How human serum albumin recognizes DNA and RNA

We show here for the first time that HSA possesses two nucleic acid-(NA) binding sites and we estimated the relative contributions of the nucleotide links of (pN) to their total affinity for these binding sites with higher and lower affinity for NAs. The minimal ligands of these binding sites are ph...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Biological chemistry 2018-03, Vol.399 (4), p.347-360
Hauptverfasser: Alinovskaya, Ludmila I., Sedykh, Sergey E., Ivanisenko, Nikita V., Soboleva, Svetlana E., Nevinsky, Georgy A.
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:We show here for the first time that HSA possesses two nucleic acid-(NA) binding sites and we estimated the relative contributions of the nucleotide links of (pN) to their total affinity for these binding sites with higher and lower affinity for NAs. The minimal ligands of these binding sites are phosphate ( =3.0 and 20.0 m ), various dNMPs (5.6–400 μ and 0.063–18 m ) and different rNMPs (4.9–30 μ and 14–250 μ ). Maximal contribution to the total affinity of all NAs to the first and second sites was observed for one nucleotide and was remarkably lower for three additional nucleotide units of (pN) (n=1–4) with a significant decrease in the contribution at n=5–6, and at n≥7–8 all dependencies reached plateaus. For d(pA) and r(pA) a relatively gradual decrease in the contribution to the affinity at n=1–6 was observed, while several d(pN) , demonstrated a sharp increase in the contribution at n=2–4. Finally, all (pN) demonstrated high affinity for the first (1.4–150 n ) and the second (80–2400 n ) sites of HSA. Double-stranded NAs showed significantly lower affinity comparing with single-stranded ligands. The thermodynamic parameters characterizing the specific contribution of every nucleotide link of all (pN) (ΔG°) to their total affinity for HSA were estimated.
ISSN:1431-6730
1437-4315
DOI:10.1515/hsz-2017-0243