Difference between revisions of "YPL068C"

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(Methanol Sensitivity)
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[[file:YPL068C_Methanol_sensitivity.png]]
 
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===Stressing with Hydroxyurea===
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[[UW-Stout/Hydroxyurea|Hydroxyurea Protocol]]
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-The wild type strain had only a small difference in doubling time when stressed with Hydroxyurea;YPL068C showed about a 30 minute difference in doubling time compared to the wild type strain, indicating that this gene most likely plays some role in DNA replication.
  
 
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Revision as of 08:27, 2 May 2019

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Systematic name YPL068C
Gene name
Aliases
Feature type ORF, Uncharacterized
Coordinates Chr XVI:425096..424215
Primary SGDID S000005989


Description of YPL068C: Protein of unknown function; green fluorescent protein (GFP)-fusion protein localizes to the nucleus and is induced in response to the DNA-damaging agent MMS[1][2]




Community Commentary

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Ultraviolet Sensitivity

YPL068C UV light.jpeg BY4735(wild) uv light.jpg

YPL068C is more sensitive than BY4735(wild) given that there is less colonizes present when under the same stress.


This gene is part of the UW-Stout Orphan Gene Project. Learn more here.

Growth Curve

ypl068 growth.png

In a BY4735 background, knocking out YPL068C seems to have a moderate effect on growth rate in log-phase. In this assay, the BY4735 strain's doubling time was 124 minutes, while the YPL068C knock-out strain's doubling time was 209 minutes.


image008.png

Heat Shock

HeatShockforYP.png

Methanol Sensitivity

The wild type had a doubling time of 150 min, the YPL068c had a doubling time of 200 min. The doubling time increased which means this strain is sensitive to methanol.

[1]

YPL068C Methanol sensitivity.png

Stressing with Hydroxyurea

Hydroxyurea Protocol -The wild type strain had only a small difference in doubling time when stressed with Hydroxyurea;YPL068C showed about a 30 minute difference in doubling time compared to the wild type strain, indicating that this gene most likely plays some role in DNA replication.



References

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  1. Huh WK, et al. (2003) Global analysis of protein localization in budding yeast. Nature 425(6959):686-91 SGD PMID 14562095
  2. Lee MW, et al. (2007) Global protein expression profiling of budding yeast in response to DNA damage. Yeast 24(3):145-54 SGD PMID 17351896

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