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  • ...uery=GO:0000085 {{#if: G2 phase of mitotic cell cycle |G2 phase of mitotic cell cycle|GO:0000085 }}]</span><br> ...ugh mitotic cell cycle |positive regulation of progression through mitotic cell cycle|GO:0045931 }}]</span><br>
    11 KB (1,519 words) - 11:17, 11 May 2009
  • ...bits the synthesis of DNA. Its actions are specific for the S phase of the cell cycle. It also has antiviral and immunosuppressant properties."<ref>{{MeSH}}</ref
    467 bytes (61 words) - 02:25, 7 October 2013
  • ...ic]] cell divides its [[nucleus]]. Mitosis is the shortest phase of the [[cell cycle]].
    1 KB (202 words) - 23:44, 12 February 2010
  • {{r|Cell cycle}}
    938 bytes (148 words) - 06:34, 22 September 2008
  • {{r|Cell cycle}}
    1,012 bytes (160 words) - 05:53, 16 November 2010
  • {{r|Cell cycle}}
    1 KB (187 words) - 18:07, 13 January 2009
  • *{{CZ:Ref:Chenn 2002 Regulation of cerebral cortical size by control of cell cycle exit in neural precursors}}
    1 KB (176 words) - 04:19, 3 January 2010
  • *{{CZ:Ref:Chenn 2002 Regulation of cerebral cortical size by control of cell cycle exit in neural precursors}}
    5 KB (545 words) - 04:54, 21 March 2024
  • ...ery ancient evolutionary adaptation. CENP-A plays an important role in the cell cycle by associating with other proteins like [[CENP-B]], [[CENP-C]] and an array [5] Chadwick B P & Willard H F (2002) Cell cycle-dependant localization of macroH2A in chromatin of the inactive X Chromosom
    10 KB (1,473 words) - 20:28, 28 January 2008
  • ...h degree cell structures and their importance in regulating the organism’s cell cycle and developmental functions. Some of the important ideas are that the tryp
    16 KB (2,364 words) - 00:56, 7 February 2010
  • ...recursor neuron]]. They are arranged radially according to the number of [[cell cycle]]s of the precursor: while the older [[mitosis|postmitotic]] neurons remain
    3 KB (407 words) - 10:22, 6 April 2010
  • ...adult mammalian cells", Nature 385, page 813 (27 February 1997)</ref> The cell cycle of the donor cells was stopped in the G0 stage. The "oocytes were recovere
    9 KB (1,412 words) - 18:31, 11 February 2010
  • *{{CZ:Ref:Chenn 2002 Regulation of cerebral cortical size by control of cell cycle exit in neural precursors}}
    8 KB (969 words) - 10:27, 1 April 2024
  • ...''T. vaginalis'' is the antibiotic, [[metronidazole]], which disrupts the cell cycle in ''T. vaginalis'' and prevents ''T. vaginalis'' from forming new DNA. Thi
    16 KB (2,181 words) - 02:17, 17 October 2013
  • ...bits the synthesis of DNA. Its actions are specific for the S phase of the cell cycle. It also has antiviral and immunosuppressant properties."<ref>{{MeSH|cytara
    10 KB (1,356 words) - 06:07, 5 April 2024
  • ...[[cyclin dependent kinase]], central molecules in the regulation of the [[cell cycle]]
    21 KB (2,676 words) - 09:02, 1 March 2024
  • ...adiation both damage [[DNA]] in the [[cell nucleus]] which kills rapidly [[Cell cycle|dividing cells]] by triggering a self-destruct mechanism called [[apoptosis
    18 KB (2,556 words) - 22:45, 9 June 2010
  • ...hbya gossypii]]'', cotton pathogen, subject of genetics studies (polarity, cell cycle)
    15 KB (2,115 words) - 06:56, 9 June 2009
  • ...ation by microRNPs oscillates between repression and activation during the cell cycle.</ref>
    32 KB (4,834 words) - 23:03, 25 October 2013
  • *{{CZ:Ref:Chenn 2002 Regulation of cerebral cortical size by control of cell cycle exit in neural precursors}}
    8 KB (979 words) - 15:11, 1 May 2010
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