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Nature Genetics|December 2, 2000
Telomere maintenance by recombination in human cellsM A Dunham, A A Neumann, C L Fasching, et al.Experimental Cell Research|April 2, 1998
Telomere length dynamics in telomerase-positive immortal human cell populationsT M Bryan, A Englezou, M A Dunham, et al.Molecular and Cellular Endocrinology|November 29, 1996
Molecular cloning and characterization of mouse stanniocalcin cDNAA C Chang, M A Dunham, K J Jeffrey, et al.Genomics|April 16, 1998
Human stanniocalcin (STC): genomic structure, chromosomal localization, and the presence of CAG trinucleotide repeatsA C Chang, K J Jeffrey, Y Tokutake, et al.Nature Medicine|November 14, 1997
Evidence for an alternative mechanism for maintaining telomere length in human tumors and tumor-derived cell linesT M Bryan, A Englezou, L Dalla-Pozza, et al.Experimental Cell Research|April 3, 2001
Effects of simian virus 40 T-antigens on normal human mammary epithelial cells reveal evidence for spontaneous alterations in addition to loss of p16(INK4a) expressionL I Huschtscha, A A Neumann, J R Noble, et al.Molecular and Cellular Biology|May 22, 2001
Coexistence of alternative lengthening of telomeres and telomerase in hTERT-transfected GM847 cellsK Perrem, L M Colgin, A A Neumann, et al.Oncogene|September 19, 1996
Association of extended in vitro proliferative potential with loss of p16INK4 expressionJ R Noble, E M Rogan, A A Neumann, et al.Cancer Research|September 15, 1999
Telomerase-negative immortalized human cells contain a novel type of promyelocytic leukemia (PML) bodyT R Yeager, A A Neumann, A Englezou, et al.Annals of the New York Academy of Sciences|February 3, 1999
Genes involved in the control of cellular proliferative potentialR R ReddelPageof 11