Pregled bibliografske jedinice broj: 921498
Exclusion of the cognate substrate from the leucyl - tRNA synthetase editing pathway
Exclusion of the cognate substrate from the leucyl - tRNA synthetase editing pathway // 25. hrvatski skup kemičara i kemijskih inženjera : Knjiga sažetaka / Šantić, Ana ; Đaković, Marijana (ur.).
Poreč: Hrvatsko kemijsko društvo, 2017. str. 208-208 (poster, nije recenziran, sažetak, znanstveni)
CROSBI ID: 921498 Za ispravke kontaktirajte CROSBI podršku putem web obrasca
Naslov
Exclusion of the cognate substrate from the leucyl -
tRNA synthetase editing pathway
Autori
Živković, Igor ; Dulić, Morana ; Cvetešić, Nevena ; Bertoša, Branimir ; Gruić-Sovulj, Ita
Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni
Izvornik
25. hrvatski skup kemičara i kemijskih inženjera : Knjiga sažetaka
/ Šantić, Ana ; Đaković, Marijana - Poreč : Hrvatsko kemijsko društvo, 2017, 208-208
ISBN
978-953-55232-7-7
Skup
25. hrvatski skup kemičara i kemijskih inženjera
Mjesto i datum
Poreč, Hrvatska, 19.04.2017. - 22.04.2017
Vrsta sudjelovanja
Poster
Vrsta recenzije
Nije recenziran
Ključne riječi
leucyl -tRNA synthetase ; post-transfer editing ; norvaline
Sažetak
Aminoacyl-tRNA synthetases (aaRS) are enzymes that use ATP to couple tRNAs with their cognate amino acids. Aminoacylated-tRNAs (aa-tRNAs) are substrates for ribosomal protein synthesis, whose fidelity thus relies on the accuracy of aa-tRNA formation. These enzymes exercise amino acid substrate specificity at the level of binding and/or the chemical steps of aminoacylation. Some aaRS cannot discriminate well against near-cognate amino acids in the synthetic pathway alone and thus utilize hydrolytic editing to minimize the error. Leucyl-tRNA synthetase (LeuRS) pairs leucine with tRNALeu. The main threat to the accuracy of leucylation is posed by non- proteinogenic amino acid norvaline. To prevent error in protein synthesis, LeuRS rapidly hydrolyses Nva-tRNALeu in the separate editing domain. Cognate Leu-tRNALeu evades the hydrolytic correction, yet the mechanism by which is excluded is still not clear. We found a 104-fold slower hydrolysis of Leu-tRNALeu as compared with Nva- tRNALeu, while the Kd values describing LeuRS interactions with Leu-tRNALeu and Nva-tRNALeu were similar. This indicates that LeuRS positions Leu- tRNALeu in an unproductive conformation for editing. To address this issue, we employed molecular dynamics (MD) simulations for the wild type LeuRS and the mutant T252A, which hydrolyses Leu-tRNALeu, with the substrate analogues leucyl- and norvalyl-2’-adenosine bound in the editing active site. The simulations suggest that binding of leucine in a conformation defined by N-Cα-Cβ-Cγ torsion angle of approximately ±180°, which is primarily observed in the WT and not in the T252A, results in a decrease in time during which the systems reside in the productive conformation. As norvalines side chain is not branched, its conformation does not influence the system productivity. To ascertain the chemical nature of discrimination and the role of highly conserved T252 we simulated MD for the T252S and T252V mutants. The results indicate that both mutants likely resemble the wild-type enzyme in discrimination against leucine. The kinetic characterization of these mutants is underway.
Izvorni jezik
Engleski
Znanstvena područja
Kemija, Biologija
POVEZANOST RADA
Projekti:
HRZZ-IP-2016-06-6272 - Aminoacil-tRNA-sintetaze kao čuvari standardnog genetičkog koda (AARSCODE) (Gruić Sovulj, Ita, HRZZ - 2016-06) ( CroRIS)
Ustanove:
Prirodoslovno-matematički fakultet, Zagreb
Profili:
Ita Gruić-Sovulj
(autor)
Nevena Cvetešić
(autor)
Morana Dulić
(autor)
Igor Živković
(autor)
Branimir Bertoša
(autor)