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An energy model that predicts the correct folding of both the tRNA and the 5S RNA molecules

Data up to Jan 2025

Published1984
Citations124
References34

Total Citations Per Year

Abstract

References (34)

Optimal computer folding of large RNA sequences using thermodynamics and auxiliary information

1981 • 3,596 citations

Improved Estimation of Secondary Structure in Ribonucleic Acids

1973 • 2,302 citations

Fast algorithm for predicting the secondary structure of single-stranded RNA.

1980 • 598 citations

Comparison of fungal mitochondrial introns reveals extensive homologies in RNA secondary structure

1982 • 501 citations

5S RNA secondary structure

1975 • 487 citations

Globin mRNA Sequences: Analysis of Base Pairing and Evolutionary Implications

1978 • 403 citations

Evolutionary change in 5S RNA secondary structure and a phylogenic tree of 54 5S RNA species.

1979 • 330 citations

Self-complementary oligoribonucleotides: Adenylic acid-uridylic acid block copolymers

1971 • 160 citations

The ten helical twist angles of B-DNA

1982 • 153 citations

Efficient algorithms for folding and comparing nucleic acid sequences

1982 • 139 citations

Computer method for predicting the secondary structure of single-stranded RNA

1978 • 137 citations

Nucleotide sequence of 5 S RNA from Torulopsis utilis

1974 • 131 citations

Free energy of imperfect nucleic acid helices

1972 • 111 citations

Collection of published 5S and 5.8S ribosomal RNA sequences

1984 • 110 citations

Secondary structure of eukaryotic cytoplasmic 5S ribosomal RNA.

1981 • 103 citations

Three-dimensional structural model of eubacterial 5S RNA that has functional implications.

1982 • 93 citations

Kinetics for exchange of imino protons in the d(C-G-C-G-A-A-T-T-C-G-C-G) double helix and in two similar helices that contain a G.cntdot.T base pair, d(C-G-T-G-A-A-T-T-C-G-C-G), and an extra adenine, d(C-G-C-A-G-A-A-T-T-C-G-C-G)

1982 • 92 citations

Prediction of pairing schemes in RNA molecules-loop contributions and energy of wobble and non-wobble pairs

1980 • 80 citations

A unique secondary folding pattern for 5S RNA corresponds to the lowest energy homologous secondary structure in 17 different prokaryotes

1981 • 79 citations

Self base pairing in a complementary deoxydinucleoside monophosphate duplex: crystal and molecular structure of deoxycytidylyl-(3'-5')-deoxyguanosine

1983 • 61 citations

Polynucleotide analogues. VII. Methylation of polynucleotides.

1966 • 54 citations

Computer-aided prediction of RNA secondary structures

1982 • 53 citations

Physical and biological features of polyoma virus mutants able to infect embryonal carcinoma cell lines

1982 • 48 citations

Determination of the secondary structure of Drosophila melanogaster 5 S RNA by hydroxymethyltrimethylpsoralen crosslinking

1981 • 36 citations

Tertiary structure of the eukaryotic ribosomal 5 S RNA. Accessibility of phosphodiester bonds to ethylnitrosourea modification.

1983 • 36 citations

Participation of Modified Nucleosides in Translation and Transcription

1980 • 34 citations

The sequence of the 5.8 S ribosomal RNA of the crustaceanArtemia salina. With a proposal for a general secondary structure model for 5.8 S ribosomal RNA

1982 • 32 citations

Small changes in free energy assignments for unpaid bases do not affect predicted secondary structures in single stranded RNA

1982 • 28 citations

Properties of nucleic acid representations I. Topology

1971 • 16 citations

A model for base overlap in RNA

1982 • 15 citations

High‐resolution nmr studies of A‐ and G‐containing oligonucleotides

1983 • 8 citations

Computer building and folding of fictitious transfer-RNA sequences

1983 • 7 citations

Polynucleotides XV. Synthesis and properties of polynucleotides containing N- acid residues in polyinosinate and polyadenylate chains

1972 • 7 citations

The effects of base sequence and dangling bases on the stability of short ribonucleic acid duplexes.

1980 • 7 citations

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An energy model that predicts the correct folding of both the tRNA and the 5S RNA… (1984) – Nucleic Acids Research | Metascience Observatory Explorer