Cypet Ypet

CyPet and YPet are engineered fluorescent proteins commonly used as a cyan–yellow fluorescent resonance energy transfer (FRET) pair for measuring molecular-scale distances and interactions. When light excites CyPet, nonradiative energy transfer to nearby YPet occurs if the proteins have suitable spectral overlap, separation, and orientation, changing the relative fluorescence intensities of the donor and acceptor. In physics and biophysics, this pair supports quantitative studies of protein conformational changes, molecular binding, and dynamic signaling processes. CyPet–YPet sensors can convert nanoscale structural rearrangements into optical signals, enabling real-time analysis in living cells and other complex biological systems.

Cypet Ypet - Related Videos

Research

JoVE Journal - Immunology and Infection
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Fluorescence Time-lapse Imaging of the Complete S. venezuelae Life Cycle Using a Microfluidic Device

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Cited by 49 •

2016

Streptomyces are characterized by a complex life cycle that has been experimentally challenging to study by cell biological means. Here we present a protocol to perform fluorescence time-lapse microscopy of the complete life cycle by growing Streptomyces venezuelae in a microfluidic device.

Research

JoVE EoE - Assay Techniques

The In Vitro Single Oocyte Reporter Assay: A Technique to Study Target mRNA Translation Regulation During In Vitro Oocyte Maturation

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2025

In this video, we demonstrate that in the presence of a phosphodiester inhibitor, the oocyte cell cycle is arrested at prophase-I, during which transcribed mRNAs are stored in the absence of translation. After the release of the inhibitor, oocyte maturation resumes, and the cells enter metaphase. The signal of reporter mRNA fused with the target gene in metaphase-I indicates the activation of translational machinery and protein expression.

An Efficient Protocol to Assess ERK Activity Modulation in Early Zebrafish Noonan Syndrome Models via Live FRET Microscopy and Immunofluorescence

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2025

RASopathies are multisystem genetic syndromes caused by RAS-MAPK pathway hyperactivation. Potentially pathogenic variants awaiting validation emerge continuously while poor preclinical evidence limits therapy. Here, we describe our in vivo protocol to test and cross-validate RASopathy-associated ERK activation levels and its pharmacological modulation during embryogenesis by live FRET imaging in Teen-reporter zebrafish.

Research

JoVE Journal - Biochemistry
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Semi-automated Biopanning of Bacterial Display Libraries for Peptide Affinity Reagent Discovery and Analysis of Resulting Isolates

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Cited by 6 •

2017

Biopanning bacterial display libraries is a proven technique for discovery of peptide affinity reagents, a robust alternative to antibodies. The semi-automated sorting method herein has streamlined biopanning to decrease the occurrence of false positives. Here we illustrate the thought process and techniques applied in evaluating candidates and minimizing downstream analysis.

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