SALVI, Nicola, Vojtěch ZAPLETAL, Zuzana JASEŇÁKOVÁ, Milan ZACHRDLA, Petr PADRTA, Subhash NARASIMHAN, Thorsten MARQUARDSEN, Jean-Max TYBURN, Lukáš ŽÍDEK, Martin BLACKLEDGE, Fabien FERRAGE a Pavel KADEŘÁVEK. Convergent views on disordered protein dynamics from NMR and computational approaches. Online. BIOPHYSICAL JOURNAL. UNITED STATES: CELL PRESS, 2022, roč. 121, č. 20, s. 3785-3794. ISSN 0006-3495. Dostupné z: https://dx.doi.org/10.1016/j.bpj.2022.09.016. [citováno 2024-04-23]
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Základní údaje
Originální název Convergent views on disordered protein dynamics from NMR and computational approaches
Autoři SALVI, Nicola, Vojtěch ZAPLETAL (203 Česká republika, domácí), Zuzana JASEŇÁKOVÁ (703 Slovensko, domácí), Milan ZACHRDLA, Petr PADRTA (203 Česká republika, domácí), Subhash NARASIMHAN (356 Indie, domácí), Thorsten MARQUARDSEN, Jean-Max TYBURN, Lukáš ŽÍDEK (203 Česká republika, domácí), Martin BLACKLEDGE, Fabien FERRAGE a Pavel KADEŘÁVEK (203 Česká republika, garant, domácí)
Vydání BIOPHYSICAL JOURNAL, UNITED STATES, CELL PRESS, 2022, 0006-3495.
Další údaje
Originální jazyk angličtina
Typ výsledku Článek v odborném periodiku
Obor 10608 Biochemistry and molecular biology
Stát vydavatele Spojené státy
Utajení není předmětem státního či obchodního tajemství
WWW URL
Impakt faktor Impact factor: 3.400
Kód RIV RIV/00216224:14740/22:00126947
Organizační jednotka Středoevropský technologický institut
Doi http://dx.doi.org/10.1016/j.bpj.2022.09.016
UT WoS 000928435100005
Klíčová slova anglicky NMR; protein dynamics
Štítky CF NMR, rivok
Příznaky Mezinárodní význam, Recenzováno
Změnil Změnil: prof. Mgr. Lukáš Žídek, Ph.D., učo 38990. Změněno: 25. 3. 2024 10:41.
Anotace
Intrinsically disordered proteins (IDPs) or intrinsically disordered regions (IDRs) is a class of biologically important proteins exhibiting specific biophysical characteristics. They lack a hydrophobic core, and their conformational behavior is strongly influenced by electrostatic interactions. IDPs and IDRs are highly dynamic, and a characterization of the motions of IDPs and IDRs is essential for their physically correct description. NMR together with molecular dynamics simulations are the methods best suited to such a task because they provide information about dynamics of proteins with atomistic resolution. Here, we present a study of motions of a disordered C-terminal domain of the delta subunit of RNA polymerase from Bacillus subtilis. Positively and negatively charged residues in the studied domain form transient electrostatic contacts critical for the biological function. Our study is focused on investigation of ps-ns dynamics of backbone of the delta subunit based on analysis of amide 15N NMR relaxation data and molecular dynamics simulations. In order to extend an informational content of NMR data to lower frequencies, which are more sensitive to slower motions, we combined standard (high-field) NMR relaxation experiments with high-resolution relaxometry. Altogether, we collected data reporting the relaxation at 12 different magnetic fields, resulting in an unprecedented data set. Our results document that the analysis of such data provides a consistent description of dynamics and confirms the validity of so far used protocols of the analysis of dynamics of IDPs also for a partially folded protein. In addition, the potential to access detailed description of motions at the timescale of tens of ns with the help of relaxometry data is discussed. Interestingly, in our case, it appears to be mostly relevant for a region involved in the formation of temporary contacts within the disordered region, which was previously proven to be biologically important.
Návaznosti
EF18_070/0009846, projekt VaVNázev: MSCAfellow2@MUNI
GJ18-04197Y, projekt VaVNázev: Charakterizace flexibilních oblastí RNA polymerázy Bacillus subtilis
Investor: Grantová agentura ČR, Characterization of dynamical regions in RNA polymerase from Bacillus subtilis
LM2018127, projekt VaVNázev: Česká infrastruktura pro integrativní strukturní biologii (Akronym: CIISB)
Investor: Ministerstvo školství, mládeže a tělovýchovy ČR, Czech Infrastructure for Integrative Structural Biology
VytisknoutZobrazeno: 23. 4. 2024 22:04