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  • ...Chs4 protein stimulates the trypsin-sensitive activity of chitin synthase 3 through an apparent protein-protein interaction. Microbiology 146 ( Pt 2):3
    3 KB (382 words) - 14:05, 12 September 2012
  • ...ystems in yeast growth and response to stress conditions. Mol Microbiol 39(3):533-41 {{SGDpaper|S000061564}} PMID 11169096</ref><ref name='S000129829'>G ...hways: one dependent on cAMP and the other on heme. Free Radic Biol Med 32(3):278-88 {{SGDpaper|S000069137}} PMID 11827753</ref> <ref name = 'CAset9246-
    5 KB (749 words) - 17:33, 22 January 2019
  • ...ity to G1 arrest induced by Kluyveromyces lactis zymocin. Mol Microbiol 44(3):865-75 {{SGDpaper|S000069896}} PMID 11994165</ref><ref name='S000074040'>F
    3 KB (413 words) - 07:45, 23 January 2012
  • ...rane protein import through the nuclear pore complex. Science 333(6038):90-3 {{SGDpaper|S000146077}} PMID 21659568</ref><ref name='S000056415'>Rout MP,
    4 KB (578 words) - 14:05, 11 June 2012
  • ...o well under the stress but tests 2-4 were very happy. The growth Models 1-3 are what the yeasts growth model is not stressed. ===Effect of 3% [[UW Stout/DMSO FA19|DMSO]] on YBL081W===
    8 KB (1,223 words) - 09:43, 18 December 2019
  • ...s of the cell wall receptor for the HM-1 killer toxin that inhibits beta-1,3-glucan synthesis. Mol Gen Genet 254(2):139-47 {{SGDpaper|S000055166}} PMID
    2 KB (300 words) - 07:45, 23 January 2012
  • ...nding of the PH-domain protein Boi1 to acidic phospholipids. BMC Cell Biol 3():16
    2 KB (247 words) - 07:45, 23 January 2012
  • [[File:Cycloheximide 3.png]] ...ts 2-4 succeeded on cycloheximide and Test 1 was effected. Growth Models 1-3 are the Yeast strands not under distress.
    7 KB (1,135 words) - 09:41, 18 December 2019
  • ...ammalian ribosomal protein TATA-less promoter. Biochem J 285 ( Pt 3)():721-3
    2 KB (317 words) - 07:45, 23 January 2012
  • ...and anaerobic NAD+ metabolism in Saccharomyces cerevisiae. FEBS Lett 517(1-3):97-102
    2 KB (296 words) - 07:45, 23 January 2012
  • ...inase signalling pathway of Saccharomyces cerevisiae. Cell Mol Biol Res 40(3):229-39 {{SGDpaper|S000041609}} PMID 7874200</ref><ref name='S000049517'>Wa
    3 KB (401 words) - 07:45, 23 January 2012
  • ...to apoptosis-like cell death on exposure to NaCl stress. Mol Biol Cell 15(3):1436-44
    2 KB (337 words) - 07:45, 23 January 2012
  • ...accharomyces cerevisiae by gene disruption and Northern analysis. Yeast 15(3):219-53
    2 KB (232 words) - 07:45, 23 January 2012
  • ...accharomyces cerevisiae by gene disruption and Northern analysis. Yeast 15(3):219-53 ...t Strain YBL113C (A9) we can see that the growth curve stayed in the 0.1-0.3 range throughout the data collected in 24 hours. This tells us it was more
    8 KB (1,202 words) - 20:31, 11 May 2022
  • ...in nuclear division and mitotic chromosome transmission. Mol Cell Biol 16(3):1017-26 {{SGDpaper|S000055896}} PMID 8622646</ref><ref name='S000055640'>W
    3 KB (387 words) - 07:45, 23 January 2012
  • ...non-allelic gene sets encode identical H3 and H4 proteins. J Mol Biol 169(3):663-90 {{SGDpaper|S000057267}} PMID 6355483</ref><ref name='S000072594'>Th
    4 KB (492 words) - 07:45, 23 January 2012
  • ...en yeast and E. coli inorganic pyrophosphatases. Biochim Biophys Acta 1038(3):338-45 {{SGDpaper|S000056766}} PMID 2160278</ref><ref name='S000122266'>Sa
    2 KB (313 words) - 07:45, 23 January 2012
  • ...directs localization of protein synthesis during mitosis. Nat Cell Biol 11(3):350-6
    3 KB (340 words) - 07:45, 23 January 2012
  • ...'S000050095'>Shaw JA, et al. (1991) The function of chitin synthases 2 and 3 in the Saccharomyces cerevisiae cell cycle. J Cell Biol 114(1):111-23 {{SGD
    3 KB (344 words) - 07:45, 23 January 2012
  • ...(2000) Analysis of yeast protein kinases using protein chips. Nat Genet 26(3):283-9
    2 KB (286 words) - 07:45, 23 January 2012

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