Extraordinarily thermo-stable hairpin structures: partial structure of single-stranded nucleic acids
Hirao, I.
Seikagaku. Journal of Japanese Biochemical Society 66(11): 1414-1418
1994
ISSN/ISBN: 0037-1017 PMID: 7852765 Document Number: 424151
Document emailed within 1 workday
Related Documents
Hirao, I.; Nishimura, Y.; Ishida, M.; Watanabe, K.; Miura, K. 1989: Interconvertible hairpin structure found in the replication origin of phage G4 single-stranded DNA Nucleic Acids Symposium Series 21: 13-14Oberosler, P.; Hloch, P.; Ramsperger, U.; Stahl, H. 1993: p53-catalyzed annealing of complementary single-stranded nucleic acids EMBO Journal 12(6): 2389-2396
Strel'tsov, S.A.; Semenov, T.E.; Moroz, O.V. 1993: The hierarchy of complexes and compact structures of trivaline with nucleic acids. I. Interaction of trivaline with double-stranded DNA Molekuliarnaia Biologiia 27(5): 1165-1182
Inami, Y.; Nakamura, K.; Ishiba, H.; Kishida, A.; Akashi, M. 1993: Affinity gel electrophoresis of nucleic acids. the interaction between water soluble polymers having malachite green and double-stranded DNAs Nucleic Acids Symposium Series 29: 77-78
Bala, I.M.; Predtechenskaia, V.S. 1975: The concentration of nucleic acids in the subcellular structures of the thyroid gland in several of its diseases Problemy Endokrinologii 21(1): 23-25
Barciszewska, M.Z.; Barciszewski, J. 1992: Functional reliance of nucleic acids on structure Postepy Biochemii 38(4): 171-178
Abramova, T.V.; Lebedev, A.V.; Raĭt, A.S. 1988: Diastereomers of nonionic analogs of nucleic acids. V. Alkylation of nucleic acids in the living cells by ethylated derivatives of oligonucleotides containing the residue of nitrous yperite. the effect of the phosphotriester fragment configuration Molekuliarnaia Biologiia 22(5): 1285-1292
Dautrevaux, M.; Biserte, G. 1971: Primary structure of nucleic acids in relation to protein biosynthesis Lille Medical: Journal de la Faculte de Medecine et de Pharmacie de l'Universite de Lille 16(4): 596-603
Barciszewski, J.; Jurczak, J.; Porowski, S.; Specht, T.; Erdmann, V.A. 1999: The decisive role of the water structure in changes of conformation of nucleic acids Acta Biochimica Polonica 46(1): 133-144
Jeltsch, A.; Sobotta, T.; Pingoud, A. 1996: Structure prediction of the EcoRV DNA methyltransferase based on mutant profiling, secondary structure analysis, comparison with known structures of methyltransferases and isolation of catalytically inactive single mutants Protein Engineering 9(5): 413-423
Kremen, J.; Stríbrná, J.; Sula, J. 1978: Effect of actinomycin D and daunomycin on the biosynthesis of nucleic acids in cells transformed by oncornavirus and on the biosynthesis of viral nucleic acids Sbornik Lekarsky 80(5): 136-141
Epstein, W.V. 1975: Specificity of SLE serum antibody for single-stranded and double-stranded DNA configuration Journal of Rheumatology 2(2): 215-220
Sukhorukov, B.I.; Gukovskaia, A.S.; Sukhoruchkina, L.V.; Lavrenova, G.I. 1972: Optical properties and molecular structure of nucleic acids and their components. V. Spectrophotometric determination of thermodynamic parameters for protolytic reactions of cytosine and its N- and O-methyl derivatives Biofizika 17(1): 5-11
Spiess, E.; Richter, G. 1971: P32-labelling of nucleic acids and the role of phosphate in the nucleic acid metabolism of Euglena greacilis Archiv für Mikrobiologie 78(2): 118-127
Timofeev, V.P.; Arutiunian, A.I.; Petrov, A.I. 1990: Segmental flexibility of single-, double-, and triple-stranded polyribonucleotides from the data of spin label method. Formation of the triple-stranded poly(A.A.U) polynucleotide helix Molekuliarnaia Biologiia 24(1): 140-155
Jamin, N.; Dumas, P.; Moncuit, J.; Fridman, W.H.; Teillaud, J.L.; Carr, G.L.; Williams, G.P. 1998: Chemical imaging of nucleic acids, proteins and lipids of a single living cell. Application of synchrotron infrared microspectrometry in cell biology Cellular and Molecular Biology 44(1): 9-13
Batianovskiĭ, A.V.; Namiot, V.A.; Filatov, I.V.; Moldaver, M.V.; Anashkina, A.A.; Tumanian, V.G.; Esipova, N.G.; Volotovskiĭ, I.D. 2013: Conformationally stable segments in helical structures of polypeptide chains of proteins and their role in high level structures formation Biofizika 58(6): 1069-1073
Kubyshkin, A.V.; Ogloblina, O.G. 1992: Use of thermo- and acid-stable proteinase inhibitor to suppress proteolytic activation in pulmonary inflammation Biulleten' Eksperimental'noi Biologii i Meditsiny 113(6): 580-582
Chudinov, O.S.; Glazkov, M.V. 2002: In vitro formation of triple-stranded DNA structures in the human alpha1-antitrypsin gene Molekuliarnaia Biologiia 36(1): 123-128
Strel'tsov, S.A.; Lysov, I.P.; Semenov, T.E.; Vengerov, I.I.; Khorlin, A.A.; Surovaia, A.N.; Gurskiĭ, G.V. 1991: Interaction of trivaline with single-stranded polyribonucleotides Molekuliarnaia Biologiia 25(4): 1040-1060