Utilize este identificador para referenciar este registo: https://hdl.handle.net/10316/103325
Campo DCValorIdioma
dc.contributor.authorLuís, João P.-
dc.contributor.authorMata, Ana I.-
dc.contributor.authorSimões, Carlos J. V.-
dc.contributor.authorBrito, Rui M. M.-
dc.date.accessioned2022-11-07T10:10:23Z-
dc.date.available2022-11-07T10:10:23Z-
dc.date.issued2022-02-26-
dc.identifier.issn1422-0067pt
dc.identifier.urihttps://hdl.handle.net/10316/103325-
dc.description.abstractInterleukin-1 receptor type 1 (IL-1R1) is a key player in inflammation and immune responses. This receptor regulates IL-1 activity in two forms: as a membrane-bound form and as a soluble ectodomain. The details and differences between the conformational dynamics of the membrane-bound and the soluble IL-1R1 ectodomains (ECDs) remain largely elusive. Here, we study and compare the structural dynamics of the soluble and membrane-bound IL-1R1-ECDs using molecular dynamics (MD) simulations, focusing on the flexible interdomain linker of the ECD, as well as the spatial rearrangements between the Ig-like domains of the ECD. To explore the membrane-bound conformations, a full-length IL-1R1 structural model was developed and subjected to classical equilibrium MD. Comparative analysis of multiple MD trajectories of the soluble and the membrane-bound IL-1R1-ECDs reveals that (i) as somewhat expected, the extent of the visited "open-to-closed" transitional states differs significantly between the soluble and membrane-bound forms; (ii) the soluble form presents open-closed transitions, sampling a wider rotational motion between the Ig-like domains of the ECD, visiting closed and "twisted" conformations in higher extent, whereas the membrane-bound form is characterized by more conformationally restricted states; (iii) interestingly, the backbone dihedral angles of residues Glu202, Glu203 and Asn204, located in the flexible linker, display the highest variations during the transition between discrete conformational states detected in IL-1R1, thus appearing to work as the "central wheel of a clock's movement". The simulations and analyses presented in this contribution offer a deeper insight into the structure and dynamics of IL-1R1, which may be explored in a drug discovery setting.pt
dc.language.isoengpt
dc.relationFCT - Ph.D. grant PD/BD/135292/2017pt
dc.relationFCT - Ph.D. grant PD/BD/135289/2017pt
dc.relationFCT - UID/QUI/00313/2019pt
dc.relationFCT - CPCA/A0/7316/2020pt
dc.rightsopenAccesspt
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/pt
dc.subjectinterleukin-1pt
dc.subjectinterleukin-1 receptor type 1pt
dc.subjectflexible linkerpt
dc.subjectmolecular dynamicspt
dc.subject.meshProtein Conformationpt
dc.subject.meshMolecular Dynamics Simulationpt
dc.titleConformational Dynamics of the Soluble and Membrane-Bound Forms of Interleukin-1 Receptor Type-1: Insights into Linker Flexibility and Domain Orientationpt
dc.typearticle-
degois.publication.firstPage2599pt
degois.publication.issue5pt
degois.publication.titleInternational Journal of Molecular Sciencespt
dc.peerreviewedyespt
dc.identifier.doi10.3390/ijms23052599pt
degois.publication.volume23pt
dc.date.embargo2022-02-26*
uc.date.periodoEmbargo0pt
item.fulltextCom Texto completo-
item.grantfulltextopen-
item.languageiso639-1en-
item.cerifentitytypePublications-
item.openairetypearticle-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
crisitem.author.researchunitCQC - Coimbra Chemistry Centre-
crisitem.author.researchunitCQC - Coimbra Chemistry Centre-
crisitem.author.researchunitCQC - Coimbra Chemistry Centre-
crisitem.author.parentresearchunitFaculty of Sciences and Technology-
crisitem.author.parentresearchunitFaculty of Sciences and Technology-
crisitem.author.parentresearchunitFaculty of Sciences and Technology-
crisitem.author.orcid0000-0003-2760-6996-
crisitem.author.orcid0000-0002-9508-7035-
crisitem.author.orcid0000-0001-5994-9104-
crisitem.author.orcid0000-0001-9128-2557-
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