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  1. 1.   Dynamic Emergence of Mismatch Repair Deficiency Facilitates Rapid Evolution of Ceftazidime-Avibactam Resistance in Pseudomonas aeruginosa Acute Infection
  2. Khil, Pavel P; Dulanto Chiang, Augusto; Ho, Jonathan; Youn, Jung-Ho; Lemon, Jamie K; Gea-Banacloche, Juan; Frank, Karen M; Parta,Mark; Bonomo, Robert A; Dekker, John P
  3. mBio. 2019, Sep; 10(5): pii: e01822-19.
  1. 2.   DNA repair: the culprit for tumor-initiating cell survival?
  2. Mathews, L. A.; Cabarcas, S. M.; Farrar, W. L.
  3. Cancer and Metastasis Reviews. 2011, Jun; 30(2): 185-197.
  1. 3.   Probing Cellular Processes with Oligo-Mediated Recombination and Using the Knowledge Gained to Optimize Recombineering
  2. Sawitzke, J. A.; Costantino, N.; Li, X. T.; Thomason, L. C.; Bubunenko, M.; Court, C.; Court, D. L.
  3. Journal of Molecular Biology. 2011, Mar; 407(1): 45-59.
  1. 4.   Multicopy plasmid modification with phage lambda red recombineering
  2. Thomason, L. C.; Costantino, N.; Shaw, D. V.; Court, D. L.
  3. Plasmid. 2007, Sep; 58(2): 148-158.
  1. 5.   Tumor suppressor gene identification using retroviral insertional mutagenesis in Blm-deficient mice
  2. Suzuki, T.; Minehata, K.; Akagi, K.; Jenkins, N. A.; Copeland, N. G.
  3. Embo Journal. 2006, Jul; 25(14): 3422-3431.
  1. 6.   Phase I trial of temozolomide plus O-6-benzylguanine for patients with recurrent or progressive malignant glioma
  2. Quinn, J. A.; Desjardins, A.; Weingart, J.; Brem, H.; Dolan, M. E.; Delaney, S. M.; Vredenburgh, J.; Rich, J.; Friedman, A. H.; Reardon, D. A.; Sampson, J. H.; Pegg, A. E.; Moschel, R. C.; Birch, R.; McLendon, R. E.; Provenzale, J. M.; Gururangan, S.; Dancey, J. E.; Maxwell, J.; Tourt-Uhlig, S.; Herndon, J. E.; Bigner, D. D.; Friedman, H. S.
  3. Journal of Clinical Oncology. 2005, OCT 1; 23(28): 7178-7187.
  1. 7.   Human immunodeficiency virus type 1-induced macrophage gene expression includes the p21 gene, a target for viral regulation
  2. Vazquez, N.; Greenwell-Wild, T.; Marinos, N. J.; Swaim, W. D.; Nares, S.; Ott, D. E.; Schubert, U.; Henklein, P.; Orenstein, J. M.; Sporn, M. B.; Wahl, S. M.
  3. Journal of Virology. 2005 79(7): 4479-4491.
  1. 8.   Functional characterization of the candidate tumor suppressor gene NPRL2/G21 located in 3p21.3C
  2. Li, F.; Wang, F.; Haraldson, K.; Protopopov, A.; Duh, F. M.; Geil, L.; Kuzmin, I.; Minna, J. D.; Stanbridge, E.; Braga, E.; Kashuba, V. I.; Klein, G.; Lerman, M. I.; Zabarovsky, E. R.
  3. Cancer Research. 2004, SEP 15; 64(18): 6438-6443.
  1. 9.   Brain tumor cell lines resistant to O-6-benzylguanine/1,3-bis(2-chloroethyl)-1-nitrosourea chemotherapy have O-6 -alkylguanine-DNA alkyltransferase mutations
  2. Bacolod, M. D.; Johnson, S. P.; Pegg, A. E.; Dolan, M. E.; Moschel, R. C.; Bullock, N. S.; Fang, Q. M.; Colvin, O. M.; Modrich, P.; Bigner, D. D.; Friedman, H. S.
  3. Molecular Cancer Therapeutics. 2004, SEP; 3(9): 1127-1135.
  1. 10.   Analysis of a Ty1-less variant of Saccharomyces paradoxus: the gain and loss of Ty1 elements
  2. Moore, S. P.; Liti, G.; Stefanisko, K. M.; Nyswaner, K. M.; Chang, C.; Louis, E. J.; Garfinkel, D.
  3. Yeast. 2004 21(8): 649-660.
  1. 11.   Enhanced levels of lambda red-mediated recombinants in mismatch repair mutants
  2. Costantino, N.; Court, D. L.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2003 100(26): 15748-15753.
  1. 12.   The roles of REV3 and RAD57 in double-strand-break-repair- induced mutagenesis of Saccharomyces cerevisiae
  2. Rattray, A. J.; Shafer, B. K.; McGill, C. B.; Strathern, J. N.
  3. Genetics. 2002 162(3): 1063-1077.
  1. 13.   Fidelity of mitotic double-strand-break repair in Saccharomyces cerevisiae: A role for SAE2/COM1
  2. Rattray, A. J.; McGill, C. B.; Shafer, B. K.; Strathern, J. N.
  3. Genetics. 2001 158(1): 109-122.
  1. 14.   Characterization of MLH1 and MSH2 DNA mismatch repair proteins in cell lines of the NCI anticancer drug screen
  2. Taverna, P.; Liu, L.; Hanson, A. J.; Monks, A.; Gerson, S. L.
  3. Cancer Chemotherapy and Pharmacology. 2000 46(6): 507-516.
  1. 15.   The Saccharomyces cerevisiae DNA recombination and repair functions of the RAD52 epistasis group inhibit Tyl transposition
  2. Rattray, A. J.; Shafer, B. K.; Garfinkel, D. J.
  3. Genetics. 2000 154(2): 543-556.
  1. 16.   hMSH5: A human MutS homologue that forms a novel heterodimer with hMSH4 and is expressed during spermatogenesis
  2. Bocher, T.; Barusevicius, A.; Snowden, T.; Rasio, D.; Guerrette, S.; Robbins, D.; Schmidt, C.; Burczak, J.; Croce, C. M.; Copeland, T.; Kovatich, A. J.; Fishel, R.
  3. Cancer Research. 1999 59(4): 816-822.
  1. 17.   Microsatellite instability is infrequent in azoxymethane-induced rat intestinal tumors: An assessment by capillary electrophoresis
  2. Walchle, C.; Diwan, B. A.; Shiao, Y. H.; Calvert, R. J.
  3. Toxicology and Applied Pharmacology. 1999 157(1): 9-15.
  1. 18.   Organoids and metastatic orthotopic mouse model for mismatch repair-deficient colorectal cancer
  2. Song,Yurong; Kerr, Travis D; Sanders,Chelsea; Dai,Lisheng; Baxter,Shaneen; Somerville,Brandon; Baugher,Ryan; Mellott,Stephanie; Young,Todd; Lawhorn,Heidi; Plona, Teri M; Xu,Bingfang; Wei, Lei; Hu, Qiang; Liu, Song; Hutson, Alan; Karim,Baktiar; Burkett, Sandra; Difilippantonio,Simone; Pinto,Ligia; Gebert, Johannes; Kloor, Matthias; Lipkin, Steven M; Sei, Shizuko; Shoemaker, Robert H
  3. Frontiers in Oncology. 2023 13: 1223915.
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