Y04C-02-5PK CellASIC ONIX plate for haploid yeast cells (4 chamber, 3.5-5 micron)

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      Replacement Information
      Catalogue NumberY04C-02-5PK
      Trade Name
      • CellASIC ONIX
      DescriptionCellASIC ONIX plate for haploid yeast cells (4 chamber, 3.5-5 micron)
      Product Information
      Device Configuration4 chamber
      ApplicationThe Y04 plates for Haploid Yeast Cells utilize a microfabricated silicone ceiling with a height similar to yeast cells to restrict their growth in a single focal plane & maintaining x,y position over time.
      Biological Information
      Physicochemical Information
      Dimensions85.48 mm Wide x 127.76 mm Long x 14.35 mm Height
      Cell Size Range3.5–5.0 µm
      Materials Information
      Device Material
      • PDMS
      • PMMA
      • Glass
      • Polycarbonate
      Toxicological Information
      Safety Information according to GHS
      Safety Information
      Product Usage Statements
      Storage and Shipping Information
      Packaging Information
      Material Size5
      Transport Information
      Supplemental Information


      CellASIC ONIX plate for haploid yeast cells (4 chamber, 3.5-5 micron) Ficha datos de seguridad (MSDS)


      Ficha técnica de seguridad del material (MSDS) 

      Referencias bibliográficas

      Visión general referenciasPub Med ID
      A Mammalian-like DNA damage response of fission yeast to nucleoside analogs.
      Sabatinos SA, Mastro TL, Green MD, Forsburg SL
      Genetics, 193 (1), 143-157 (Jan 2013)  2013

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      Bacterial Virulence Proteins as tools to rewire kinase pathways in Yeast and immune cells.
      Wei P, Wong WW, Park JS, Corcoran EE, Peisajovich SG, Onuffer JJ, Weiss A, Lim WA
      Nature 488, 384-388 (16 August 2012)  2012

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      Continued DNA synthesis in replication checkpoint mutants leads to fork collapse.
      Sabatinos SA, Green MD, Forsburg SL
      Molecular and Cellular Biology, 32 (24), 4986-4997 (Dec 2012)  2012

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      23045396 23045396
      Commitment to a cellular transition precedes genome-wide trasncriptional change.
      Doncic A, Falleur-Fettig M, Skotheim J
      Molecular Cell Vol. 43, Issue 4, 515-527 (Aug 2011)  2011

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      Distinct interactions select and maintain a specific cell fate.
      Doncic A, Falleur-Fettig M, Skotheim J
      Molecular Cell Vol. 43, Issue 4, 528-539 (Aug 2011)  2011

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      21855793 21855793
      Optical sensors for measuring dynamic changes of cytosolic metabolite levels in yeast.
      Clara Bermejo, Farzad Haerizadeh, Hitomi Takanaga, Diane Chermak, Wolf Frommer
      Nature Protocols 6, 1806-1817 (2011)  2011

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      Atg8 regulates vacuolar membrane dynamics in a lipidation-independent manner in Pichia pastoris.
      Naoki Tamura, Masahide Oku, Yasuyoshi Sakai
      Journal of Cell Science 123, 4107-4116 (Dec 2010)  2010

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      Cytosolic pH is a second messenger for glucose and regulates the PKA pathway through V-ATPase.
      Reinhard Dechant, Matteo Binda, Sung Sik Lee, Serge Pelet, Joris Winderickx and Matthias Peter
      The EMBO Journal 29, 2515-2526 (2010)  2010

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      20581803 20581803
      Oscillations in CDC14 release and sequestration reveal a circuit underlying mitotic exit.
      Romilde Manzoni, Francesca Montani, Clara Visintin, Fabrice Caudron, Andres Ciliberto, and Rosella Visintin
      JCB vol. 190 no. 2, 209-222 (July 2010)  2010

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      Dynamic analysis of cytosolic glucose and ATP levels in yeast using optical sensors.
      Bermejo C, Haerizadeh F, Takanaga H, Chermak D, Frommer WB
      Biochem J 432(2), 399-406 (Dec 2010)  2010

      Mostrar resumen
      20854260 20854260


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