B S Balakumaran, C H Freudenreich, V A Zakian. Hum Mol Genet 2000
Times Cited: 67
Times Cited: 67
Times Cited
Times Co-cited
Similarity
Expansion and length-dependent fragility of CTG repeats in yeast.
C H Freudenreich, S M Kantrow, V A Zakian. Science 1998
C H Freudenreich, S M Kantrow, V A Zakian. Science 1998
71
Trinucleotide repeats affect DNA replication in vivo.
G M Samadashwily, G Raca, S M Mirkin. Nat Genet 1997
G M Samadashwily, G Raca, S M Mirkin. Nat Genet 1997
56
Expansion and deletion of CTG repeats from human disease genes are determined by the direction of replication in E. coli.
S Kang, A Jaworski, K Ohshima, R D Wells. Nat Genet 1995
S Kang, A Jaworski, K Ohshima, R D Wells. Nat Genet 1995
49
Stability of a CTG/CAG trinucleotide repeat in yeast is dependent on its orientation in the genome.
C H Freudenreich, J B Stavenhagen, V A Zakian. Mol Cell Biol 1997
C H Freudenreich, J B Stavenhagen, V A Zakian. Mol Cell Biol 1997
47
Replication and expansion of trinucleotide repeats in yeast.
Richard Pelletier, Maria M Krasilnikova, George M Samadashwily, Robert Lahue, Sergei M Mirkin. Mol Cell Biol 2003
Richard Pelletier, Maria M Krasilnikova, George M Samadashwily, Robert Lahue, Sergei M Mirkin. Mol Cell Biol 2003
46
Trinucleotide repeats that expand in human disease form hairpin structures in vitro.
A M Gacy, G Goellner, N Juranić, S Macura, C T McMurray. Cell 1995
A M Gacy, G Goellner, N Juranić, S Macura, C T McMurray. Cell 1995
43
Evidence of cis-acting factors in replication-mediated trinucleotide repeat instability in primate cells.
John D Cleary, Kerrie Nichol, Yuh-Hwa Wang, Christopher E Pearson. Nat Genet 2002
John D Cleary, Kerrie Nichol, Yuh-Hwa Wang, Christopher E Pearson. Nat Genet 2002
37
Meiotic instability of CAG repeat tracts occurs by double-strand break repair in yeast.
C Jankowski, F Nasar, D K Nag. Proc Natl Acad Sci U S A 2000
C Jankowski, F Nasar, D K Nag. Proc Natl Acad Sci U S A 2000
35
Inhibition of FEN-1 processing by DNA secondary structure at trinucleotide repeats.
C Spiro, R Pelletier, M L Rolfsmeier, M J Dixon, R S Lahue, G Gupta, M S Park, X Chen, S V Mariappan, C T McMurray. Mol Cell 1999
C Spiro, R Pelletier, M L Rolfsmeier, M J Dixon, R S Lahue, G Gupta, M S Park, X Chen, S V Mariappan, C T McMurray. Mol Cell 1999
32
Orientation-dependent and sequence-specific expansions of CTG/CAG trinucleotide repeats in Saccharomyces cerevisiae.
J J Miret, L Pessoa-Brandão, R S Lahue. Proc Natl Acad Sci U S A 1998
J J Miret, L Pessoa-Brandão, R S Lahue. Proc Natl Acad Sci U S A 1998
32
Expansions of CAG repeat tracts are frequent in a yeast mutant defective in Okazaki fragment maturation.
J K Schweitzer, D M Livingston. Hum Mol Genet 1998
J K Schweitzer, D M Livingston. Hum Mol Genet 1998
32
Mutations in yeast replication proteins that increase CAG/CTG expansions also increase repeat fragility.
Julie L Callahan, Kenneth J Andrews, Virginia A Zakian, Catherine H Freudenreich. Mol Cell Biol 2003
Julie L Callahan, Kenneth J Andrews, Virginia A Zakian, Catherine H Freudenreich. Mol Cell Biol 2003
31
CGG repeats associated with DNA instability and chromosome fragility form structures that block DNA synthesis in vitro.
K Usdin, K J Woodford. Nucleic Acids Res 1995
K Usdin, K J Woodford. Nucleic Acids Res 1995
28
Recombination-induced CAG trinucleotide repeat expansions in yeast involve the MRE11-RAD50-XRS2 complex.
G F Richard, G M Goellner, C T McMurray, J E Haber. EMBO J 2000
G F Richard, G M Goellner, C T McMurray, J E Haber. EMBO J 2000
28
Orientation dependence of trinucleotide CAG repeat instability in Saccharomyces cerevisiae.
D J Maurer, B L O'Callaghan, D M Livingston. Mol Cell Biol 1996
D J Maurer, B L O'Callaghan, D M Livingston. Mol Cell Biol 1996
26
Cloning, characterization and properties of plasmids containing CGG triplet repeats from the FMR-1 gene.
M Shimizu, R Gellibolian, B A Oostra, R D Wells. J Mol Biol 1996
M Shimizu, R Gellibolian, B A Oostra, R D Wells. J Mol Biol 1996
28
Stability of the human fragile X (CGG)(n) triplet repeat array in Saccharomyces cerevisiae deficient in aspects of DNA metabolism.
