– FEBS OPEN BIO
(2021)
11,
15
Determination of intermediate state structures in the opening pathway of SARS-CoV-2 spike using cryo-electron microscopy
F Brotzakis, T Lohr, M Vendruscolo
– FEBS OPEN BIO
(2021)
11,
22
A method of incorporating rate constants as kinetic constraints in molecular dynamics simulations
ZF Brotzakis, M Vendruscolo, PG Bolhuis
– Proceedings of the National Academy of Sciences of the United States of America
(2020)
118,
e2012423118
Environmental Dependence of the Structure of the C-terminal Domain of the SARS-CoV-2 Envelope Protein
K Gadhave, A Kumar, P Kumar, S Kapuganti, N Garg, M Vendruscolo, R Giri
(2020)
2020.12.29.424646
Interactions of α-synuclein oligomers with lipid membranes
G Musteikytė, AK Jayaram, CK Xu, M Vendruscolo, G Krainer, TPJ Knowles
– Biochimica et Biophysica Acta (BBA) - Biomembranes
(2020)
1863,
183536
Screening of small molecules using the inhibition of oligomer formation in α-synuclein aggregation as a selection parameter.
R Staats, TCT Michaels, P Flagmeier, S Chia, RI Horne, J Habchi, S Linse, TPJ Knowles, CM Dobson, M Vendruscolo
– Commun Chem
(2020)
3,
191
Widespread occurrence of the droplet state of proteins in the human proteome.
M Hardenberg, A Horvath, V Ambrus, M Fuxreiter, M Vendruscolo
– Proceedings of the National Academy of Sciences of the United States of America
(2020)
117,
33254
  • <
  • 21 of 81
  • >

Research Interest Groups

Telephone number

01223 763873

Email address

mv245@cam.ac.uk