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  1. 1.   Escherichia coli grown in inexpensive conical flat-bottom polypropylene tubes produce a high level of pUC vector
  2. Marquez,Mayra; Chen,Qian; Cachaco,Silvia; Yang,Jun; Sui,Hongyan; Imamichi,Tomozumi
  3. Journal of Microbiological Methods. 2024, Jul 14; 224: 106990.
  1. 2.   Human Immunodeficiency Virus Type 1 Gag Polyprotein Modulates Membrane Physical Properties like a Surfactant: Potential Implications for Virus Assembly
  2. Denieva, Zaret G; Kuzmin, Peter I; Galimzyanov, Timur R; Datta,Siddhartha; Rein,Alan; Batishchev, Oleg V
  3. ACS Infectious Diseases. 2024, Jun 25;
  1. 3.   Embedding of HIV Egress within Cortical F-Actin
  2. Aggarwal, Anupriya; Stella, Alberto Ospina; Henry, Catherine C.; Narayan, Kedar; Turville, Stuart G.
  3. Pathogens. 2022, Jan; 11(1):
  1. 4.   Proline Metabolism in Tumor Growth and Metastatic Progression
  2. D'Aniello, Cristina; Patriarca, Eduardo J.; Phang,James; Minchiotti, Gabriella
  3. Frontiers in oncology. 2020, MAY 15; 10: 776.
  1. 5.   A PLPPV sequence in the p8 region of Gag provides late domain function for mouse mammary tumor virus
  2. Coren,Lori; Nagashima,Kunio; Ott, David E
  3. Virology. 2019, Sep; 535: 272-278.
  1. 6.   Cre-mediated recombination can induce apoptosis in vivo by activating the p53 DNA damage-induced pathway
  2. Zhu, J. J.; Nguyen, M. T.; Nakamura, E.; Yang, J. M.; Mackem, S.
  3. Genesis. 2012, Feb; 50(2): 102-111.
  1. 7.   FGF8 is essential for formation of the ductal system in the male reproductive tract
  2. Kitagaki, J.; Ueda, Y.; Chi, X.; Sharma, N.; Elder, C. M.; Truffer, E.; Costantini, F.; Lewandoski, M.; Perantoni, A. O.
  3. Development. 2011, Dec; 138(24): 5369-5378.
  1. 8.   Islet1-mediated activation of the beta-catenin pathway is necessary for hindlimb initiation in mice
  2. Kawakami, Y.; Marti, M.; Kawakami, H.; Itou, J.; Quach, T.; Johnson, A.; Sahara, S.; O'Leary, D. D. M.; Nakagawa, Y.; Lewandoski, M.; Pfaff, S.; Evans, S. M.; Belmonte, J. C. I.
  3. Development. 2011, Oct; 138(20): 4465-4473.
  1. 9.   The Role of ITCH Protein in Human T-cell Leukemia Virus Type 1 Release
  2. Dorjbal, B.; Derse, D.; Lloyd, P.; Soheilian, F.; Nagashima, K.; Heidecker, G.
  3. Journal of Biological Chemistry. 2011, Sep; 286(36): 31092-31104.
  1. 11.   A Dominant-Negative c-jun Mutant Inhibits Lung Carcinogenesis in Mice
  2. Tichelaar, J. W.; Yan, Y.; Tan, Q.; Wang, Y. A.; Estensen, R. D.; Young, M. R.; Colburn, N. H.; Yin, H. L.; Goodin, C.; Anderson, M. W.; You, M.
