R W Siegel, A B Banta, E S Haas, J W Brown, N R Pace. RNA 1996
Times Cited: 54
Times Cited: 54
Times Cited
Times Co-cited
Similarity
The RNA moiety of ribonuclease P is the catalytic subunit of the enzyme.
C Guerrier-Takada, K Gardiner, T Marsh, N Pace, S Altman. Cell 1983
C Guerrier-Takada, K Gardiner, T Marsh, N Pace, S Altman. Cell 1983
64
Comparative analysis of ribonuclease P RNA using gene sequences from natural microbial populations reveals tertiary structural elements.
J W Brown, J M Nolan, E S Haas, M A Rubio, F Major, N R Pace. Proc Natl Acad Sci U S A 1996
J W Brown, J M Nolan, E S Haas, M A Rubio, F Major, N R Pace. Proc Natl Acad Sci U S A 1996
48
Identification of the universally conserved core of ribonuclease P RNA.
J L Chen, N R Pace. RNA 1997
J L Chen, N R Pace. RNA 1997
46
Base pairing between Escherichia coli RNase P RNA and its substrate.
L A Kirsebom, S G Svärd. EMBO J 1994
L A Kirsebom, S G Svärd. EMBO J 1994
46
RNase P RNAs from some Archaea are catalytically active.
J A Pannucci, E S Haas, T A Hall, J K Harris, J W Brown. Proc Natl Acad Sci U S A 1999
J A Pannucci, E S Haas, T A Hall, J K Harris, J W Brown. Proc Natl Acad Sci U S A 1999
46
44
Structure and evolution of ribonuclease P RNA in Gram-positive bacteria.
E S Haas, A B Banta, J K Harris, N R Pace, J W Brown. Nucleic Acids Res 1996
E S Haas, A B Banta, J K Harris, N R Pace, J W Brown. Nucleic Acids Res 1996
40
Further perspective on the catalytic core and secondary structure of ribonuclease P RNA.
E S Haas, J W Brown, C Pitulle, N R Pace. Proc Natl Acad Sci U S A 1994
E S Haas, J W Brown, C Pitulle, N R Pace. Proc Natl Acad Sci U S A 1994
38
Evolutionary perspective on the structure and function of ribonuclease P, a ribozyme.
N R Pace, J W Brown. J Bacteriol 1995
N R Pace, J W Brown. J Bacteriol 1995
37
Interaction of the 3'-end of tRNA with ribonuclease P RNA.
B K Oh, N R Pace. Nucleic Acids Res 1994
B K Oh, N R Pace. Nucleic Acids Res 1994
37
Use of photoaffinity crosslinking and molecular modeling to analyze the global architecture of ribonuclease P RNA.
M E Harris, J M Nolan, A Malhotra, J W Brown, S C Harvey, N R Pace. EMBO J 1994
M E Harris, J M Nolan, A Malhotra, J W Brown, S C Harvey, N R Pace. EMBO J 1994
35
Derivation of the three-dimensional architecture of bacterial ribonuclease P RNAs from comparative sequence analysis.
C Massire, L Jaeger, E Westhof. J Mol Biol 1998
C Massire, L Jaeger, E Westhof. J Mol Biol 1998
35
Crystal structure of the RNA component of bacterial ribonuclease P.
Alfredo Torres-Larios, Kerren K Swinger, Andrey S Krasilnikov, Tao Pan, Alfonso Mondragón. Nature 2005
Alfredo Torres-Larios, Kerren K Swinger, Andrey S Krasilnikov, Tao Pan, Alfonso Mondragón. Nature 2005
33
Comparative photocross-linking analysis of the tertiary structures of Escherichia coli and Bacillus subtilis RNase P RNAs.
J L Chen, J M Nolan, M E Harris, N R Pace. EMBO J 1998
J L Chen, J M Nolan, M E Harris, N R Pace. EMBO J 1998
31
Recognition of the T stem-loop of a pre-tRNA substrate by the ribozyme from Bacillus subtilis ribonuclease P.
A Loria, T Pan. Biochemistry 1997
A Loria, T Pan. Biochemistry 1997
31
Comparative analysis of ribonuclease P RNA structure in Archaea.
E S Haas, D W Armbruster, B M Vucson, C J Daniels, J W Brown. Nucleic Acids Res 1996
E S Haas, D W Armbruster, B M Vucson, C J Daniels, J W Brown. Nucleic Acids Res 1996
39
Higher order folding and domain analysis of the ribozyme from Bacillus subtilis ribonuclease P.
