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Yusuf Hamied Department of Chemistry

 

Royal Society University Research Fellow

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Research

Dr Pietro Sormanni is a group leader supported by a Royal Society University Research Fellowship. His research focuses on the development of innovative data-driven technologies of rational antibody design, to obtain antibodies against targets that have been challenging to access using conventional approaches, and to improve or predict biophysical properties crucial for the successful development of antibody therapeutics. In his work he has established numerous collaborations and industrial partnerships, whose outcomes are beginning to demonstrate that computational approaches can be applied alongside established procedures to streamline antibody development, and to offer time- and cost-effective novel alternatives.  

Antibodies are key tools to address questions in biomedical research, are widely employed in diagnostics, and are increasingly used as therapeutics to treat many diseases, including cancer and neurodegeneration. Existing methods of antibody discovery and optimisation rely on the laboratory screening of large numbers of variants produced by library construction or by the immune system, which can be time consuming and costly, and sometimes result in antibodies exhibiting sub-optimal properties. Conversely, computational design could drastically reduce time and costs of antibody discovery, and in principle allow for a highly controlled parallel screening of multiple biophysical properties. Moreover, rational design inherently allows targeting specific regions on the target protein (epitopes), which can be particularly daunting using available techniques but is very important for many therapeutic applications.

Background

Prior to taking up this post, Pietro held a postdoctoral Borysiewicz Biomedical Sciences  Fellowship from the University of Cambridge, obtained a PhD in Chemistry from the University of Cambridge, and an MSc in Theoretical Physics from the University of Milan.

Join our group

We are always looking for talented and enthusiastic individuals to join the team. If you are interested, please get in touch to discuss potential opportunities.

Selected publications

 

 

Dr Sormanni discusses his research

Tour of the Sormanni lab

Publications

Critical assessment of protein intrinsic disorder prediction
M Necci, D Piovesan, CAID Predictors, DisProt Curators, SCE Tosatto
– Nat Methods
(2021)
18,
472
Comparative Studies in the A30P and A53T α-Synuclein C. elegans Strains to Investigate the Molecular Origins of Parkinson's Disease
M Perni, A van der Goot, R Limbocker, TJ van Ham, FA Aprile, CK Xu, P Flagmeier, K Thijssen, P Sormanni, G Fusco, SW Chen, PK Challa, JB Kirkegaard, RF Laine, KY Ma, MBD Müller, T Sinnige, JR Kumita, SIA Cohen, R Seinstra, GS Kaminski Schierle, CF Kaminski, D Barbut, A De Simone, TPJ Knowles, M Zasloff, EAA Nollen, M Vendruscolo, CM Dobson
– Frontiers in Cell and Developmental Biology
(2021)
9,
552549
Fragment-based computational design of antibodies targeting structured epitopes
MA Rangel, A Bedwell, E Costanzi, R Taylor, R Russo, G Bernardes, S Ricagno, J Frydman, M Vendruscolo, P Sormanni
(2021)
2021.03.02.433360
Rationally Designed Bicyclic Peptides Prevent the Conversion of Aβ42 Assemblies Into Fibrillar Structures
T Ikenoue, FA Aprile, P Sormanni, M Vendruscolo
– Front Neurosci
(2021)
15,
623097
Quantifying misfolded protein oligomers as drug targets and biomarkers in Alzheimer and Parkinson diseases
K Kulenkampff, A-M Wolf Perez, P Sormanni, J Habchi, M Vendruscolo
– Nature reviews. Chemistry
(2021)
5,
277
Systematic Activity Maturation of a Single-Domain Antibody with Non-Canonical Amino Acids through Chemical Mutagenesis
PR Lindstedt, FA Aprile, P Sormanni, R Rakoto, CM Dobson, GJL Bernardes, M Vendruscolo
– Cell chemical biology
(2020)
28,
70
Pairs of amino acids at the P- and A-sites of the ribosome predictably and causally modulate translation-elongation rates: Amino acid pairs module translation-elongation rates
N Ahmed, UA Friedrich, P Sormanni, P Ciryam, NS Altman, B Bukau, G Kramer, EP O'Brien
– Journal of Molecular Biology
(2020)
432,
166696
A rationally designed bicyclic peptide remodels Aβ42 aggregation in vitro and reduces its toxicity in a worm model of Alzheimer’s disease
T Ikenoue, FA Aprile, P Sormanni, FS Ruggeri, M Perni, GT Heller, CP Haas, C Middel, R Limbocker, B Mannini, TCT Michaels, TPJ Knowles, CM Dobson, M Vendruscolo
– Scientific Reports
(2020)
10,
15280
Rationally Designed Antibodies as Research Tools to Study the Structure-Toxicity Relationship of Amyloid-β Oligomers
R Limbocker, B Mannini, R Cataldi, S Chhangur, AK Wright, RP Kreiser, JA Albright, S Chia, J Habchi, P Sormanni, JR Kumita, FS Ruggeri, CM Dobson, F Chiti, FA Aprile, M Vendruscolo
– International journal of molecular sciences
(2020)
21,
1
Rational design of a conformation-specific antibody for the quantification of Aβ oligomers
FA Aprile, P Sormanni, M Podpolny, S Chhangur, L-M Needham, FS Ruggeri, M Perni, R Limbocker, GT Heller, T Sneideris, T Scheidt, B Mannini, J Habchi, SF Lee, PC Salinas, TPJ Knowles, CM Dobson, M Vendruscolo
– Proceedings of the National Academy of Sciences
(2020)
117,
13509
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Research Group

Research Interest Group

Email address

ps589@cam.ac.uk

College

Clare Hall