Purine Functional Groups in Essential Residues of the Hairpin Ribozyme Required for Catalytic Cleavage of RNA

DC FieldValueLanguage
dc.contributor.authorGrasby, J.A.
dc.contributor.authorMersmann, K.
dc.contributor.authorSingh, M.
dc.contributor.authorGait, M.J.
dc.date.accessioned2021-12-23T16:27:32Z-
dc.date.available2021-12-23T16:27:32Z-
dc.date.issued1995
dc.identifier.issn00062960
dc.identifier.urihttps://osnascholar.ub.uni-osnabrueck.de/handle/unios/15497-
dc.description.abstractSynthetic chemistry techniques have been used to study the functional group requirements of the essential purine residues in hairpin ribozyme cleavage. Three-stranded ribozymes were prepared that had functional group deletions or alterations at single purine sites within loops A and B of the hairpin, and the kinetics of cleavage were compared to those of the unmodified ribozyme. Adenosine analogues used were purine riboside and N7-deazaadenosine, and guanosine analogues used were inosine, N7-deazaguanosine, and O6-methylguanosine. In many cases, introduction of one of these analogues caused substantial loss of ribozyme cleavage activity. Most of the impairments of activity were found to be due to changes in Kcatrather than in Km. The losses corresponded in magnitude to loss of at least one hydrogen bond, and the results were rationalized in terms of removal of potential cross-strand hydrogen bonds as well as potential hydrogen bonds between loops A and B. A new secondary structure model for loop B was proposed. Finally, the magnesium ion dependence of cleavage was studied for the modified ribozymes and compared to that of the unmodified ribozyme. It is proposed that magnesium binds in the ground state to the N7-positions of G+1 and A43and in the transition state to the N7-position at A9. The results provide further evidence for the folding of the two arms of the hairpin so that in the active conformation loops A and B approach closely to form a specific three-dimensional structure with a magnesium ion (or ions) placed between the loops, making contacts in the ground state and in the transition state. © 1995, American Chemical Society. All rights reserved.
dc.language.isoen
dc.relation.ispartofBiochemistry
dc.subjectAdenosine, 58-61-7
dc.subjectAmides
dc.subjectGuanosine, 118-00-3
dc.subjectIndicators and Reagents
dc.subjectMagnesium, 7439-95-4
dc.subjectphosphoramidic acid, 2817-45-0
dc.subjectPhosphoric Acids
dc.subjectPurines
dc.subjectRNA, 63231-63-0
dc.subjectRNA, Catalytic
dc.subjectadenosine derivative
dc.subjectinosine derivative
dc.subjectmagnesium
dc.subjectnebularine
dc.subjectpurine derivative
dc.subjectribozyme, article
dc.subjectcatalysis
dc.subjecthydrogen bond
dc.subjectkinetics
dc.subjectpriority journal
dc.subjectrna cleavage
dc.subjectrna structure
dc.subjectstructure activity relation
dc.subjectstructure analysis, Adenosine
dc.subjectAmides
dc.subjectBase Sequence
dc.subjectComparative Study
dc.subjectGuanosine
dc.subjectIndicators and Reagents
dc.subjectKinetics
dc.subjectMagnesium
dc.subjectMolecular Sequence Data
dc.subjectNucleic Acid Conformation
dc.subjectPhosphoric Acids
dc.subjectPurines
dc.subjectRNA
dc.subjectRNA, Catalytic
dc.subjectStructure-Activity Relationship, Felis catus
dc.titlePurine Functional Groups in Essential Residues of the Hairpin Ribozyme Required for Catalytic Cleavage of RNA
dc.typejournal article
dc.identifier.doi10.1021/bi00012a025
dc.identifier.pmid7535099
dc.identifier.scopus2-s2.0-0028903816
dc.identifier.urlhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-0028903816&doi=10.1021%2fbi00012a025&partnerID=40&md5=b50c3ddea01041b3208e3b9272b35ea8
dc.description.volume34
dc.description.issue12
dc.description.startpage4068
dc.description.endpage4076
dcterms.isPartOf.abbreviationBiochemistry
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