T Pan. Biochemistry 1995
T Pan. Biochemistry 1995
29
Probing of tertiary interactions in RNA: 2'-hydroxyl-base contacts between the RNase P RNA and pre-tRNA.
T Pan, A Loria, K Zhong. Proc Natl Acad Sci U S A 1995
T Pan, A Loria, K Zhong. Proc Natl Acad Sci U S A 1995
27
Ribonuclease P: unity and diversity in a tRNA processing ribozyme.
D N Frank, N R Pace. Annu Rev Biochem 1998
D N Frank, N R Pace. Annu Rev Biochem 1998
27
Identification of phosphates involved in catalysis by the ribozyme RNase P RNA.
M E Harris, N R Pace. RNA 1995
M E Harris, N R Pace. RNA 1995
27
Analysis of the tertiary structure of the ribonuclease P ribozyme-substrate complex by site-specific photoaffinity crosslinking.
M E Harris, A V Kazantsev, J L Chen, N R Pace. RNA 1997
M E Harris, A V Kazantsev, J L Chen, N R Pace. RNA 1997
27
Phylogenetic evidence for a new tertiary interaction in bacterial RNase P RNAs.
C Massire, L Jaeger, E Westhof. RNA 1997
C Massire, L Jaeger, E Westhof. RNA 1997
31
Multiple magnesium ions in the ribonuclease P reaction mechanism.
D Smith, N R Pace. Biochemistry 1993
D Smith, N R Pace. Biochemistry 1993
27
Crystal structure of the specificity domain of ribonuclease P.
Andrey S Krasilnikov, Xiaojing Yang, Tao Pan, Alfonso Mondragón. Nature 2003
Andrey S Krasilnikov, Xiaojing Yang, Tao Pan, Alfonso Mondragón. Nature 2003
27
Crystal structure of a bacterial ribonuclease P RNA.
Alexei V Kazantsev, Angelika A Krivenko, Daniel J Harrington, Stephen R Holbrook, Paul D Adams, Norman R Pace. Proc Natl Acad Sci U S A 2005
Alexei V Kazantsev, Angelika A Krivenko, Daniel J Harrington, Stephen R Holbrook, Paul D Adams, Norman R Pace. Proc Natl Acad Sci U S A 2005
25
Ribonuclease P protein structure: evolutionary origins in the translational apparatus.
T Stams, S Niranjanakumari, C A Fierke, D W Christianson. Science 1998
T Stams, S Niranjanakumari, C A Fierke, D W Christianson. Science 1998
24
24
New insight into RNase P RNA structure from comparative analysis of the archaeal RNA.
J K Harris, E S Haas, D Williams, D N Frank, J W Brown. RNA 2001
J K Harris, E S Haas, D Williams, D N Frank, J W Brown. RNA 2001
24
Protein component of Bacillus subtilis RNase P specifically enhances the affinity for precursor-tRNAAsp.
J C Kurz, S Niranjanakumari, C A Fierke. Biochemistry 1998
J C Kurz, S Niranjanakumari, C A Fierke. Biochemistry 1998
22
Basis for structural diversity in homologous RNAs.
Andrey S Krasilnikov, Yinghua Xiao, Tao Pan, Alfonso Mondragón. Science 2004
Andrey S Krasilnikov, Yinghua Xiao, Tao Pan, Alfonso Mondragón. Science 2004
22
Purification and characterization of the nuclear RNase P holoenzyme complex reveals extensive subunit overlap with RNase MRP.
J R Chamberlain, Y Lee, W S Lane, D R Engelke. Genes Dev 1998
J R Chamberlain, Y Lee, W S Lane, D R Engelke. Genes Dev 1998
20
Three-dimensional working model of M1 RNA, the catalytic RNA subunit of ribonuclease P from Escherichia coli.
E Westhof, S Altman. Proc Natl Acad Sci U S A 1994
E Westhof, S Altman. Proc Natl Acad Sci U S A 1994
20
Mapping the active site of ribonuclease P RNA using a substrate containing a photoaffinity agent.
A B Burgin, N R Pace. EMBO J 1990
A B Burgin, N R Pace. EMBO J 1990
20
20
Bacterial RNase P: a new view of an ancient enzyme.
