Biomedical Engineering Reference
In-Depth Information
enzyme catalytic polypeptide-like 3G (APOBEC3G) and its family members. The Journal
of Biological Chemistry 282, 33632-33640.
Humphreys, D.T., Westman, B.J., Martin, D.I., and Preiss, T. (2005). MicroRNAs control
translation initiation by inhibiting eukaryotic initiation factor 4E/cap and poly(A) tail
function. Proceedings of the National Academy of Sciences of the United States of
America 102, 16961-16966.
Hutvagner, G., and Zamore, P.D. (2002). AmicroRNA in a multiple-turnover RNAi enzyme
complex. Science 297, 2056-2060.
Hwang, H.W., and Mendell, J.T. (2006). MicroRNAs in cell proliferation, cell death, and
tumorigenesis. British Journal of Cancer 94, 776-780.
Iorio, M.V., Ferracin, M., Liu, C.G., Veronese, A., Spizzo, R., Sabbioni, S., Magri, E.,
Pedriali, M., Fabbri, M., Campiglio, M., et al. (2005). MicroRNA gene expression dereg-
ulation in human breast cancer. Cancer Research 65, 7065-7070.
Jacob, F., and Monod, J. (1961). Genetic regulatory mechanisms in the synthesis of proteins.
Journal of Molecular Biology 3, 318-356.
Johnson, C.D., Esquela-Kerscher, A., Stefani, G., Byrom, M., Kelnar, K., Ovcharenko, D.,
Wilson, M., Wang, X., Shelton, J., Shingara, J., et al. (2007). The let-7 microRNA
represses cell proliferation pathways in human cells. Cancer Research 67, 7713-7722.
Johnson, S.M., Grosshans, H., Shingara, J., Byrom, M., Jarvis, R., Cheng, A., Labourier, E.,
Reinert, K.L., Brown, D., and Slack, F.J. (2005). RAS is regulated by the let-7 microRNA
family. Cell 120, 635-647.
Johnston, R.J., Jr., Chang, S., Etchberger, J.F., Ortiz, C.O., and Hobert, O. (2005). Micro-
RNAs acting in a double-negative feedback loop to control a neuronal cell fate decision.
Proceedings of the National Academy of Sciences of the United States of America 102,
12449-12454.
Jorgenson, H.F., Chen, Z.F., Merkenschlager, M., and Fisher, A.G. (2009). Is REST required
for ES cell pluripotency? Nature DOI 10.1038/Nature07783.
Kanellopoulou, C., Muljo, S.A., Kung, A.L., Ganesan, S., Drapkin, R., Jenuwein, T., Livingston,
D.M., and Rajewsky, K. (2005). Dicer-deficient mouse embryonic stem cells are defective in
differentiation and centromeric silencing. Genes & Development 19, 489-501.
Karube, Y., Tanaka, H., Osada, H., Tomida, S., Tatematsu, Y., Yanagisawa, K., Yatabe, Y.,
Takamizawa, J., Miyoshi, S., Mitsudomi, T., et al. (2005). Reduced expression of Dicer
associated with poor prognosis in lung cancer patients. Cancer Science 96, 111-115.
Kawahara, Y., Zinshteyn, B., Sethupathy, P., Iizasa, H., Hatzigeorgiou, A.G., and Nishikura,
K. (2007). Redirection of silencing targets by adenosine-to-inosine editing of miRNAs.
Science 315, 1137-1140.
Kedde, M., Strasser, M.J., Boldajipour, B., Vrielink, J.A., Slanchev, K., le Sage, C., Nagel, R.,
Voorhoeve, P.M., van Duijse, J., Orom, U.A., et al. (2007). RNA-binding protein Dnd1
inhibits microRNA access to target mRNA. Cell 131, 1273-1286.
Keith, B., and Simon, M.C. (2007). Hypoxia-inducible factors, stem cells, and cancer. Cell
129, 465-472.
Kim, J., Inoue, K., Ishii, J., Vanti, W.B., Voronov, S.V., Murchison, E., Hannon, G., and
Abeliovich, A. (2007). A MicroRNA feedback circuit in midbrain dopamine neurons.
Science 317, 1220-1224.
Kiriakidou, M., Tan, G.S., Lamprinaki, S., De Planell-Saguer, M., Nelson, P.T., and Mourelatos,
Z. (2007). An mRNA m7G cap binding-like motif within human Ago2 represses translation.
Cell 129, 1141-1151.
Kloosterman, W.P., and Plasterk, R.H. (2006). The diverse functions of microRNAs in
animal development and disease. Developmental Cell 11, 441-450.
Koralov, S.B., Muljo, S.A., Galler, G.R., Krek, A., Chakraborty, T., Kanellopoulou, C.,
Jensen, K., Cobb, B.S., Merkenschlager, M., Rajewsky, N., et al. (2008). Dicer ablation
affects antibody diversity and cell survival in the B lymphocyte lineage. Cell 132,
860-874.
Search WWH ::




Custom Search