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SRX1605415: Deep mutational scan of Ub - Student Lane 1
1 ILLUMINA (Illumina HiSeq 2500) run: 35.3M spots, 883.6M bases, 473.7Mb downloads

Design: PCR amplicons of 18 bp barcodes corrisponding to each Ub allele were sequenced and counted to determine allele fitness in a given chemeical perturbaiton
Submitted by: UCSF
Study: Determination of Ubiquitin Fitness Landscapes Under Different Chemical Stresses in a Classroom Setting
show Abstracthide Abstract
Ubiquitination is an essential post-translational regulatory process that can control protein stability, localization, and activity. Ubiquitin is essential for eukaryotic life and is highly conserved, varying in only 3 amino acid positions between yeast and humans. However, recent deep mutational scanning studies in S. cerevisiae indicate that ubiquitin is highly tolerant to single amino acid mutations. To resolve this paradox, we hypothesized that the set of tolerated substitutions would be reduced when the cultures are not grown in rich media conditions and that chemically induced physiologic perturbations might unmask constraints on the ubiquitin sequence. To test this hypothesis, a class of first year UCSF graduate students employed a deep mutational scanning procedure to determine the fitness landscape of a library of all possible single amino acid mutations of ubiquitin in the presence of one of five small molecule perturbations: MG132, Dithiothreitol (DTT), Hydroxyurea (HU), Caffeine, and DMSO. Our data reveal that the number of tolerated substitutions is greatly reduced by DTT, HU, or Caffeine, and that these perturbations uncover “shared sensitized positions” localized to areas around the hydrophobic patch and to the C-terminus. We also show perturbation specific effects including the sensitization of His68 in HU and tolerance to mutation at Lys63 in DTT. Taken together, our data suggest that chemical stress reduces buffering effects in the ubiquitin proteasome system, revealing previously hidden fitness defects. By expanding the set of chemical perturbations assayed, potentially by other classroom-based experiences, we will be able to further address the apparent dichotomy between the extreme sequence conservation and the experimentally observed mutational tolerance of ubiquitin. Finally, this study demonstrates the realized potential of a project lab-based interdisciplinary graduate curriculum.
Sample: PUBS 2014 Ubiquitin Deep Mutational Scan
SAMN04485883 • SRS1315114 • All experiments • All runs
Library:
Name: Ub_lane1
Instrument: Illumina HiSeq 2500
Strategy: AMPLICON
Source: SYNTHETIC
Selection: PCR
Layout: SINGLE
Runs: 1 run, 35.3M spots, 883.6M bases, 473.7Mb
Run# of Spots# of BasesSizePublished
SRR319482835,345,724883.6M473.7Mb2016-03-05

ID:
2295476

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