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    1. Cell Biology

    Identification of ERAD-dependent degrons for the endoplasmic reticulum lumen

    Rachel Sharninghausen, Jiwon Hwang ... Ryan D Baldridge
    A generalizable approach to identify sequence features driving degradation from the endoplasmic reticulum (ER) provides useful tools for enabling ER-localized protein degradation.
    1. Genetics and Genomics
    2. Evolutionary Biology

    The recombination landscape of introgression in yeast

    Enrique J Schwarzkopf, Nathan Brandt, Caiti Smukowski Heil
    Revised
    Reviewed Preprint v2
    Updated
    • Inadequate
    1. Genetics and Genomics
    2. Evolutionary Biology

    Single-cell eQTL mapping in yeast reveals a tradeoff between growth and reproduction

    James Boocock, Noah Alexander ... Leonid Kruglyak
    Revised
    Reviewed Preprint v2
    Updated
    • Important
    • Convincing
    1. Genetics and Genomics
    2. Evolutionary Biology

    Refining the resolution of the yeast genotype-phenotype map using single-cell RNA-sequencing

    Arnaud N’Guessan, Wen Yuan Tong ... Alex N Nguyen Ba
    Revised
    Reviewed Preprint v2
    Updated
    • Useful
    • Convincing
    1. Cancer Biology

    Mutant mice lacking alternatively spliced p53 isoforms unveil Ackr4 as a male-specific prognostic factor in Myc-driven B-cell lymphomas

    Anne Fajac, Iva Simeonova ... Franck Toledo
    The male-specific tumor-suppressive effects of minor p53 isoforms were correlated with higher Ackr4 expression levels, which have implications for sex-specific cancer prognosis in humans.
    1. Cell Biology
    2. Genetics and Genomics

    Impact of Maximal Overexpression of a Non-toxic Protein on Yeast Cell Physiology

    Yuri Fujita, Shotaro Namba, Hisao Moriya
    Not revised
    Reviewed Preprint v1
    • Important
    • Convincing
    1. Chromosomes and Gene Expression
    2. Computational and Systems Biology

    Real-time transcriptomic profiling in distinct experimental conditions

    Tamer Butto, Stefan Pastore ... Susanne Gerber
    Not revised
    Reviewed Preprint v1
    • Useful
    • Compelling
    • Incomplete
    1. Biochemistry and Chemical Biology
    2. Computational and Systems Biology

    Enrichment of rare codons at 5' ends of genes is a spandrel caused by evolutionary sequence turnover and does not improve translation

    Richard Sejour, Janet Leatherwood ... Bruce Futcher
    The 5' ends of genes are slightly enriched for rare codons largely because the ends turnover in evolution and gather rare codons, and these rare codons do not improve translation.
    Version of Record
    Research Article
    • Important
    • Convincing
    • Incomplete