Epigenetic Silencing

Epigenetic silencing is the reversible regulation of gene expression that prevents a gene from producing RNA or protein without changing its DNA sequence. In genetics, it commonly occurs when DNA methylation and repressive histone modifications promote chromatin compaction, limiting access of transcription machinery to regulatory regions. This process helps establish cell-specific patterns of gene activity during development, maintain genome stability, and control transposable elements. Abnormal silencing can inactivate tumor-suppressor genes or disrupt normal development, making it important for studying disease mechanisms, inheritance of gene-expression states, and potential epigenetic therapies.

Epigenetic Silencing - Related Videos

Education

JoVE Science Education - Advanced Biology

An Overview of Epigenetics

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2023

Since the early days of genetics research, scientists have noted certain heritable phenotypic differences that are not due to differences in the nucleotide sequence of DNA. Current evidence suggests that these “epigenetic” phenomena might be controlled by a number of mechanisms, including the modification of DNA cytosine bases with methyl groups, the addition of various chemical groups to histone proteins, and the recruitment of protein factors to specific DNA sites via interactions with...

Research

JoVE Journal - Bioengineering
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In Vitro Selection of Engineered Transcriptional Repressors for Targeted Epigenetic Silencing

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Cited by 1 •

2023

Here, we present a protocol for the in vitro selection of engineered transcriptional repressors (ETRs) with high, long-term, stable, on-target silencing efficiency and low genome-wide, off-target activity. This workflow allows for reducing an initial, complex repertoire of candidate ETRs to a short list, suitable for further evaluation in therapeutically relevant settings.

Epigenetic Regulation

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2019

Epigenetic mechanisms play an essential role in healthy development. Conversely, precisely regulated epigenetic mechanisms are disrupted in diseases like cancer. In most mammals, females have two X chromosomes (XX) while males have an X and a Y chromosome (XY). The X chromosome contains significantly more genes than the Y chromosome. Therefore, to prevent an excess of X chromosome-linked gene expression in females, one of the two X chromosomes is randomly silenced during early development.

Gene Silencing with Morpholinos

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2023

Morpholino-mediated gene silencing is a common technique used to study roles of specific genes during development. Morpholinos inhibit gene expression by hybridizing to complementary mRNAs. Due to their unique chemistry, morpholinos are easy to produce and store, which makes them remarkably cost effective compared to other gene silencing methods. This video reviews proper experimental design when using these oligonucleotides. Following that, an explanation of morpholino microinjection...

Chemogenetic Silencing of Neuronal Activity in a Neonatal Mouse

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2025

Place an anesthetized neonatal pup on a heating pad.Disinfect the scalp with ethanol.Fill a syringe with a viral solution containing adeno-associated viruses carrying the gene for a drug-activated inhibitory receptor and a tracking dye.Align the syringe tip with the pup’s head and slowly inject the virus into the brain for even distribution.Allow the pup to recover.During incubation, viral particles enter neurons and release their genetic material into the nucleus.It leads to inhibitory...

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