14‐3‐3 proteins: Regulators of cardiac excitation–contraction coupling and stress responses
Abstract figure legend 14‐3‐3 protein interactions in cardiac regulation. Schematic representation of 14‐3‐3 binding partners in excitation–contraction coupling, transcriptional regulation/development and stress response pathways. Asterisks indicate targets where the exact 14‐3‐3 binding site is unknown.
Heather C. Spooner, Rose E. Dixon
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Written in chromatin: The enduring legacy of C. David Allis. [PDF]
Strahl BD, Wang GG.
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Abstract figure legend Sprint interval training (SIT) is a popular time‐efficient type of endurance training. Healthy young men performed nine SIT sessions (4–6 × 30 s all‐out cycling sprints) over 3 weeks while being supplemented with antioxidants (high doses of vitamins C and E) or placebo. Muscle biopsies taken before and after the first SIT session
Victoria L. Wyckelsma +12 more
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Epigenetic Regulation and Molecular Mechanisms in Cardiovascular Diseases: A Review of Recent Advances and Therapeutic Implications. [PDF]
Młynarska E +7 more
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SETD3 regulates Bcl-6 expression and Tfh differentiation in SLE CD4<sup>+</sup> T cells by manipulating histone methylation and acetylation. [PDF]
Ding S, Xue S, Rao Y, Hu LX, Liao JY.
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KAT3B acts as an oncogene in PCa by mediating the succinylation of c-Myc and promoting its stability. [PDF]
Nie W, Cha S, Fu Q.
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Histone Acetyltransferases Gcn5 and Esa1 Regulate Occupancy of RSC to Maintain Nucleosome-Depleted Regions and Promote RSC Recruitment to Coding Regions Genome-Wide in <i>Saccharomyces cerevisiae</i>. [PDF]
Biernat E +5 more
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Deciphering the role of Hat1 in spermatogenesis: Chromatin organization and beyond. [PDF]
Peng S +6 more
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