The supramolecular interaction between lanthanide complexes and proteins is at the heart of numerous chemical and biological studies. Some of these complexes have demonstrated remarkable interaction properties with proteins or peptides in solution and in the crystalline state. Here we have used the paramagnetism of lanthanide ions to characterize the affinity of two lanthanide complexes for ubiquitin. As the interaction process is dynamic, the acquired NMR data only reflect the time average of the different steps. We have used molecular dynamics (MD) simulations to get a deeper insight into the detailed interaction scenario at the microsecond scale. This NMR/MD approach enabled us to establish that the tris-dipicolinate complex interacts specifically with arginines and lysines, while the crystallophore explores the protein surface through weak interactions with carboxylates. These observations shed new light on the dynamic interaction properties of these complexes, which will ultimately enable us to propose a crystallization mechanism.We study the supramolecular interaction between ubiquitin and lanthanide complexes by paramagnetic NMR and molecular dynamics. Our observations shed new light on the dynamic interaction processes between these complexes and the surface of the protein.

One touch is all it takes: the supramolecular interaction between ubiquitin and lanthanide complexes revisited by paramagnetic NMR and molecular dynamics / Dos Santos, K.; Bartocci, A.; Gillet, N.; Denis-Quanquin, S.; Roux, A.; Lin, E.; Xu, Z.; Finizola, R.; Chedozeau, P.; Chen, X.; Caradeuc, C.; Baudin, M.; Bertho, G.; Riobe, F.; Maury, O.; Dumont, E.; Giraud, N.. - In: PHYSICAL CHEMISTRY CHEMICAL PHYSICS. - ISSN 1463-9076. - 26:20(2024), pp. 14573-14581. [10.1039/d4cp00463a]

One touch is all it takes: the supramolecular interaction between ubiquitin and lanthanide complexes revisited by paramagnetic NMR and molecular dynamics

Bartocci A.
Co-primo
;
2024-01-01

Abstract

The supramolecular interaction between lanthanide complexes and proteins is at the heart of numerous chemical and biological studies. Some of these complexes have demonstrated remarkable interaction properties with proteins or peptides in solution and in the crystalline state. Here we have used the paramagnetism of lanthanide ions to characterize the affinity of two lanthanide complexes for ubiquitin. As the interaction process is dynamic, the acquired NMR data only reflect the time average of the different steps. We have used molecular dynamics (MD) simulations to get a deeper insight into the detailed interaction scenario at the microsecond scale. This NMR/MD approach enabled us to establish that the tris-dipicolinate complex interacts specifically with arginines and lysines, while the crystallophore explores the protein surface through weak interactions with carboxylates. These observations shed new light on the dynamic interaction properties of these complexes, which will ultimately enable us to propose a crystallization mechanism.We study the supramolecular interaction between ubiquitin and lanthanide complexes by paramagnetic NMR and molecular dynamics. Our observations shed new light on the dynamic interaction processes between these complexes and the surface of the protein.
2024
20
Dos Santos, K.; Bartocci, A.; Gillet, N.; Denis-Quanquin, S.; Roux, A.; Lin, E.; Xu, Z.; Finizola, R.; Chedozeau, P.; Chen, X.; Caradeuc, C.; Baudin, ...espandi
One touch is all it takes: the supramolecular interaction between ubiquitin and lanthanide complexes revisited by paramagnetic NMR and molecular dynamics / Dos Santos, K.; Bartocci, A.; Gillet, N.; Denis-Quanquin, S.; Roux, A.; Lin, E.; Xu, Z.; Finizola, R.; Chedozeau, P.; Chen, X.; Caradeuc, C.; Baudin, M.; Bertho, G.; Riobe, F.; Maury, O.; Dumont, E.; Giraud, N.. - In: PHYSICAL CHEMISTRY CHEMICAL PHYSICS. - ISSN 1463-9076. - 26:20(2024), pp. 14573-14581. [10.1039/d4cp00463a]
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/442991
 Attenzione

Attenzione! I dati visualizzati non sono stati sottoposti a validazione da parte dell'ateneo

Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 1
  • ???jsp.display-item.citation.isi??? 1
  • OpenAlex ND
social impact