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5 results for "CpG"

Z_5_07 Verified Molecular Biology

Z_5_07 — Epigenome Mapping: Charting the Chemical Modifications of DNA and Chromatin

Epigenome mapping — the systematic, genome-wide identification and quantification of epigenetic modifications (chemical marks on DNA and histone proteins that regulate gene expression without changing the underlying DNA

epigenome DNA methylation bisulfite sequencing ATAC-seq ChIP-seq histone modification
Z_2_21 Verified Molecular Biology

Z_2_21 — Epigenetic Aging Clocks

Epigenetic aging clocks are mathematical models that use patterns of DNA methylation at specific CpG dinucleotides across the genome to estimate an individual's biological age with remarkable accuracy — typically within

epigenetic clock DNA methylation biological age Horvath clock GrimAge aging
ZB_2_19 Verified Ecology & Biology

ZB_2_19 — Epigenetics & Chromatin Modification

Epigenetics — literally "above genetics" — encompasses heritable changes in gene expression that occur without alterations to the DNA sequence itself. The term was coined by Conrad Hal Waddington in 1942 to describe how

epigenetics DNA methylation histone modification chromatin remodeling gene expression transgenerational inheritance
L_4_06 Verified Genetics & Origins

L_4_06 — Epigenetics and Transgenerational Inheritance

Epigenetics — the study of heritable changes in gene expression that occur without alterations to the DNA sequence itself — has transformed modern biology by revealing a layer of regulatory information "above" the genome

epigenetics DNA methylation histone modification chromatin transgenerational inheritance imprinting
L_5_05 Verified Genetics & Origins

L_5_05 — Epigenetic Clocks: Measuring Biological Age

Epigenetic clocks are mathematical models that estimate biological age — the physiological age of an organism's cells and tissues — based on DNA methylation patterns at specific CpG sites (regions where a cytosine nucleo

epigenetic clock DNA methylation biological age Horvath clock Hannum clock GrimAge