Single Cycle Kinetics

Single-cycle kinetics is a biological method for measuring how a population of infectious agents changes during one replication cycle, often to characterize viral growth. Researchers synchronize infection by exposing susceptible cells to a defined inoculum, then collect samples at timed intervals and quantify infectious particles, genomes, or viral proteins. The resulting time course can distinguish stages such as entry, the eclipse period, genome replication, assembly, and particle release. In virology, single-cycle kinetics helps compare viral strains, host cells, mutations, or treatment conditions, revealing defects in replication and identifying how specific factors influence the efficiency and timing of infection.

Single Cycle Kinetics - Related Videos

Research

JoVE Journal - Biology

Measuring Cell Cycle Progression Kinetics with Metabolic Labeling and Flow Cytometry

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Cited by 13 •

2012

Tracking subtle changes in the progression and kinetics of cell cycle stages can be accomplished by use of a combination of metabolic labeling of nucleic acids with BrdU and total genomic DNA staining via Propidium Iodide. This method avoids the need of chemical synchronization of cycling cells, thereby preventing the introduction of non-specific DNA damage, which in turn affects cell cycle progression.

Measuring the Kinetics of mRNA Transcription in Single Living Cells

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Cited by 6 •

2011

RNA polymerase II transcriptional kinetics are measured on specific genes in living cells. mRNAs transcribed from the gene of interest are fluorescently tagged and using Fluorescence Recovery After Photobleaching (FRAP) the in vivo kinetics of transcriptional elongation are obtained.

Method for Measurement of Viral Fusion Kinetics at the Single Particle Level

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Cited by 11 •

2009

We present an in vitro, two-color fluorescence assay to visualize the fusion of single virus particles with a fluid target bilayer. By labeling viral particles with fluorophores that differentially stain the viral membrane and its interior, we are able to monitor the kinetics of hemifusion and pore formation.

Steady-state, Pre-steady-state, and Single-turnover Kinetic Measurement for DNA Glycosylase Activity

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Cited by 26 •

2013

Time courses for the glycosylase activity of 8-oxoguanine DNA glycosylase are biphasic exhibiting a burst of product formation and a linear steady-state phase. Utilizing quench-flow techniques, the burst and the steady-state rates can be measured, which correspond to excision of 8-oxoguanine and release of the glycosylase from the product DNA, respectively.

Education

JoVE Science Education - Advanced Biology

Cell Cycle Analysis

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2023

Cell cycle refers to the set of events through which a cell grows, replicates its genome, and ultimately divides into two daughter cells through the process of mitosis. Because the amount of DNA in a cell shows characteristic changes throughout the cycle, techniques known as cell cycle analysis can be used to separate a population of cells according to the different phases of cell cycle they are in, based on their varying DNA content.This video will cover the principles behind cell cycle...

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