Temperature Sensitive Mutants

Temperature-sensitive mutants are genetic variants whose growth, survival, or molecular function changes when cells experience different temperatures, providing a conditional way to study gene activity. At a permissive temperature, the altered protein may fold and function sufficiently for normal replication, whereas a restrictive temperature destabilizes the protein or disrupts an essential process, producing a measurable phenotype. In immunology and infection research, these mutants help identify pathogen genes required for replication, virulence, host-cell entry, or immune evasion without permanently deleting them. They also support controlled analysis of infection timing, attenuation strategies, and host-pathogen interactions.

Temperature Sensitive Mutants - Related Videos

Research

JoVE Journal - Genetics
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High-Throughput Robotically Assisted Isolation of Temperature-sensitive Lethal Mutants in Chlamydomonas reinhardtii

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Cited by 8 •

2016

Temperature-sensitive (ts) lethal mutants are valuable tools to identify and analyze essential functions. Here we describe methods to generate and classify ts lethal mutants in high throughput.

Research

JoVE Journal - Bioengineering

Microfluidic Production of Lysolipid-Containing Temperature-Sensitive Liposomes

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Cited by 5 •

2020

The protocol presents the optimized parameters for preparing thermosensitive liposomes using the staggered herringbone micromixer microfluidics device. This also allows co-encapsulation of doxorubicin and indocyanine green into the liposomes and the photothermal-triggered release of doxorubicin for controlled/triggered drug release.

Profiling Sensitivity to Targeted Therapies in EGFR-Mutant NSCLC Patient-Derived Organoids

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Cited by 7 •

2021

This protocol describes a standardized evaluation of drug sensitivities to targeted signaling inhibitors in NSCLC patient-derived organoid models.

Paradigms for Pharmacological Characterization of C. elegans Synaptic Transmission Mutants

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Cited by 20 •

2008

This video demonstrates how to employ two neural stimulants, aldicarb and pentylenetetrazole (PTZ), in complementary ways to study synaptic function in the nematode, C. elegans. This complementary approach may also be used to shed light on evolutionarily conserved mechanisms for modulating neuronal synchrony and has implications for epilepsy and seizures.

ACT1-CUP1 Assays Determine the Substrate-Specific Sensitivities of Spliceosomal Mutants in Budding Yeast

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2022

The ACT1-CUP1 assay, a copper growth assay, provides a quick readout of precursor messenger RNA (pre-mRNA) splicing and the impact mutant splicing factors have on spliceosomal function. This study provides a protocol and highlights the customization possible to address the splicing question of interest.

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