SCIENTIFIC REPORT 2004 - Sylvester Comprehensive Cancer Center
SCIENTIFIC REPORT 2004 - Sylvester Comprehensive Cancer Center
SCIENTIFIC REPORT 2004 - Sylvester Comprehensive Cancer Center
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P U B L I C A T I O N S 2 0 0 2 - 2 0 0 3<br />
McGregor, BA, Antoni, MH, Boyers, A, Alferi,<br />
SM, Blomberg, BB , and Carver, CS. Cognitive<br />
behavioral stress management increases benefit<br />
finding and immune function among women<br />
with early stage breast cancer. Journal of Psychosomatic<br />
Research 54:1-8, 2003.<br />
Tanguy, Le Gac N and Boehmer, PE. Activation<br />
of the herpes simplex virus type-1 origin-binding<br />
protein (UL9) by heat shock proteins. Journal of<br />
Biological Chemistry 277:5660-6, 2002.<br />
Nimonkar, AV and Boehmer, PE. In vitro strand<br />
exchange promoted by the herpes simplex virus<br />
type-1 single strand DNA-binding protein<br />
(ICP8) and DNA helicase-primase. Journal of<br />
Biological Chemistry 277:15182-9, 2002.<br />
Villani, G, Tanguy Le Gac, N, Wasungu, L,<br />
Burnouf, D, Fuchs, RP, and Boehmer, PE. Effect<br />
of manganese on in vitro replication of damaged<br />
DNA catalyzed by the herpes simplex virus type-<br />
1 DNA polymerase. Nucleic Acids Research<br />
30:3323-32, 2002.<br />
Boehmer, PE and Nimonkar, AV. Herpes virus<br />
replication. IUBMB Life 55:13-22, 2003.<br />
Nimonkar, AV and Boehmer PE. The herpes<br />
simplex virus type-1 single-strand DNA-binding<br />
protein (ICP8) promotes strand invasion. Journal<br />
of Biological Chemistry 278:9678-82, 2003.<br />
Nimonkar, AV and Boehmer, PE. On the mechanism<br />
of strand assimilation by the herpes simplex<br />
virus type-1 single-strand DNA-binding protein<br />
(ICP8). Nucleic Acids Research 31:5275-81, 2003.<br />
Nimonkar, AV and Boehmer PE. Reconstitution<br />
of recombination-dependent DNA synthesis in<br />
herpes simplex virus 1. Proceedings of the National<br />
Academy of Sciences USA 100:10201-6, 2003.<br />
Boehmer, PE and Villani, G. Herpes simplex virus<br />
type-1: a model for genome transactions.<br />
Progress in Nucleic Acid Research and Molecular<br />
Biology 75:139-171, 2003.<br />
Anderson, KC, Boise, LH, Louie, R, and Waxman,<br />
S. Arsenic trioxide in multiple myeloma: rationale<br />
and future directions. <strong>Cancer</strong> Journal 8:12-<br />
25, 2002.<br />
Bahlis, NJ, McCafferty-Grad, J, Jordan-McMurry,<br />
I, Neil, J, Reis, I, Kharfan-Dabaja, M, Eckman, J,<br />
Goodman, M, Fernandez, HF, Boise, LH, and<br />
Lee, KP. Feasibility and correlates of arsenic trioxide<br />
combined with ascorbic acid-mediated depletion<br />
of intracellular glutathione for the treatment<br />
of relapsed/refractory multiple myeloma. Clinical<br />
<strong>Cancer</strong> Research 8:3658-68, 2002.<br />
Ghosh, SK, Wood, C, Boise, LH, Mian, AM,<br />
Deyev, VV, Feuer, G, Toomey, NL, Shank, NC,<br />
Cabral, L, Barber, GN, and Harrington, WJ, Jr.<br />
Potentiation of TRAIL-induced apoptosis in primary<br />
effusion lymphoma through azidothymidinemediated<br />
inhibition of NF-kappa B. Blood<br />
101:2321-7, 2003.<br />
McCafferty Grad, J, Bahlis, N, Aguilar, T, Kratt,<br />
N, Lee, KP, and Boise, LH. Arsenic trioxide utilizes<br />
caspase dependent and caspase independent<br />
death pathways in multiple myeloma cells.<br />
Molecular <strong>Cancer</strong> Therapeutics 2:1155-64, 2003.<br />
Beaupre, DM, McCafferty Grad, J, Bahlis, NJ,<br />
Boise, LH, and Lichtenheld, MG. Farnesyl transferase<br />
inhibitors sensitize to death receptor signals<br />
and induce apoptosis in multiple myeloma cells.<br />
Leukemia & Lymphoma 44:2123-34, 2003.<br />
Yang, ES, Maiorino, CA, Roos, BA, Knight, SR,<br />
and Burnstein, KL . Vitamin D-mediated growth<br />
inhibition of an androgen-ablated LNCaP cell<br />
line model of human prostate cancer. Molecular<br />
and Cellular Endocrinology 186:69-79, 2002.<br />
Whitlatch, LW, Young, MV, Schwartz, GG,<br />
Flanagan, JN, Burnstein, KL , Lokeshwar, BL,<br />
Rich, ES, Holick, MF, and Chen, TC. 25-<br />
Hydroxyvitamin D-1alpha-hydroxylase activity is<br />
diminished in human prostate cancer cells and is<br />
enhanced by gene transfer. Journal of Steroid Biochemistry<br />
and Molecular Biology 81:135-40, 2002.<br />
UM/<strong>Sylvester</strong> <strong>Comprehensive</strong> <strong>Cancer</strong> <strong>Center</strong> Scientific Report <strong>2004</strong><br />
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