The CrystalCure project aims at the development of an innovative strategy combining artificial intelligence (AI)-based design of symmetrical protein interfaces with the exploitation of low-complexity regions (LCR; vide infra), to recombinantly produce crystalline formulation of therapeutic proteins in vivo.
The project builds on expertise of the computational partners in AI-based protein bioinformatics (Sergei GRUDININ, LJK/UGA, and Pablo CHACÓN, IQF-Madrid) and of the biological partners (Jacques-Philippe COLLETIER, IBS/CEA, and Leila SLAMTI, MICALIS) in the screening of, and structure determination from, nanocrystals produced by recombinant expression in Bacillus thuringiensis.
Our project has the potential to lead transformative changes in the design, production, storage, formulation, cost and diversity of protein therapeutics.
ACTIVITIES
a PhD student will be recruited in the lab of Dr. Grudinin as of Dec 2025
an engineer will be recruited in the lab of Dr. Colletier in 2025-2026
SELECTED LIST OF PUBLICATIONS
Ritchie, D. W., & Grudinin, S. (2016). Spherical polar Fourier assembly of protein complexes with arbitrary point group symmetry. Applied Crystallography, 49(1), 158-167.
Colletier JP, Sawaya MR, Gingery M, Rodriguez JA, Cascio D, Brewster AS, Michels-Clark T, Hice RH, Coquelle N, Boutet S, Williams GJ, Messerschmidt M, DePonte DP, Sierra RG, Laksmono H, Koglin JE, Hunter MS, Park HW, Uervirojnangkoorn M, Bideshi DK, Brunger AT, Federici BA, Sauter NK, Eisenberg DS. (2016) De novo phasing with X-ray laser reveals mosquito larvicide BinAB structure. Nature, 539(7627):43-47. doi: 10.1038/nature19825. Epub 2016 Sep 28.
Pagès, G., Kinzina, E., & Grudinin, S. (2018). Analytical symmetry detection in protein assemblies. I. Cyclic symmetries. Journal of Structural Biology, 203(2), 142-148
Pagès, G., & Grudinin, S. (2018). Analytical symmetry detection in protein assemblies. II. Dihedral and cubic symmetries. Journal of structural biology, 203(3), 185-194.
Gao, Z., Tan, C., Chacón, P., & Li, S. Z. (2022). Pifold: Toward effective and efficient protein inverse folding. arXiv preprint arXiv:2209.12643.
Tetreau G, Sawaya MR, De Zitter E, Andreeva EA, Banneville AS, Schibrowsky NA, Coquelle N, Brewster AS, Grünbein ML, Kovacs GN, Hunter MS, Kloos M, Sierra RG, Schiro G, Qiao P, Stricker M, Bideshi D, Young ID, Zala N, Engilberge S, Gorel A, Signor L, Teulon JM, Hilpert M, Foucar L, Bielecki J, Bean R, de Wijn R, Sato T, Kirkwood H, Letrun R, Batyuk A, Snigireva I, Fenel D, Schubert R, Canfield EJ, Alba MM, Laporte F, Després L, Bacia M, Roux A, Chapelle C, Riobé F, Maury O, Ling WL, Boutet S, Mancuso A, Gutsche I, Girard E, Barends TRM, Pellequer JL, Park HW, Laganowsky AD, Rodriguez J, Burghammer M, Shoeman RL, Doak RB, Weik M, Sauter NK, Federici B, Cascio D, Schlichting I, Colletier JP. (2022). De novo determination of mosquitocidal Cry11Aa and Cry11Ba structures from naturally-occurring nanocrystals. Nat Commun., 13(1):4376. doi: 10.1038/s41467-022-31746-x.
Tetreau G, Banneville AS, Andreeva EA, Brewster AS, Hunter MS, Sierra RG, Teulon JM, Young ID, Burke N, Grünewald TA, Beaudouin J, Snigireva I, Fernandez-Luna MT, Burt A, Park HW, Signor L, Bafna JA, Sadir R, Fenel D, Boeri-Erba E, Bacia M, Zala N, Laporte F, Després L, Weik M, Boutet S, Rosenthal M, Coquelle N, Burghammer M, Cascio D, Sawaya MR, Winterhalter M, Gratton E, Gutsche I, Federici B, Pellequer JL, Sauter NK, Colletier JP. (2020) Serial femtosecond crystallography on in vivo-grown crystals drives elucidation of mosquitocidal Cyt1Aa bioactivation cascade. Nat Commun., 11(1):1153. doi: 10.1038/s41467-020-14894-w.
Published on September 17, 2025 Updated on September 17, 2025
Core members
Nielsen-LeRoux & Slamti's team (GME), MICALIS, INRAE
Pablo CHACÓN, IQF-Madrid
Associated members
R. Vuillemot,
R. Klypa,
T. Cernocky
N. Coquelle
E. De Zitter
M. Weik
Research topics
Generative protein design ; Nanocrystalline formulation of protein therapeutics ; In vivo crystallization.
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