Alexei V Kazantsev, Norman R Pace. Nat Rev Microbiol 2006
Alexei V Kazantsev, Norman R Pace. Nat Rev Microbiol 2006
20
Eukaryotic RNase P RNA mediates cleavage in the absence of protein.
Ema Kikovska, Staffan G Svärd, Leif A Kirsebom. Proc Natl Acad Sci U S A 2007
Ema Kikovska, Staffan G Svärd, Leif A Kirsebom. Proc Natl Acad Sci U S A 2007
20
Phylogenetic comparative chemical footprint analysis of the interaction between ribonuclease P RNA and tRNA.
T E LaGrandeur, A Hüttenhofer, H F Noller, N R Pace. EMBO J 1994
T E LaGrandeur, A Hüttenhofer, H F Noller, N R Pace. EMBO J 1994
18
Dramatic size variation of yeast mitochondrial RNAs suggests that RNase P RNAs can be quite small.
C A Wise, N C Martin. J Biol Chem 1991
C A Wise, N C Martin. J Biol Chem 1991
23
Mapping in three dimensions of regions in a catalytic RNA protected from attack by an Fe(II)-EDTA reagent.
E Westhof, D Wesolowski, S Altman. J Mol Biol 1996
E Westhof, D Wesolowski, S Altman. J Mol Biol 1996
18
The design and catalytic properties of a simplified ribonuclease P RNA.
D S Waugh, C J Green, N R Pace. Science 1989
D S Waugh, C J Green, N R Pace. Science 1989
18
Protein component of the ribozyme ribonuclease P alters substrate recognition by directly contacting precursor tRNA.
S Niranjanakumari, T Stams, S M Crary, D W Christianson, C A Fierke. Proc Natl Acad Sci U S A 1998
S Niranjanakumari, T Stams, S M Crary, D W Christianson, C A Fierke. Proc Natl Acad Sci U S A 1998
18
Long-range structure in ribonuclease P RNA.
E S Haas, D P Morse, J W Brown, F J Schmidt, N R Pace. Science 1991
E S Haas, D P Morse, J W Brown, F J Schmidt, N R Pace. Science 1991
18
Phylogenetic analysis and evolution of RNase P RNA in proteobacteria.
J W Brown, E S Haas, B D James, D A Hunt, J S Liu, N R Pace. J Bacteriol 1991
J W Brown, E S Haas, B D James, D A Hunt, J S Liu, N R Pace. J Bacteriol 1991
18
Magnesium ions are required by Bacillus subtilis ribonuclease P RNA for both binding and cleaving precursor tRNAAsp.
J A Beebe, J C Kurz, C A Fierke. Biochemistry 1996
J A Beebe, J C Kurz, C A Fierke. Biochemistry 1996
18
A kinetic mechanism for cleavage of precursor tRNA(Asp) catalyzed by the RNA component of Bacillus subtilis ribonuclease P.
J A Beebe, C A Fierke. Biochemistry 1994
J A Beebe, C A Fierke. Biochemistry 1994
18
Crystal structure of a group I ribozyme domain: principles of RNA packing.
J H Cate, A R Gooding, E Podell, K Zhou, B L Golden, C E Kundrot, T R Cech, J A Doudna. Science 1996
J H Cate, A R Gooding, E Podell, K Zhou, B L Golden, C E Kundrot, T R Cech, J A Doudna. Science 1996
18
Recognition of the 5' leader of pre-tRNA substrates by the active site of ribonuclease P.
Nathan H Zahler, Eric L Christian, Michael E Harris. RNA 2003
Nathan H Zahler, Eric L Christian, Michael E Harris. RNA 2003
18
Structural perspective on the activation of RNAse P RNA by protein.
Amy H Buck, Alexei V Kazantsev, Andrew B Dalby, Norman R Pace. Nat Struct Mol Biol 2005
Amy H Buck, Alexei V Kazantsev, Andrew B Dalby, Norman R Pace. Nat Struct Mol Biol 2005
18
RNase P: interface of the RNA and protein worlds.
Donald Evans, Steven M Marquez, Norman R Pace. Trends Biochem Sci 2006
Donald Evans, Steven M Marquez, Norman R Pace. Trends Biochem Sci 2006
18
Co-cited is the co-citation frequency, indicating how many articles cite the article together with the query article. Similarity is the co-citation as percentage of the times cited of the query article or the article in the search results, whichever is the lowest. These numbers are calculated for the last 100 citations when articles are cited more than 100 times.