Lipid Transfer Kinetics

Lipid transfer kinetics describes the rates and molecular determinants governing lipid movement between membranes, lipid-binding proteins, or other cellular compartments. Transfer can occur through direct membrane contact or soluble lipid-transfer proteins, with kinetics influenced by lipid composition, membrane packing, concentration gradients, temperature, and protein affinity. Biochemical analyses quantify these rates by monitoring changes in lipid distribution over time, helping distinguish rapid exchange from slower, regulated transport. These measurements clarify how cells maintain membrane composition and support research into membrane trafficking, signaling, organelle communication, and lipid-related disease mechanisms.

Lipid Transfer Kinetics - Related Videos

Research

JoVE Journal - Chemistry

Ethylene Polymerizations Using Parallel Pressure Reactors and a Kinetic Analysis of Chain Transfer Polymerization

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2015

A protocol for the high-throughput analysis of polymerization catalyst, chain transfer polymerizations, polyethylene characterization, and reaction kinetic analysis is presented.

Quantitative FRET (Förster Resonance Energy Transfer) Analysis for SENP1 Protease Kinetics Determination

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Cited by 7 •

2013

A novel method involving quantitative analysis of FRET (Förster Resonance Energy Transfer) signals is described for studying enzyme kinetics. KM and kcat were obtained for the hydrolysis of the catalytic domain of SENP1 (SUMO/Sentrin specific protease 1) to pre-SUMO1 (Small Ubiquitin-like MOdifier). The general principles of this quantitative-FRET-based protease kinetic study can be applied to other proteases.

Research

JoVE Journal - Chemistry
Free Sample

Spin Saturation Transfer Difference NMR (SSTD NMR): A New Tool to Obtain Kinetic Parameters of Chemical Exchange Processes

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Cited by 4 •

2016

A detailed protocol describing the SSTD NMR method is presented here to help new users apply this new method to obtain the kinetic parameters of their own systems undergoing chemical exchange.

Tethered Bilayer Lipid Membranes to Monitor Heat Transfer between Gold Nanoparticles and Lipid Membranes

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Cited by 3 •

2020

This work outlines a protocol to achieve dynamic, non-invasive monitoring of heat transfer from laser-irradiated gold nanoparticles to tBLMs. The system combines impedance spectroscopy for the real-time measurement of conductance changes across the tBLMs, with a horizontally focused laser beam that drives gold nanoparticle illumination, for heat production.

Education

JoVE Core - Biology

Kinetic Energy

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2019

Kinetic energy is the ability of an object in motion to do work or enact change. It can take on many forms. For instance, water flowing down a waterfall has kinetic energy. In biological systems, particles of light travel and are absorbed by plants to create chemical energy. Animals consume the chemical energy and give off molecules that carry their scent through the air. They also generate kinetic energy when they run away from predators. Entire systems also possess kinetic energy, like the...

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