  3. Cancer Prevention Research. 2010, Sep; 3(9): 1148-1156.
  1. 12.   The Role of Lipids in Retrovirus Replication
  2. Waheed, A. A.; Freed, E. O.
  3. Viruses-Basel. 2010, May; 2(5): 1146-1180.
  1. 13.   Midline signaling regulates kidney positioning but not nephrogenesis through Shh
  2. Tripathi, P.; Guo, Q. S.; Wang, Y. Q.; Coussens, M.; Liapis, H.; Jain, S.; Kuehn, M. R.; Capecchi, M. R.; Chen, F.
  3. Developmental Biology. 2010, Apr; 340(2): 518-527.
  1. 14.   FIV Gag: Virus assembly and host-cell interactions
  2. Luttge, B. G.; Freed, E. O.
  3. Veterinary Immunology and Immunopathology. 2010, Mar; 134(1-2): 3-13.
  1. 15.   Limb Development Takes a Measured Step Toward Systems Analysis
  2. Mackem, S.; Lewandoski, M.
  3. Science Signaling. 2009, May; 2(71): 4.
  1. 16.   A Mutation Associated with CMT2A Neuropathy Causes Defects in Fzo1 GTP Hydrolysis, Ubiquitylation, and Protein Turnover
  2. Amiott, E. A.; Cohen, M. M.; Saint-Georges, Y.; Weissman, A. M.; Shaw, J. M.
  3. Molecular Biology of the Cell. 2009 20(23): 5026-5035.
  1. 17.   Functional role of Alix in HIV-1 replication
  2. Fujii, K.; Munshi, U. M.; Ablan, S. D.; Demirov, D. G.; Soheilian, F.; Nagashima, K.; Stephen, A. G.; Fisher, R. J.; Freed, E. O.
  3. Virology. 2009 391(2): 284-292.
  1. 18.   Limb Development: The Rise and Fall of Retinoic Acid
  2. Lewandoski, M.; Mackem, S.
  3. Current Biology. 2009 19(14): R558-R561.
  1. 19.   LIM homeobox transcription factors integrate signaling events that control three-dimensional limb patterning and growth
  2. Tzchori, I.; Day, T. F.; Carolan, P. J.; Zhao, Y.; Wassif, C. A.; Li, L.; Lewandoski, M.; Gorivodsky, M.; Love, P. E.; Porter, F. D.; Westphal, H.; Yang, Y.
  3. Development. 2009 136(8): 1375-1385.
  1. 20.   The role of WWP1-Gag interaction and gag ubiquitination in assembly and release of human T-Cell leukemia virus type 1
  2. Heidecker, G.; Lloyd, P. A.; Soheilian, F.; Nagashima, K.; Derse, D.
  3. Journal of Virology. 2007, Sep; 81(18): 9769-9777.
  1. 21.   Cited1 and cited2 are differentially expressed in the developing kidney but are not required for nephrogenesis
  2. Boyle, S.; Shioda, T.; Perantoni, A. O.; de Caestecker, M.
  3. Developmental Dynamics. 2007, Aug; 236(8): 2321-2330.
  1. 22.   ELR+-CXC chemokines and their receptors in early metanephric development
  2. Levashova, Z. B.; Sharma, N.; Timofeeva, O. A.; Dome, J. S.; Perantoni, A. O.
  3. Journal of the American Society of Nephrology. 2007, Aug; 18(8): 2359-2370.
  1. 23.   FGFR1 function at the earliest stages of mouse limb development plays an indispensable role in subsequent autopod morphogenesis
  2. Li, C. L.; Xu, X. L.; Nelson, D. K.; Williams, T.; Kuehn, M. R.; Deng, C. X.
  3. Development. 2005, NOV; 132(21): 4755-4764.
  1. 24.   Inactivation of FGF8 in early mesoderm reveals an essential role in kidney development
  2. Perantoni, A. O.; Timofeeva, O.; Naillat, F.; Richman, C.; Pajni-Underwood, S.; Wilson, C.; Vainio, S.; Dove, L. F.; Lewandoski, M.
  3. Development. 2005, SEP; 132(17): 3859-3871.
  1. 25.   Conditional inactivation of Fgfr1 in mouse defines its role in limb bud establishment, outgrowth and digit patterning
  2. Sun, X.; Lewandoski, M.; Deng, C. X.; Harfe, B.; Verheyden, J.
  3. Developmental Biology. 2005, JUL 15; 283(2): 590, Abstract 76-590, Abstract 76.
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