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Items: 1 to 20 of 97

1.

Lac operator repeats generate a traceable fragile site in mammalian cells.

Jacome A, Fernandez-Capetillo O.

EMBO Rep. 2011 Sep 30;12(10):1032-8. doi: 10.1038/embor.2011.158.

2.

Inhibition of topoisomerase I prevents chromosome breakage at common fragile sites.

Arlt MF, Glover TW.

DNA Repair (Amst). 2010 Jun 4;9(6):678-89. doi: 10.1016/j.dnarep.2010.03.005. Epub 2010 Apr 21.

3.

Origin of the asymmetrical contact between lac repressor and lac operator DNA.

Rastinejad F, Artz P, Lu P.

J Mol Biol. 1993 Oct 5;233(3):389-99.

PMID:
8411152
4.

Tagging the genome of the murine leukemia retrovirus SL3-3 by a bacterial lac operator sequence.

Jørgensen P, Mikkelsen T, Pedersen K, Pedersen FS, Kjeldgaard NO.

Gene. 1991 Dec 30;109(2):243-7.

PMID:
1722473
5.

Direct cloning of DNA sequences from the common fragile site region at chromosome band 3p14.2.

Rassool FV, Le Beau MM, Shen ML, Neilly ME, Espinosa R 3rd, Ong ST, Boldog F, Drabkin H, McCarroll R, McKeithan TW.

Genomics. 1996 Jul 1;35(1):109-17.

PMID:
8661111
6.
7.

FRA18C: a new aphidicolin-inducible fragile site on chromosome 18q22, possibly associated with in vivo chromosome breakage.

Debacker K, Winnepenninckx B, Ben-Porat N, FitzPatrick D, Van Luijk R, Scheers S, Kerem B, Frank Kooy R.

J Med Genet. 2007 May;44(5):347-52.

8.

Chromosomal expression and localization of aphidicolin-induced fragile sites in the standard karyotype of river buffalo (Bubalus bubalis).

Nicodemo D, Coppola G, Pauciullo A, Cosenza G, Ramunno L, Ciotola F, Peretti V, Di Meo GP, Iannuzzi L, Rubes J, Di Berardino D.

Cytogenet Genome Res. 2008;120(1-2):178-82. doi: 10.1159/000118760. Epub 2008 Apr 30.

PMID:
18467845
9.

Tumor hypoxia: Impact on gene amplification in glioblastoma.

Fischer U, Radermacher J, Mayer J, Mehraein Y, Meese E.

Int J Oncol. 2008 Sep;33(3):509-15.

PMID:
18695880
10.

Dimeric lac repressors exhibit phase-dependent co-operativity.

Müller J, Barker A, Oehler S, Müller-Hill B.

J Mol Biol. 1998 Dec 11;284(4):851-7.

PMID:
9837708
11.

The lac repressor displays facilitated diffusion in living cells.

Hammar P, Leroy P, Mahmutovic A, Marklund EG, Berg OG, Elf J.

Science. 2012 Jun 22;336(6088):1595-8. doi: 10.1126/science.1221648.

12.

Repression of lac promoter as a function of distance, phase and quality of an auxiliary lac operator.

Müller J, Oehler S, Müller-Hill B.

J Mol Biol. 1996 Mar 22;257(1):21-9.

PMID:
8632456
13.
14.

Replication of a common fragile site, FRA3B, occurs late in S phase and is delayed further upon induction: implications for the mechanism of fragile site induction.

Le Beau MM, Rassool FV, Neilly ME, Espinosa R 3rd, Glover TW, Smith DI, McKeithan TW.

Hum Mol Genet. 1998 Apr;7(4):755-61.

15.

Lac repressor-operator interaction: N-terminal peptide backbone 1H and 15N chemical shifts upon complex formation with DNA.

Artz PG, Valentine KG, Opella SJ, Lu P.

J Mol Recognit. 1996 Jan-Feb;9(1):13-22.

PMID:
8723315
16.

Global screening and extended nomenclature for 230 aphidicolin-inducible fragile sites, including 61 yet unreported ones.

Mrasek K, Schoder C, Teichmann AC, Behr K, Franze B, Wilhelm K, Blaurock N, Claussen U, Liehr T, Weise A.

Int J Oncol. 2010 Apr;36(4):929-40.

PMID:
20198338
17.

How Lac repressor finds lac operator in vitro.

Fickert R, Müller-Hill B.

J Mol Biol. 1992 Jul 5;226(1):59-68.

PMID:
1535665
18.
19.

ATR regulates fragile site stability.

Casper AM, Nghiem P, Arlt MF, Glover TW.

Cell. 2002 Dec 13;111(6):779-89.

20.
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