Genetic Code

The genetic code is the set of rules that converts nucleotide sequences in DNA and RNA into the amino acid sequences of proteins, making it fundamental to heredity and cellular function. During gene expression, ribosomes read messenger RNA in three-base units called codons, while transfer RNAs recognize these codons through complementary anticodons and deliver the corresponding amino acids; start and stop codons regulate translation. Studying the genetic code helps biologists understand mutations, protein synthesis, and inherited traits. It also supports applications in genetic engineering, biotechnology, disease research, and the development of treatments that target altered gene expression.

Genetic Code - Related Videos

Research

JoVE Journal - Biochemistry

Site-Specific Lysine Lactylation via Genetic Code Expansion in E. coli and Mammalian Cells

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2026

This study established a method that utilizes genetic code expansion to successfully incorporate lactyl-lysine (Klac) at specific sites of the human enolase-1 (hENO1) and superfolder GFP (sfGFP) in Escherichia coli and mammalian cells.

Super-Resolution Imaging of Bacterial Secreted Proteins Using Genetic Code Expansion

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Cited by 2 •

2023

This article provides a straightforward and clear protocol to label Salmonella secreted effectors using genetic code expansion (GCE) site-specifically and image the subcellular localization of secreted proteins in HeLa cells using direct stochastic optical reconstruction microscopy (dSTORM)...

Education

JoVE Core - Molecular Biology

lncRNA - Long Non-coding RNAs

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2020

In humans, more than 80% of the genome gets transcribed. However, only around 2% of the genome codes for proteins. The remaining part produces non-coding RNAs which includes ribosomal RNAs, transfer RNAs, telomerase RNAs, and regulatory RNAs, among other types. A large number of regulatory non-coding RNAs have been classified into two groups depending upon their length – small non-coding RNAs, such as microRNA, which are less than 200 nucleotides in length, and long non-coding RNA (lncRNA)...

Screening for Functional Non-coding Genetic Variants Using Electrophoretic Mobility Shift Assay (EMSA) and DNA-affinity Precipitation Assay (DAPA)

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Cited by 15 •

2016

We present a strategic plan and protocol for identifying non-coding genetic variants affecting transcription factor (TF) DNA binding. A detailed experimental protocol is provided for electrophoretic mobility shift assay (EMSA) and DNA affinity precipitation assay (DAPA) analysis of genotype-dependent TF DNA binding.

Site Specific Lysine Acetylation of Histones for Nucleosome Reconstitution using Genetic Code Expansion in Escherichia coli

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Cited by 1 •

2020

Here we present a method to express acetylated histone proteins using genetic code expansion and assemble reconstituted nucleosomes in vitro.

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