Chemical Genetic Analysis

Chemical genetic analysis is a method for investigating biological processes by using small molecules to alter the activity of specific proteins or signaling pathways, revealing how genes function within cells and organisms. In forward chemical genetics, researchers screen compound libraries for molecules that produce a measurable phenotype, then identify their molecular targets; reverse approaches begin with a known target and examine resulting biological effects. This strategy can uncover pathway components, clarify gene function, and distinguish rapid, reversible effects from those produced by permanent genetic changes. Applications include cell biology, developmental biology, disease modeling, and the identification of potential therapeutic targets.

Chemical Genetic Analysis - Related Videos

Research

JoVE Journal - Biology

Rapid Identification of Chemical Genetic Interactions in Saccharomyces cerevisiae

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Cited by 4 •

2015

Here we present a cost-effective method for defining chemical-genetic interactions in budding yeast. The approach is built on fundamental techniques in yeast molecular biology and is well suited for the mechanistic interrogation of small to medium collections of chemicals and other media environments.

Education

JoVE Science Education - Advanced Biology

An Overview of Genetic Analysis

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2023

An organism’s physical traits, or phenotype, are a product of its genotype, which is the combination of alleles (gene variants) inherited from its parents. To varying degrees, genes interact with each other and environmental factors to generate traits. The distribution of alleles and traits within a population is influenced by a number of factors, including natural selection, migration, and random genetic drift.In this video, JoVE introduces some of the foundational discoveries in genetics,...

Research

JoVE Journal - Biology
Free Sample

Development of automated imaging and analysis for zebrafish chemical screens.

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Cited by 48 •

2010

We report the development of a system for automated imaging and analysis of zebrafish transgenic embryos in multiwell plates. This demonstrates the ability to measure dose dependent effects of a small molecule, BCI, on Fibroblast Growth Factor reporter gene expression and provide technology for establishing high-throughput zebrafish chemical screens.

Raman Spectroscopy for Chemical Analysis

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2023

Source: Laboratory of Dr. Ryoichi Ishihara — Delft University of Technology Raman spectroscopy is a technique for analyzing vibrational and other low frequency modes in a system. In chemistry it is used to identify molecules by their Raman fingerprint. In solid-state physics it is used to characterize materials, and more specifically to investigate their crystal structure or crystallinity. Compared to other techniques for investigating the crystal structure (e.g. transmission electron...

Genetic Screens

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2023

Genetic screens are critical tools for defining gene function and understanding gene interactions. Screens typically involve mutating genes and then assessing the affected organisms for phenotypes of interest. The process can be “forward”, where mutations are generated randomly to identify unknown genes responsible for the phenotypes, or it can be “reverse”, where specific genes are targeted for mutation to observe what phenotypes are produced.Here, JoVE reviews various types of genetic...

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