en:structure:labs:kar
Содержание

Laboratory of Ribosome Structure and Function

Head of the Laboratory




Galina G. Karpova,
prof., Dr.Chem.Sci. The Russia State Prize in Science and Technique (1999) Prize of International Publishing Company “Nauka/Interperiodika” (2003, 2009, 2010)
Phone: +7(383)363-51-40,



Staff

Name Degree Tel. E-mail Researcher ID
1. Karpova G. Galina D.Sc. 363-51-40 G-7209-2013
2. Graifer M. Dmytry D.Sc. 363-51-39 G-8448-2013
3. Bulygin N. Konstantin Ph.D. 363-51-39 H-3603-2013
4. Malygin A. Aleksey Ph.D. 363-51-39 G-6924-2013
5. Ivanov V. Anton Ph.D. 363-51-39 G-6960-2013
6. Babaylova S. Elena Ph.D. 363-51-39 H-3598-2013
7. Bartuli (Khairulina) S. Yuliya Ph.D. 363-51-39 C-2505-2014
8. Yanshina D. Darya Ph.D. 363-51-39 G-8833-2013
9. Kossinova A. Olga 363-51-39 G-8454-2013
10.Kuzekmaeva V. Tatyana 363-51-39
11.Sharifulin E. Dmitriy 363-51-39

Research focus

Main scientific results

Main publications 2011-2014

  1. Graifer D.M., Malygin A.A., Zharkov D.O., Karpova G.G. Eukaryotic ribosomal protein S3: A constituent of translational machinery and an extraribosomal player in various cellular processes. Biochimie. 2014. 99, 8-18.
  2. Malygin A.A., Kossinova O.A., Shatsky I., Karpova G.G. HCV IRES interacts with the 18S rRNA to activate the 40S ribosome for subsequent steps of translation initiation. Nucleic Acids Res. 2013. 41, 8706-8714.
  3. Sharifulin D.E., Babaylova E.S., Kossinova O.A., Bartuli Y.S., Graifer D.M., Karpova G.G. Ribosomal protein S5e is implicated in translation initiation via its interaction with N-terminal domain of initiation factor eIF2. ChemBioChem. 2013. 14, 2136-2143.
  4. Kossinova O., Malygin A.A., Krol A., Karpova G.G. A novel insight into the mechanism of mammalian selenoprotein synthesis. RNA. 2013. 19(8), 1147-1158.
  5. Graifer D.M., Karpova G.G. Photoactivatable RNA derivatives as tools for studying the structural and functional organization of complex cellular ribonucleoprotein machineries. RSC Adv. 2013. 3(9), 2858-2872.
  6. Ivanov A.V., Malygin A.A., Karpova G.G. Mg2+ ions affect structure of central domain of 18S rRNA near ribosomal protein S13 binding site. Molecular Biology (Moscow). 2013. 47, 140–148.
  7. Bulygin K.N., Malygin A.A., Hountondji C., Graifer D.M., Karpova G.G. Positioning of CCA-arms of the A- and the P-tRNAs towards the 28S rRNA in the human ribosome. Biochimie. 2013. 95(2), 195-203.
  8. Malygin A.A., Shatsky I.N., Karpova G.G. Proteins of the human 40S ribosomal subunit involved in hepatitis C IRES binding as revealed from fluorescent labeling. Biochemistry (Moscow). 2013. 78, 53-59.
  9. Graifer D.M., Karpova G.G. Structural aspects of ribosomal ligands interactions providing the work of the human translational machinery. In: Ribosomes. Zhou Lin and Wang Liu (Eds). Nova Science Publishers. Inc. NY. 2013, 1-30.
  10. Graifer D.M., Karpova G.G. A strategy for determination of protein sites involved in the interactions with RNA ligands in the human translational machinery. In: Protein Purification and Analysis I - Methods and Applications. iConcept Press Ltd. Hong Kong. 2013, 57-76.
  11. Graifer D.M., Karpova G.G. Structural and functional topography of the human ribosome. Acta Biochem. Biophys. Sin. 2012. 44, 281-299.
  12. Sharifulin D.E., Khairulina Y.S., Ivanov A.V., Meshchaninova M.I., Venyaminova A.G., Graifer D.M., Karpova G.G. A central fragment of ribosomal protein S26 containing the eukaryote-specific motif YxxPKxYxK is a key component of the ribosomal binding site of mRNA region 5’ of the E site codon. Nucleic Acids Res. 2012. 40, 3056-3065.
  13. Graifer D.M., Zhigailov A., Venyaminova A.G., Malygin A.A., Iskakov B., Karpova G.G. 2’-OH of mRNA are critical for the binding of its codons at the 40S ribosomal P site but not at the mRNA entry site. FEBS Lett. 2012. 586, 3731-3736.
  14. Bulygin K.N., Khairulina Yu.S., Kolosov P.M., Ven’yaminova A.G., Graifer D.M., Vorobjev Yu.N., Frolova L.Yu., Karpova G.G. Adenine and guanine recognition of stop codon is mediated by different N domain conformations of translation termination factor eRF1. Nucleic Acids Res. 2011. 39, 7134–7146.
  15. Malygin A.A., Babaylova E.S., Loktev V.B., Karpova G.G. A region in the C-terminal domain of ribosomal protein SA required for binding of SA to the human 40S ribosomal subunit. Biochimie. 2011. 93, 612-617.
  16. Ilin A.A., Malygin A.A., Karpova G.G. Ribosomal protein S18e as a putative molecular staple for the 18S rRNA 3’-major domain core. Biochim. Biophys. Acta. 2011. 1814, 505-512.

Current grants

RFBR (Grants of Russian Foundation for Basic Research)

Program of the Presidium of RAS
N6 “Molecular and cell biology”

Scientific equipment: