The major mRNP protein YB-1: Structural and association properties in solution

YB-1 is a major mRNP protein participating in the regulation of transcription and translation of a wide range of eukaryotic genes in many organisms probably due to its influence on mRNA packing into mRNPs. While the functional properties of YB-1 are extensively studied, little is known about its str...

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Veröffentlicht in:Biochimica et biophysica acta 2013-02, Vol.1834 (2), p.559-567
Hauptverfasser: Guryanov, Sergey G., Filimonov, Vladimir V., Timchenko, Alexander A., Melnik, Bogdan S., Kihara, Hiroshi, Kutyshenko, Victor P., Ovchinnikov, Lev P., Semisotnov, Gennady V.
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Sprache:eng
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Zusammenfassung:YB-1 is a major mRNP protein participating in the regulation of transcription and translation of a wide range of eukaryotic genes in many organisms probably due to its influence on mRNA packing into mRNPs. While the functional properties of YB-1 are extensively studied, little is known about its structural properties. In the present work we focused on studying its secondary structure, rigidity of its tertiary structure, compactness, and oligomerization in vitro by using far UV-CD, DSC, one-dimensional 1H NMR, SAXS, sedimentation and FPLC. It was shown that only the cold shock domain within the entire YB-1 chain has a well-packed tertiary structure undergoing cooperative heat and cold denaturation transitions. In contrast, the rest of the YB-1 molecule is not rigidly packed and consists of PP II-like helical secondary structure elements and coil-like regions. At the same time, the overall dimension of the protein molecule is unexpectedly small. The polypeptide chains of YB-1 have a high tendency to form oligomers at neutral pH, while the extent and structural organization of the oligomers depend on protein concentration and ionic strength varying from compact monomeric units up to high molecular weight oligomers. These oligomers in solution are unstable and dissociate upon protein concentration decrease. ► YB-1 is a multifunctional protein regulating transcription and translation. ► The extent of YB-1 oligomerization correlates with ionic strength. ► In solution YB-1 is mainly unfolded but compact protein rich of polypro II helices. ► Cold shock domain of YB-1 is folded and undergoes heat- and cold-induced unfolding.
ISSN:1570-9639
0006-3002
1878-1454
DOI:10.1016/j.bbapap.2012.11.007