P J White, R H Borts, M C Hirst. Mol Cell Biol 1999
P J White, R H Borts, M C Hirst. Mol Cell Biol 1999
26
Trinucleotide expansion in haploid germ cells by gap repair.
I V Kovtun, C T McMurray. Nat Genet 2001
I V Kovtun, C T McMurray. Nat Genet 2001
26
The effect of DNA replication mutations on CAG tract stability in yeast.
J K Schweitzer, D M Livingston. Genetics 1999
J K Schweitzer, D M Livingston. Genetics 1999
32
Replication stalling at Friedreich's ataxia (GAA)n repeats in vivo.
Maria M Krasilnikova, Sergei M Mirkin. Mol Cell Biol 2004
Maria M Krasilnikova, Sergei M Mirkin. Mol Cell Biol 2004
25
Replisome stalling and stabilization at CGG repeats, which are responsible for chromosomal fragility.
Irina Voineagu, Christine F Surka, Alexander A Shishkin, Maria M Krasilnikova, Sergei M Mirkin. Nat Struct Mol Biol 2009
Irina Voineagu, Christine F Surka, Alexander A Shishkin, Maria M Krasilnikova, Sergei M Mirkin. Nat Struct Mol Biol 2009
25
Triplet repeats form secondary structures that escape DNA repair in yeast.
H Moore, P W Greenwell, C P Liu, N Arnheim, T D Petes. Proc Natl Acad Sci U S A 1999
H Moore, P W Greenwell, C P Liu, N Arnheim, T D Petes. Proc Natl Acad Sci U S A 1999
23
Double-strand break repair can lead to high frequencies of deletions within short CAG/CTG trinucleotide repeats.
G F Richard, B Dujon, J E Haber. Mol Gen Genet 1999
G F Richard, B Dujon, J E Haber. Mol Gen Genet 1999
23
Sticky DNA: self-association properties of long GAA.TTC repeats in R.R.Y triplex structures from Friedreich's ataxia.
N Sakamoto, P D Chastain, P Parniewski, K Ohshima, M Pandolfo, J D Griffith, R D Wells. Mol Cell 1999
N Sakamoto, P D Chastain, P Parniewski, K Ohshima, M Pandolfo, J D Griffith, R D Wells. Mol Cell 1999
23
Cloned human FMR1 trinucleotide repeats exhibit a length- and orientation-dependent instability suggestive of in vivo lagging strand secondary structure.
M C Hirst, P J White. Nucleic Acids Res 1998
M C Hirst, P J White. Nucleic Acids Res 1998
35
22
Mismatch repair in Escherichia coli enhances instability of (CTG)n triplet repeats from human hereditary diseases.
A Jaworski, W A Rosche, R Gellibolian, S Kang, M Shimizu, R P Bowater, R R Sinden, R D Wells. Proc Natl Acad Sci U S A 1995
A Jaworski, W A Rosche, R Gellibolian, S Kang, M Shimizu, R P Bowater, R R Sinden, R D Wells. Proc Natl Acad Sci U S A 1995
22
Nucleotide excision repair affects the stability of long transcribed (CTG*CAG) tracts in an orientation-dependent manner in Escherichia coli.
P Parniewski, A Bacolla, A Jaworski, R D Wells. Nucleic Acids Res 1999
P Parniewski, A Bacolla, A Jaworski, R D Wells. Nucleic Acids Res 1999
22
Repeat instability: mechanisms of dynamic mutations.
Christopher E Pearson, Kerrie Nichol Edamura, John D Cleary. Nat Rev Genet 2005
Christopher E Pearson, Kerrie Nichol Edamura, John D Cleary. Nat Rev Genet 2005
22
Genetic instabilities in (CTG.CAG) repeats occur by recombination.
J P Jakupciak, R D Wells. J Biol Chem 1999
J P Jakupciak, R D Wells. J Biol Chem 1999
20
Pausing of DNA synthesis in vitro at specific loci in CTG and CGG triplet repeats from human hereditary disease genes.
S Kang, K Ohshima, M Shimizu, S Amirhaeri, R D Wells. J Biol Chem 1995
S Kang, K Ohshima, M Shimizu, S Amirhaeri, R D Wells. J Biol Chem 1995
20
SRS2 and SGS1 prevent chromosomal breaks and stabilize triplet repeats by restraining recombination.
Alix Kerrest, Ranjith P Anand, Rangapriya Sundararajan, Rodrigo Bermejo, Giordano Liberi, Bernard Dujon, Catherine H Freudenreich, Guy-Franck Richard. Nat Struct Mol Biol 2009
Alix Kerrest, Ranjith P Anand, Rangapriya Sundararajan, Rodrigo Bermejo, Giordano Liberi, Bernard Dujon, Catherine H Freudenreich, Guy-Franck Richard. Nat Struct Mol Biol 2009
20
Double-strand break repair pathways protect against CAG/CTG repeat expansions, contractions and repeat-mediated chromosomal fragility in Saccharomyces cerevisiae.
