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    1. Evolutionary Biology
    2. Immunology and Inflammation

    In-silico analysis of myeloid cells across the animal kingdom reveals neutrophil evolution by colony-stimulating factors

    Damilola Pinheiro et al.
    In-silico modeling of gene and protein emergence reveals how colony-stimulating factors contributed to the evolution and functional adaptions observed in mammalian neutrophils.
    1. Genetics and Genomics
    2. Neuroscience

    Circadian Rhythms: Shedding new light on circadian clocks

    Maud Demarque, Ueli Schibler
    Insight
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    1. Structural Biology and Molecular Biophysics

    Structure-based nuclear import mechanism of histones H3 and H4 mediated by Kap123

    Sojin An et al.
    Structural and biochemical studies of Kap123 revealed the mechanisms by which Kap123 recognizes H3- and H4-NLSs through two lysine-binding pockets and by which evolutionarily conserved diacetylation of H4-NLS facilitates Kap123-H3-NLS mediated nuclear translocation.
    1. Biochemistry and Chemical Biology

    Serine ADP-ribosylation reversal by the hydrolase ARH3

    Pietro Fontana et al.
    ARH3 is an enzyme that hydrolyses serine ADP-ribosylation, a recently uncovered post-translational protein modification.
    1. Biochemistry and Chemical Biology

    Unexpected sequences and structures of mtDNA required for efficient transcription from the first heavy-strand promoter

    Akira Uchida et al.
    Hypervariable regions of mtDNA contribute to transcriptional regulation by serving as sites for TFAM binding and looping.
    1. Developmental Biology

    Deficient spermiogenesis in mice lacking Rlim

    Feng Wang et al.
    Genetic analyses in mice identifies Rlim in the spermatogenic cell lineage as a regulator of cytoplasmic reduction during spermiogenesis.
    1. Chromosomes and Gene Expression
    2. Genetics and Genomics

    Translational control of one-carbon metabolism underpins ribosomal protein phenotypes in cell division and longevity

    Nairita Maitra et al.
    Extensive molecular profiling shows how loss of highly similar, paralogous ribosomal proteins lead to distinct phenotypic outputs, through translational control of specific mRNAs.
    1. Cell Biology

    The proteasome biogenesis regulator Rpn4 cooperates with the unfolded protein response to promote ER stress resistance

    Rolf M Schmidt et al.
    Endoplasmic reticulum stress in yeast activates not only the UPR but also Rpn4, promoting the clearance of misfolded proteins from the cytosol as part of a modular cross-compartment stress response.
    1. Chromosomes and Gene Expression

    Dual control of NAD+ synthesis by purine metabolites in yeast

    Benoît Pinson et al.
    Two distinct processes drive coordinated synthesis of purine and pyridine (NAD+) nucleotides in response to AICAR derivatives and ATP.
    1. Cell Biology
    2. Chromosomes and Gene Expression

    Aneuploidy as a cause of impaired chromatin silencing and mating-type specification in budding yeast

    Wahid A Mulla et al.
    Genetic analyses reveal that purely quantitative changes in the relative copy number of chromosomes can be sufficient to disrupt the epigenetic mechanisms that define the cells' differentiated state.