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  1. 1.   The microRNA-processing enzyme Dicer is dispensable for somite segmentation but essential for limb bud positioning
  2. Zhang, Z.; O'Rourke, J. R.; McManus, M. T.; Lewandoski, M.; Harfe, B. D.; Sun, X.
  3. Developmental Biology. 2011, Mar; 351(2): 254-265.
  1. 2.   Loss of the Transcriptional Repressor PAG-3/Gfi-1 Results in Enhanced Neurosecretion that is Dependent on the Dense-Core Vesicle Membrane Protein IDA-1/IA-2
  2. Cai, T.; Hirai, H.; Fukushige, T.; Yu, P.; Zhang, G. F.; Notkins, A. L.; Krause, M.
  3. Plos Genetics. 2009 5(4): 1-13.
  1. 3.   Network modeling links breast cancer susceptibility and centrosome dysfunction
  2. Pujana, M. A.; Han, J. D. J.; Starita, L. M.; Stevens, K. N.; Tewari, M.; Ahn, J. S.; Rennert, G.; Moreno, V.; Kirchhoff, T.; Gold, B.; Assmann, V.; ElShamy, W. M.; Rual, J. F.; Levine, D.; Rozek, L. S.; Gelman, R. S.; Gunsalus, K. C.; Greenberg, R. A.; Sobhian, B.; Bertin, N.; Venkatesan, K.; Ayivi-Guedehoussou, N.; Sole, X.; Hernandez, P.; Lazaro, C.; Nathanson, K. L.; Weber, B. L.; Cusick, M. E.; Hill, D. E.; Offit, K.; Livingston, D. M.; Gruber, S. B.; Parvin, J. D.; Vidal, M.
  3. Nature Genetics. 2007, Nov; 39(11): 1338-1349.
  1. 4.   Loss of centrosome integrity induces p38-p53-p21dependent G1-S arrest
  2. Mikule, K.; Delaval, B.; Kaldis, P.; Jurcyzk, A.; Hergert, P.; Doxsey, S.
  3. Nature Cell Biology. 2007, Feb; 9(2): 160-U49.
  1. 5.   KSR regulation of the Raf-MEK-ERK cascade
  2. Ritt, D. A.; Daar, I. O.; Morrison, D. K.
  3. Regulators and Effectors of Small Gtpases: Ras Family. 2006; 407 : 224-237.
  1. 6.   siRNA, miRNA and HIV: promises and challenges
  2. Yeung, M. L.; Bennasser, Y.; Le, S. Y.; Jeang, K. T.
  3. Cell Research. 2005, NOV-DEC; 15(11-12): 935-946.
  1. 7.   ORFeome cloning and systems biology: Standardized mass production of the parts from the parts-list
  2. Brasch, M. A.; Hartley, J. L.; Vidal, M.
  3. Genome Research. 2004, OCT; 14(10B): 2001-2009.
  1. 8.   Academia-industry collaboration: An integral element for building "omic" resources
  2. Hill, D. E.; Brasch, M. A.; del Campo, A. A.; Doucette-Stamm, L.; Garrels, J. I.; Glaven, J.; Hartley, J. L.; Hudson, J. R.; Moore, T.; Vidal, M.
  3. Genome Research. 2004, OCT; 14(10B): 2010-2014.
  1. 9.   Protein phosphatase 2A positively regulates ras signaling by dephosphorylating KSR1 and Raf-1 on critical 14-3-3 binding sites
  2. Ory, S.; Zhou, M.; Conrads, T. P.; Veenstra, T. D.; Morrison, D. K.
  3. Current Biology. 2003 13(16): 1356-1364.
  1. 10.   Kinase suppressor of Ras (KSR) is a scaffold which facilitates mitogen-activated protein kinase activation in vivo
  2. Nguyen, A.; Burack, W. R.; Stock, J. L.; Kortum, R.; Chaika, O. V.; Afkarian, M.; Muller, W. J.; Murphy, K. M.; Morrison, D. K.; Lewis, R. E.; McNeish, J.; Shaw, A. S.
  3. Molecular and Cellular Biology. 2002 22(9): 3035-3045.
  1. 11.   A genetic screen for modifiers of a kinase suppressor of ras- dependent rough eye phenotype in drosophila
  2. Therrien, M.; Morrison, D. K.; Wong, A. M.; Rubin, G. M.
  3. Genetics. 2000 156(3): 1231-1242.
  1. 12.   Identification of B-KSR1, a novel brain-specific isoform of KSR1 that functions in neuronal signaling
  2. Muller, J.; Cacace, A. M.; Lyons, W. E.; McGill, C. B.; Morrison, D. K.
  3. Molecular and Cellular Biology. 2000 20(15): 5529-5539.
  1. 13.   RNA-mediated interference of a cdc25 homolog in Caenorhabditis elegans results in defects in the embryonic cortical membrane, meiosis, and mitosis
  2. Ashcroft, N. R.; Srayko, M.; Kosinski, M. E.; Mains, P. E.; Golden, A.
  3. Developmental Biology. 1999 206(1): 15-32.
  1. 14.   A Caenorhabditis elegans wee1 homolog is expressed in a temporally and spatially restricted pattern during embryonic development
  2. Wilson, M. A.; Hoch, R. V.; Ashcroft, N. R.; Kosinski, M. E.; Golden, A.
  3. Biochimica et Biophysica Acta - Gene Structure & Expression. 1999 1445(1): 99-109.
  1. 15.   Identification of constitutive and Ras-inducible phosphorylation sites of KSR: Implications for 14-3-3 binding, mitogen-activated protein kinase binding, and KSR overexpression
  2. Cacace, A. M.; Michaud, N. R.; Therrien, M.; Mathes, K.; Copeland, T.; Rubin, G. M.; Morrison, D. K.
  3. Molecular and Cellular Biology. 1999 19(1): 229-240.
  1. 16.   Netrin-3, a mouse homolog of human NTN2L, is highly expressed in sensory ganglia and shows differential binding to netrin receptors
  2. Wang, H.; Copeland, N. G.; Gilbert, D. J.; Jenkins, N. A.; Tessier-Lavigne, M.
  3. Journal of Neuroscience. 1999 19(12): 4938-4947.
  1. 17.   The Four Cdc25 Genes From the Nematode Caenorhabditis Elegans
  2. Ashcroft, N. R.; Kosinski, M. E.; Wickramasinghe, D.; Donovan, P. J.; Golden, A.
  3. Gene. 1998 214(1-2): 59-66.
  1. 20.   Paired-Related Murine Homeobox Gene Expressed in the Developing Sclerotome, Kidney, and Nervous System
  2. Mansouri, A.; Yokota, Y.; Wehr, R.; Copeland, N. G.; Jenkins, N. A.; Gruss, P.
  3. Developmental Dynamics. 1997 210(1): 53-65.
  1. 21.   Identification and Mapping of Casp7, a Cysteine Protease Resembling Cpp32-Beta, Interleukin-1-Beta Converting Enzyme, and Ced-3
  2. Juan, T. S. C.; McNiece, I. K.; Argento, J. M.; Jenkins, N. A.; Gilbert, D. J.; Copeland, N. G.; Fletcher, F. A.
  3. Genomics. 1997 40(1): 86-93.
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