Rangapriya Sundararajan, Lionel Gellon, Rachel M Zunder, Catherine H Freudenreich. Genetics 2010
Rangapriya Sundararajan, Lionel Gellon, Rachel M Zunder, Catherine H Freudenreich. Genetics 2010
26
Hairpin formation during DNA synthesis primer realignment in vitro in triplet repeat sequences from human hereditary disease genes.
K Ohshima, R D Wells. J Biol Chem 1997
K Ohshima, R D Wells. J Biol Chem 1997
19
Expansion and deletion of triplet repeat sequences in Escherichia coli occur on the leading strand of DNA replication.
R R Iyer, R D Wells. J Biol Chem 1999
R R Iyer, R D Wells. J Biol Chem 1999
26
DNA secondary structure: a common and causative factor for expansion in human disease.
C T McMurray. Proc Natl Acad Sci U S A 1999
C T McMurray. Proc Natl Acad Sci U S A 1999
19
Inhibition of flap endonuclease 1 by flap secondary structure and relevance to repeat sequence expansion.
L A Henricksen, S Tom, Y Liu, R A Bambara. J Biol Chem 2000
L A Henricksen, S Tom, Y Liu, R A Bambara. J Biol Chem 2000
19
Msh2 deficiency prevents in vivo somatic instability of the CAG repeat in Huntington disease transgenic mice.
K Manley, T L Shirley, L Flaherty, A Messer. Nat Genet 1999
K Manley, T L Shirley, L Flaherty, A Messer. Nat Genet 1999
19
Expanded CAG repeats activate the DNA damage checkpoint pathway.
Mayurika Lahiri, Tanya L Gustafson, Elizabeth R Majors, Catherine H Freudenreich. Mol Cell 2004
Mayurika Lahiri, Tanya L Gustafson, Elizabeth R Majors, Catherine H Freudenreich. Mol Cell 2004
27
Chromosome fragility at GAA tracts in yeast depends on repeat orientation and requires mismatch repair.
Hyun-Min Kim, Vidhya Narayanan, Piotr A Mieczkowski, Thomas D Petes, Maria M Krasilnikova, Sergei M Mirkin, Kirill S Lobachev. EMBO J 2008
Hyun-Min Kim, Vidhya Narayanan, Piotr A Mieczkowski, Thomas D Petes, Maria M Krasilnikova, Sergei M Mirkin, Kirill S Lobachev. EMBO J 2008
19
Destabilization of yeast micro- and minisatellite DNA sequences by mutations affecting a nuclease involved in Okazaki fragment processing (rad27) and DNA polymerase delta (pol3-t).
R J Kokoska, L Stefanovic, H T Tran, M A Resnick, D A Gordenin, T D Petes. Mol Cell Biol 1998
R J Kokoska, L Stefanovic, H T Tran, M A Resnick, D A Gordenin, T D Petes. Mol Cell Biol 1998
17
Destabilization of CAG trinucleotide repeat tracts by mismatch repair mutations in yeast.
J K Schweitzer, D M Livingston. Hum Mol Genet 1997
J K Schweitzer, D M Livingston. Hum Mol Genet 1997
17
Small slipped register genetic instabilities in Escherichia coli in triplet repeat sequences associated with hereditary neurological diseases.
R D Wells, P Parniewski, A Pluciennik, A Bacolla, R Gellibolian, A Jaworski. J Biol Chem 1998
R D Wells, P Parniewski, A Pluciennik, A Bacolla, R Gellibolian, A Jaworski. J Biol Chem 1998
21
GAA instability in Friedreich's Ataxia shares a common, DNA-directed and intraallelic mechanism with other trinucleotide diseases.
A M Gacy, G M Goellner, C Spiro, X Chen, G Gupta, E M Bradbury, R B Dyer, M J Mikesell, J Z Yao, A J Johnson,[...]. Mol Cell 1998
A M Gacy, G M Goellner, C Spiro, X Chen, G Gupta, E M Bradbury, R B Dyer, M J Mikesell, J Z Yao, A J Johnson,[...]. Mol Cell 1998
17
Inhibitory effects of expanded GAA.TTC triplet repeats from intron I of the Friedreich ataxia gene on transcription and replication in vivo.
K Ohshima, L Montermini, R D Wells, M Pandolfo. J Biol Chem 1998
K Ohshima, L Montermini, R D Wells, M Pandolfo. J Biol Chem 1998
17
Fourteen and counting: unraveling trinucleotide repeat diseases.
C J Cummings, H Y Zoghbi. Hum Mol Genet 2000
C J Cummings, H Y Zoghbi. Hum Mol Genet 2000
17
Gene conversion (recombination) mediates expansions of CTG[middle dot]CAG repeats.
J P Jakupciak, R D Wells. J Biol Chem 2000
J P Jakupciak, R D Wells. J Biol Chem 2000
21
DNA structures, repeat expansions and human hereditary disorders.
Sergei M Mirkin. Curr Opin Struct Biol 2006
Sergei M Mirkin. Curr Opin Struct Biol 2006
17
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.