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Proteintech
FIGURE: 1 / 3
Histone methylation plays crucial roles in the development, gene regulation, and maintenance of stem cell pluripotency in mammals. Recent work shows that histone methylation is associated with aging but the underlying mechanism remains unclear. However, recent work has explored its role with daf-2 animals with the H3K9me1/2 methyltransferase G9a inhibitor and its effect on stress resistance.
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Protein Aliases: H3 histone family, member A; histone 1, H3a; Histone H3.1; Histone H3/a; Histone H3/b; Histone H3/c; Histone H3/d; Histone H3/f; Histone H3/h; Histone H3/i; Histone H3/j; Histone H3/k; Histone H3/l
Gene Aliases: H3.1-221; H3.1-291; H3.1-I; H3/A; H3a; H3C1; H3C10; H3C11; H3C12; H3C2; H3C3; H3C4; H3C6; H3C7; H3C8; H3FA; H3FB; H3FC HIST1H3C; H3FD; H3FF; H3FH; H3FI; H3FJ; H3FK; H3FL; H3g; H3h; H3i; HIST1H3A; HIST1H3B; HIST1H3D; HIST1H3E; HIST1H3F; HIST1H3G; HIST1H3H; HIST1H3I; HIST1H3J
UniProt ID: (Human) P68431, (Mouse) P68433
Entrez Gene ID: (Human) 8350, (Mouse) 360198
Molecular Function: histone
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