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PROTEIN SYNTHESIS REGULATION

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All publications (since 2003):

I.M. Terenin, S.E. Dmitriev, D.E. Andreev, I.N. Shatsky.(2008) Eukaryotic translation initiation machinery can operate in a bacterial-like mode without eIF2. Nat. Struct. Mol. Biol. 15(8), 836-841. [PubMed][PDF]

D. Andreev, V. Hauryliuk, I. Terenin, S. Dmitriev, M. Ehrenberg, I. Shatsky (2008) The bacterial toxin RelE induces specific mRNA cleavage in the A site of the eukaryote ribosome. RNA 14(2), 233-239. [PubMed][PDF]

D.E. Andreev, O. Fernandez-Miragall, J. Ramajo, S.E. Dmitriev, I.M. Terenin, E. Martinez-Salas, I.N. Shatsky (2007) Differential factor requirement to assemble translation initiation complexes at the alternative start codons of foot-and-mouth disease virus RNA. RNA 13(8), 1366-1374. [PubMed][PDF]

S.E. Dmitriev, D.E. Andreev, I.M. Terenin, I.A. Olovnikov, V.S. Prassolov, W.C. Merrick, I.N. Shatsky (2007) Efficient translation initiation directed by the 900 nucleotides-long and GC-rich 5’ UTR of the human retrotransposon LINE-1 mRNA is strictly cap-dependent rather than IRES-mediated. Mol. Cell. Biol. 27(13), 4685-4697. [PubMed][PDF]

I.A. Olovnikov, Z.V. Adyanova, E.R. Galimov, D.E. Andreev, I.M. Terenin, D.S. Ivanov, V.S. Prassolov, S.E. Dmitriev (2007) Key Role of the Internal 5'-UTR Segment in the Transcription Activity of the Human L1 Retrotransposon. Mol Biol (Mosk). 41(3), 453-458. [PubMed][PDF]

D.E. Andreev, I.M Terenin, S.E. Dmitriev, I.N. Shatskii (2006) Similar features in mechanisms of translation initiation of mRNAs in eukaryotic and prokaryotic systems. Mol Biol (Mosk). 40(4), 620-627. [PubMed][PDF]

E. Laletina, D. Graifer, A. Malygin, A. Ivanov, I. Shatsky, G. Karpova (2006) Proteins surrounding hairpin IIIe of the hepatitis C virus internal ribosome entry site on the human 40S ribosomal subunit. Nucleic Acids Res. 34(7), 2027-2036. [PubMed][PDF]

D.E. Andreev, I.M. Terenin, Y.E. Dunaevsky, S.E. Dmitriev, I.N. Shatsky (2006) A leaderless mRNA can bind to mammalian 80S ribosomes and direct polypeptide synthesis in the absence of translation initiation factors. Mol. Cell. Biol. 26(8), 3164-3169. [PubMed][PDF]

S.E. Dmitriev, N.V. Bykova, D.E. Andreev, I.M Terenin (2006) Adequate system for investigation of translation initiation of the human retrotransposon L1 mRNA in vitro. Mol Biol (Mosk). 40(1), 20-24. [PubMed][PDF]

I.M. Terenin, S.E. Dmitriev, D.E. Andreev, E. Royall, G.J. Belsham, L.O. Roberts, I.N. Shatsky (2005) A cross-kingdom internal ribosome entry site reveals a simplified mode of internal ribosome entry. Mol. Cell. Biol, 25(17), 7879-7888. [PubMed][PDF]

A.V. Pisarev, S.E. Dmitriev, I.N. Shatskii (2004) Mutual effect of translation initiation factors in binding with IRES-element of encephalmyocarditis virus RNA. Mol Biol (Mosk). 38(2), 261-265. [PubMed][PDF]

A.V. Pisarev, L.S. Chard, Y. Kaku, H.L. Johns, I.N. Shatsky, G.I. Belsham. (2004) Functional and structural similarities between the internal ribosome entry sites of hepatitis C virus and porcine teschovirus, a picornavirus. J Virol. 78(9):4487-4497. [PubMed][PDF]

S.E. Dmitriev, I.M. Terenin, Y.E. Dunaevsky, W.C. Merrick, I.N. Shatsky (2003) Assembly of 48S translation initiation complexes from purified components with mRNAs that have some base-pairing within their 5’-UTRs. Mol. Cell. Biol, 23(24), 8925-8933. [PubMed][PDF]

M.P. Rubtsova, D.V. Sizova, S.E. Dmitriev, D.S. Ivanov, V.S. Prassolov, I.N. Shatsky (2003) Distinctive properties of the 5'-untranslated region of human hsp70 mRNA. J. Biol. Chem. 278(25), 22350-22356. [PubMed][PDF]

A.S. Zolotukhin, D. Michalowski, J. Bear, S.V. Smulevitch, A.M. Traish, R. Peng, J. Patton, I.N. Shatsky, B.K. Felber. (2003) PSF acts through the human immunodeficiency virus type 1 mRNA instability elements to regulate virus expression. Mol Cell Biol. 23(18), 6618-6630. [PubMed][PDF]

S.E. Dmitriev, A.V. Pisarev, M.P. Rubtsova, Y.E. Dunaevsky, I.N. Shatsky (2003) Conversion of 48S translation preinitiation complexes into 80S initiation complexes as revealed by toeprinting. FEBS Lett, 533(1-3), 99-104. [PubMed][PDF]

S.E. Dmitriev, I.M. Terenin, M.P. Rubtsova, I.N. Shatskii (2003) Minor secondary-structure variation in the 5'-untranslated region of the beta-globin mRNA changes the concentration requirements for eIF2. Mol Biol (Mosk). 37(3), 421-428. [PubMed][PDF]