Alkyne-phospholipid Substrates

Alkyne-phospholipid substrates are phospholipid molecules containing an alkyne group, a small chemical handle that enables selective detection and analysis of lipid behavior. In biochemical assays, enzymes can process these analogs or incorporate them into membranes, after which the alkyne reacts with an azide-bearing fluorescent or affinity probe through copper-catalyzed azide-alkyne cycloaddition, or “click” chemistry. This strategy supports sensitive tracking of phospholipid synthesis, remodeling, transport, and membrane distribution, helping researchers connect lipid metabolism with membrane function, cellular signaling, and disease-related biochemical changes.

Alkyne-phospholipid Substrates - Related Videos

Research

JoVE Journal - Biochemistry

A Fluorescence-based Assay of Phospholipid Scramblase Activity

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Cited by 61 •

2016

We describe a fluorescence-based assay to measure phospholipid scrambling in large unilamellar liposomes reconstituted with opsin.

Education

JoVE Core - Organic Chemistry

Nomenclature of Alkynes

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2025

Alkynes are unsaturated hydrocarbons characterized by the presence of carbon-carbon triple bonds and have a general formula CnH2n-2. The nomenclature of alkynes follows a set of rules similar to alkanes and alkenes; however, alkynes bear the suffix "-yne" instead of "-ane" or "-ene." There are two approaches to naming alkynes: • IUPAC names • Common names IUPAC nomenclature The IUPAC naming system follows a systematic approach to deduce names of alkynes based on their chemical structure.

Quantitative Flow Cytometry to Study Labeled Protein-Phospholipid Vesicle Interactions

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2025

In this video, we demonstrate the interaction between proteins and artificial phospholipid vesicles using quantitative flow cytometry. The binding of fluorescently-labeled proteins to fluorescently-labeled phospholipid vesicles increases the mean fluorescence intensity, and this increase is detected by a flow cytometer.

Research

JoVE Journal - Environment
Free Sample

Extraction and Analysis of Microbial Phospholipid Fatty Acids in Soils

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Cited by 133 •

2016

Phospholipid fatty acids provide information about the structure of soil microbial communities. We present methods for extraction from soil samples with a single-phase chloroform mixture, fractionation of extracted lipids using solid phase extraction columns, and methanolysis to produce fatty acid methyl esters, which are analyzed by capillary gas chromatography.

Fluorescence Recovery after Merging a Droplet to Measure the Two-dimensional Diffusion of a Phospholipid Monolayer

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Cited by 2 •

2015

We present a new technique to measure the lateral diffusion of a surface active species at the fluid-fluid interface by merging a droplet monolayer onto a flat monolayer.

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